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37 results for “sequence space”

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zenodo40/100

Sequence data for 'Machine-driven parameter-space exploration of biochemical reactions'

<p>The development of complex, multi-step <em>omics</em> methods in molecular biology is a laborious, costly, iterative and often intuition-bound process where an optimum is sought in a parameter space through step-by-step optimisations. The the difficulty of miniaturising assays and the cost of the experiments limit the dynamic range and the number of parameters that can be explored. However, because of non-linearities of the response of biochemical systems to their reagent concentrations, a broad dynamic range is necessary. Here we demonstrate the use of a high-performance nanoliter handling platform (Labcyte Echo 525) and computer generation of liquid transfer programs to explore in quadruplicates more than 600 combination of 4 parameters of a biochemical reaction, which lead us to uncover non-linear responses, parameter interactions and novel mechanical insights. With the increased availability of &laquo; <em>cloud biology</em>&raquo; computer-driven laboratory platforms, our results participate in changing methods development for biotechnology towards reproducible, computer-aided exhaustive characterisation of biochemical systems.</p> <p>This dataset contains the raw sequencing data produced with an Illumina MiSeq instrument for this project. FASTQ files and sample sheets are found in the usual location (Data/Intensities/BaseCalls). The &quot;Thumbnail_Images&quot; and &quot;L001&quot; directories were deleted to save space.</p> <p>Run IDs: 171227_M00528_0321_000000000-B4GLP, 180403_M00528_0348_000000000-B4GP8, 180517_M00528_0364_000000000-BRGK6, 180123_M00528_0325_000000000-B4PCK, 180411_M00528_0351_000000000-BN3BL, 180606_M00528_0367_000000000-BN3FG, 180326_M00528_0346_000000000-B4GJR, 180501_M00528_0359_000000000-B4PJY, 180607_M00528_0368_000000000-BN9KM</p> <p>&nbsp;</p>

opencc-zeroNov 2018View details →
dryad40/100

Data from: Latent generative landscapes as maps of functional diversity in protein sequence space

<p>Variational autoencoders are unsupervised learning models with generative capabilities, when applied to protein data, they classify sequences by phylogeny and generate de novo sequences which preserve statistical properties of protein composition. While previous studies focus on clustering and generative features, here, we evaluate the underlying latent manifold in which sequence information is embedded. To investigate properties of the latent manifold, we utilize direct coupling analysis and a Potts Hamiltonian model to construct a latent generative landscape. We showcase how this landscape captures phylogenetic groupings, functional and fitness properties of several systems including Globins, β-lactamases, ion channels, and transcription factors. We provide support on how the landscape helps us understand the effects of sequence variability observed in experimental data and provides insights on directed and natural protein evolution. We propose that combining generative properties and functional predictive power of variational autoencoders and coevolutionary analysis could be beneficial in applications for protein engineering and design.</p>

opencc-zeroApr 2023View details →
dryad40/100

Data from: Latent generative landscapes as maps of functional diversity in protein sequence space

Open the record for dataset details and reuse information.

publicApr 2023View details →
zenodo36/100

Branching Trees from standard Epidemic Aftershock Sequences (ETAS) Model (no time, no space)

<p>All files licensed under Creative Commons Attribution 4.0 International (CC BY 4.0)</p> <p>###############<br> 0. SUMMARY<br> ###############</p> <p>1. DESCRIPTION</p> <p>2. INPUT PARAMETERS</p> <p>3. TYPES OF FILES<br> &nbsp;&nbsp;&nbsp;3.1. Raw data<br> &nbsp;&nbsp;&nbsp;3.2. List of trees<br> &nbsp;&nbsp;&nbsp;3.3. Tree-size frequencies</p> <p>4. LIST OF FILES<br> &nbsp;&nbsp;&nbsp;4.1. Raw data<br> &nbsp;&nbsp;&nbsp;4.2. List of trees<br> &nbsp;&nbsp;&nbsp;4.3. Tree-size frequencies<br> &nbsp; &nbsp;4.4 Known missing/broken files</p> <p>###############<br> 1. DESCRIPTION<br> ################<br> Simulation results of an standard ETAS model as a branching process. Using a two seed version of the RANDU linear congruential pseudorandom number generator. The offspring number is a Poisson number given the rate n(M) (see below). Details of simulation procedure can be found in reference [1]: &#39;Topological properties of epidemic aftershock processes&#39;, by J. Bar&oacute; submitted to J. of Geophysical Research - Solid Earth (JGR-B)</p> <p>##############<br> 2. INPUT PARAMETERS<br> ##############<br> The input parameters (see reference for details) for each raw and processes data-file are indicated in the prefix of the file: &quot;ETASbranch_b(b)r(r)N(nb)*&quot;</p> <p>- M0(= 1) = magnitude of completeness (arbitrary for the study of topological properties of trees)<br> - (b) &nbsp;= b-value (arbitrary for the study of topological properties of trees)<br> - (nb) = average branching ratio<br> - (r) &nbsp;= ratio a/b</p> <p>The b-value defines the distribution of event-magnitudes: P(M) = 10^(b*(M-M0)) . The nb and a define the productivity law: n(M) = (nb*(b-a)/b)*10^(a*(M-M0))</p> <p><br> #################<br> 3. TYPES OF FILES<br> #################</p> <p>3.1. Raw data:<br> --------------</p> <p>42 x &quot;*.Seq&quot; files with input b=0.50 and different nb, r values. Raw data from simulation code. (all cases, simulated with 10^5 background events)<br> Each row represents an individual event in the point process, or element of the simulated branching forest.<br> Columns description (9 columns x data point):<br> &nbsp; c0:Time (arbitrary, used here as id.)<br> &nbsp; c1:Magnitude of the event<br> &nbsp; c2:Identification number of the cluster or tree<br> &nbsp; c3:Depth of the event in the tree structure (background events have Depth = 0)<br> &nbsp; c4:Time of the direct parent of the event (set to -1 for background event)<br> &nbsp; c5:Magnitude of the direct parent of the event (set to -10 if background event)<br> &nbsp; c6:Time of the event initiating the tree (set to own time if background)<br> &nbsp; c7:Magnitude of the event initiating the tree &nbsp;(set to own magnitude if background)<br> &nbsp; c8:N or offspring number of the event. (Events are leafs if N=0)</p> <p><br> 3.2. List of trees<br> ------------------</p> <p>53 x &quot;*TopoTrees.dat&quot; files obtained from simulations (after processing of *.Seq files. Files ending with &quot;N0.99&quot;, &quot;N0.50&quot; obtained from 10^5 background events from files above. Files ending with &quot;N0.500*&quot; obtained from 10^7 simulations)<br> Each row represents an individual tree constituted by one or several causally connected events of the simulated branching forest. Files used to generate fig. 4 of ref. [1]</p> <p>Columns description (8 columns x data point):<br> &nbsp; c0:Maximum Depth of the tree<br> &nbsp; c1:Number of events in the tree<br> &nbsp; c2:Average depth of leaves<br> &nbsp; c3:total number of leaves<br> &nbsp; c4:Sum of the depth of all leaves (=c2*c3)<br> &nbsp; c5:(=0) not used<br> &nbsp; c6:Magnitude of root<br> &nbsp; c7:Maximum magnitude of an event inside the tree</p> <p><br> 4.3. Tree-size frequencies<br> --------------------------</p> <p>18 x &quot;*TopoTrees.FK&quot; files obtained from &quot;*TopoTrees.dat&quot;. Contains the frequencies of tree-sizes. Each raw number correspond to a size. Each value corresponds to number of incidences of that size divided by total number of events (10^5 in all cases). Notice that last point is missing at size = max-length, freq.= 1.0 / total number of events. Files used to generate fig. 3 of ref. [1]</p> <p><br> ################<br> 4. LIST OF FILES<br> ################</p> <p>(copy of this text)<br> readme.txt<br> md5:2073cdbb4a0afd8ab96f8bfaef20579f&nbsp;13 Kb</p> <p>4.1. Raw data (42 files)<br> ------------------------</p> <p>ETASbranch_b0.50r0.00N0.50.Seq<br> md5:bae21678db4fe575b06b69a5f32253d2 &nbsp;&nbsp; &nbsp;12.5 Mb<br> ETASbranch_b0.50r0.00N0.99.Seq<br> md5:76ea70ba94aeeed7ba3c358305f4b85b &nbsp;&nbsp; &nbsp;1.3 Gb<br> ETASbranch_b0.50r0.05N0.50.Seq<br> md5:0ccf5af07efb9dd99d63a9675fd3069f &nbsp;&nbsp; &nbsp;12.4 Mb<br> ETASbranch_b0.50r0.05N0.99.Seq<br> md5:77a7bfd490af54a5a3d15c4183e9e6f7 &nbsp;&nbsp; &nbsp;1.4 Gb<br> ETASbranch_b0.50r0.10N0.50.Seq<br> md5:f274717039f8f69ce57d5054577777af &nbsp;&nbsp; &nbsp;12.4 Mb<br> ETASbranch_b0.50r0.10N0.99.Seq<br> md5:e18f4c26acfdff8d79a6223aa86867d2 &nbsp;&nbsp; &nbsp;1.3 Gb<br> ETASbranch_b0.50r0.15N0.50.Seq<br> md5:5f93c14a8d0f88fd021bc6d8a5fc7d6e &nbsp;&nbsp; &nbsp;12.3 Mb<br> ETASbranch_b0.50r0.15N0.99.Seq<br> md5:906e09ecb6c6c18fdbcfdca3d9dbe225 &nbsp;&nbsp; &nbsp;1.3 Gb<br> ETASbranch_b0.50r0.20N0.50.Seq<br> md5:2467c2c7fafeddaa630074e991cb7767 &nbsp;&nbsp; &nbsp;12.4 Mb<br> ETASbranch_b0.50r0.20N0.99.Seq<br> md5:64c45a47b7f953d7088b10d4badd068c &nbsp;&nbsp; &nbsp;1.3 Gb<br> ETASbranch_b0.50r0.25N0.50.Seq<br> md5:d65abaa4664b2412707b27b6e9143215 &nbsp;&nbsp; &nbsp;12.4 Mb<br> ETASbranch_b0.50r0.25N0.99.Seq<br> md5:8d7467b0bd80ce7e8cbcaf5dfe2725b7 &nbsp;&nbsp; &nbsp;1.2 Gb<br> ETASbranch_b0.50r0.30N0.50.Seq<br> md5:fd3af9802b3b66a623172bb2aafc0a0b &nbsp;&nbsp; &nbsp;12.4 Mb<br> ETASbranch_b0.50r0.30N0.99.Seq<br> md5:2ad1b9b9c858638067af6068dfd25d59 &nbsp;&nbsp; &nbsp;1.3 Gb<br> ETASbranch_b0.50r0.35N0.50.Seq<br> md5:8cf36cc90a19f1283c838dee4849626b &nbsp;&nbsp; &nbsp;12.5 Mb<br> ETASbranch_b0.50r0.35N0.99.Seq<br> md5:6b35085100561865ac9463edfb166d7f &nbsp;&nbsp; &nbsp;1.4 Gb<br> ETASbranch_b0.50r0.40N0.50.Seq<br> md5:317b154c8ed74262b18c41762597d236 &nbsp;&nbsp; &nbsp;12.3 Mb<br> ETASbranch_b0.50r0.40N0.99.Seq<br> md5:c83dc299035928c9ae8a7f6d101ac9b8 &nbsp;&nbsp; &nbsp;1.2 Gb<br> ETASbranch_b0.50r0.45N0.50.Seq<br> md5:d3baccfbf347e555c30f3dfb1db1d9c0 &nbsp;&nbsp; &nbsp;12.4 Mb<br> ETASbranch_b0.50r0.45N0.99.Seq<br> md5:5bf42163acc2eae1eeae8549b850ccc9 &nbsp;&nbsp; &nbsp;1.1 Gb<br> ETASbranch_b0.50r0.50N0.50.Seq<br> md5:3ad7427725dfcf302c2dc2c519dad8c0 &nbsp;&nbsp; &nbsp;12.4 Mb<br> ETASbranch_b0.50r0.50N0.99.Seq<br> md5:7316fb3661b87215a1a7b1c11a54975b &nbsp;&nbsp; &nbsp;1.3 Gb<br> ETASbranch_b0.50r0.55N0.50.Seq<br> md5:6dbc9846506675c61d110ae918165a6b &nbsp;&nbsp; &nbsp;12.4 Mb<br> ETASbranch_b0.50r0.55N0.99.Seq<br> md5:5d4d007bf898512185dd2f87b715715e &nbsp;&nbsp; &nbsp;1.4 Gb<br> ETASbranch_b0.50r0.60N0.50.Seq<br> md5:569c1c409ef618f518fe6fb6f41493a3 &nbsp;&nbsp; &nbsp;12.7 Mb<br> ETASbranch_b0.50r0.60N0.99.Seq<br> md5:e739613598e8d2530d108ff24e8c045a &nbsp;&nbsp; &nbsp;1.1 Gb<br> ETASbranch_b0.50r0.65N0.50.Seq<br> md5:e95cead475c1eedb0618bebf1b548ec2 &nbsp;&nbsp; &nbsp;12.3 Mb<br> ETASbranch_b0.50r0.65N0.99.Seq<br> md5:8fe8b042085f261971d94bf12f96dc7e &nbsp;&nbsp; &nbsp;1 Gb<br> ETASbranch_b0.50r0.70N0.50.Seq<br> md5:48824f1efdbc31c5bb4d4f799bc166d5 &nbsp;&nbsp; &nbsp;12.2 Mb<br> ETASbranch_b0.50r0.70N0.99.Seq<br> md5:2ead803394a4c3b04f1e22e9b8c5ba46 &nbsp;&nbsp; &nbsp;872.9 Mb<br> ETASbranch_b0.50r0.75N0.50.Seq<br> md5:8c5cf4753836076c677a74d831354f33 &nbsp;&nbsp; &nbsp;12.2 Mb<br> ETASbranch_b0.50r0.75N0.99.Seq<br> md5:91ed931aedfb365761799e0882fcfb86 &nbsp;&nbsp; &nbsp;1 Gb<br> ETASbranch_b0.50r0.80N0.50.Seq<br> md5:f93e1779bc5344ffd17021bb387bb373 &nbsp;&nbsp; &nbsp;11 Mb<br> ETASbranch_b0.50r0.80N0.99.Seq<br> md5:6b0fd7fcad20ac4467fecda9502e9954 &nbsp;&nbsp; &nbsp;75.6 Mb<br> ETASbranch_b0.50r0.85N0.50.Seq<br> md5:a5debe21de70204a490c75dd7c68657a &nbsp;&nbsp; &nbsp;11 Mb<br> ETASbranch_b0.50r0.85N0.99.Seq<br> md5:f9ed3ad6db12ad4a612c3945ccf72f18 &nbsp;&nbsp; &nbsp;48.5 Mb<br> ETASbranch_b0.50r0.90N0.50.Seq<br> md5:4493eef2170b68052cf56636c63091d7 &nbsp;&nbsp; &nbsp;9.7 Mb<br> ETASbranch_b0.50r0.90N0.99.Seq<br> md5:70043ed6c84e3896268c46f77eabefd3 &nbsp;&nbsp; &nbsp;26.7 Mb<br> ETASbranch_b0.50r0.95N0.50.Seq<br> md5:874916faa95c63312aa27aecea45de8f &nbsp;&nbsp; &nbsp;7.5 Mb<br> ETASbranch_b0.50r0.95N0.99.Seq<br> md5:bbc54464c2e3cbac64401978216ae993 &nbsp;&nbsp; &nbsp;11.7 Mb<br> ETASbranch_b0.50r1.00N0.50.Seq<br> md5:3ff467b894f46a4be0b0747c686edad5 &nbsp;&nbsp; &nbsp;5.8 Mb<br> ETASbranch_b0.50r1.00N0.99.Seq<br> md5:d4d5416d56ed3de6eb2702a8eeb0a0b5 &nbsp;&nbsp; &nbsp;5.8 Mb</p> <p><br> 3.2. List of trees (53 files)<br> -----------------------------</p> <p><br> ETASbranch_b1.00r0.00N0.500TopoTrees.dat<br> md5:a5834b8d047fd3446e6d83488422bb5b &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.00N0.99TopoTrees.dat<br> md5:34eb899782444475151073ed6fcfc6aa &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.05N0.50TopoTrees.dat<br> md5:cc5f0edfc31a5f15394444243560e0ad &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.05N0.99TopoTrees.dat<br> md5:58cc7e7e746051f9efbe510c164a2b09 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.10N0.500TopoTrees.dat<br> md5:52cb3a9a5aeb1e222743bcdad3ea3b3d &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.10N0.50TopoTrees.dat<br> md5:a68a69280c0129ee3554d5c97dd0fa47 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.10N0.99TopoTrees.dat<br> md5:307edf1353af5141f11d89cbab6c4d30 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.15N0.500TopoTrees.dat<br> md5:52807004c32bdc1a999a2aaf1ff91bb9 &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.15N0.50TopoTrees.dat<br> md5:0bdb45b13ed0fd5c0fa1619310d71670 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.15N0.99TopoTrees.dat<br> md5:f26e351184921ed9a85c8993404a4718 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.20N0.500TopoTrees.dat<br> md5:5fd930a98e28d551c9c204d22c6f564a &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.20N0.50TopoTrees.dat<br> md5:4aaeb952e0ecb7d4fc4bd2fb7822c729 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.20N0.99TopoTrees.dat<br> md5:a30687662b269f447d7e4cc020bd3773 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.25N0.500TopoTrees.dat<br> md5:4168e6e70b247977213d2278b94d65f3 &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.25N0.50TopoTrees.dat<br> md5:b360877be00088b52676ba4717377761 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.25N0.99TopoTrees.dat<br> md5:34d11b64c78c852d4f50de7b1265c9b7 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.30N0.500TopoTrees.dat<br> md5:8c1a8b07c5f2350646d415a687f84492 &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.30N0.50TopoTrees.dat<br> md5:0c1bfccd8cd141090a0bfb0cc7ae1ccd &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.30N0.99TopoTrees.dat<br> md5:652f975754241fed317acba066cf339b &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.35N0.500TopoTrees.dat<br> md5:6bc2a3f7b4f7fd8a92595271d2ea425f &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.35N0.50TopoTrees.dat<br> md5:d1d4e8a467d8d445cd3f6ca27c3c8af3 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.35N0.99TopoTrees.dat<br> md5:e56eee0119b193898ea729b75c572617 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.40N0.500TopoTrees.dat<br> md5:370a2f6c670fd7c9b515e43891417b73 &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.40N0.50TopoTrees.dat<br> md5:9f50c23e33cca983df58e2b17f29f8e5 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.40N0.99TopoTrees.dat<br> md5:d9971930b46838de09a7ccdc7cd9b459 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.45N0.500TopoTrees.dat<br> md5:cfef99746043d0718ad19e48ffdfeee4 &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.45N0.50TopoTrees.dat<br> md5:44667f56360024e40b11be4f52ccf9c3 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.45N0.99TopoTrees.dat<br> md5:09b84c6f3c9dd58331c6f9ab4eec8f58 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.50N0.500TopoTrees.dat<br> md5:e9e880f24ffc9ba40db7c7f78d0f8d89 &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.50N0.50TopoTrees.dat<br> md5:ce4835d532513bffd54723f285207898 &nbsp;&nbsp; &nbsp;1.9 Mb<br> ETASbranch_b1.00r0.50N0.99TopoTrees.dat<br> md5:4c935d76aee113c88f4a3348197f75f3 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.55N0.500TopoTrees.dat<br> md5:46cd9e8d508c15009e90a194a141008f &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.55N0.50TopoTrees.dat<br> md5:8e1cb9c364c2a275d10373b54dab6239 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.55N0.99TopoTrees.dat<br> md5:304b947c52e826a9b4cb68c38f007443 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.60N0.500TopoTrees.dat<br> md5:df8b7889e76694188b29f7fc16f6dce2 &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.60N0.50TopoTrees.dat<br> md5:fc6c2110e139290ae9401765e8aae782 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.60N0.99TopoTrees.dat<br> md5:6af466cc527b7422f1f958bfc6a87d15 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.65N0.500TopoTrees.dat<br> md5:129abd6de7821da465265a485217156d &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.65N0.50TopoTrees.dat<br> md5:469fc2ae3768fe9ae0ab0b8fbfaf3051 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.65N0.99TopoTrees.dat<br> md5:b7148c414b243b1911de8543d25e3d38 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.70N0.500TopoTrees.dat<br> md5:3a3eed181ae6308c29f274d5e14a97df &nbsp;&nbsp; &nbsp;1.8 Gb<br> ETASbranch_b1.00r0.70N0.50TopoTrees.dat<br> md5:ca7472f17916e7f8634a97c08ca96c58 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.70N0.99TopoTrees.dat<br> md5:8c2a4ab3800e8a8178be5d6e856f5b50 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.75N0.50TopoTrees.dat<br> md5:374796f34a3e25f711601161f8a34ae7 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.75N0.99TopoTrees.dat<br> md5:591f6ac31545f3e7558b4a5e151c80a5 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.80N0.50TopoTrees.dat<br> md5:473c6e9ac33cc6e8eabe0ed3c91b40b7 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.80N0.99TopoTrees.dat<br> md5:81f41fbce89c931f87890133b4c0f9f9 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.85N0.50TopoTrees.dat<br> md5:2c38db4208898d95c1c5b2ef0a94c930 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.85N0.99TopoTrees.dat<br> md5:4866f179b52ff5a6191d47e6d8ead5ce &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.90N0.50TopoTrees.dat<br> md5:f14a7f700c0c73743eb5747399abdcce &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.90N0.99TopoTrees.dat<br> md5:da4bd00aeefcbd1e67f0d7fe8fb1d8be &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.95N0.50TopoTrees.dat<br> md5:57b7f0bd901bb47ba3c253f801301716 &nbsp;&nbsp; &nbsp;18.6 Mb<br> ETASbranch_b1.00r0.95N0.99TopoTrees.dat<br> md5:6381354768603c6d2129c99df2a7798a &nbsp;&nbsp; &nbsp;18.6 Mb</p> <p>4.3. Tree-size frequencies (18 files)<br> -------------------------------------</p> <p>ETASbranch_b1.00r0.00N0.99TopoTrees.FK<br> md5:5b6ccaf1c1218f101ed24c332bfefec3 &nbsp;&nbsp; &nbsp;612 Kb<br> ETASbranch_b1.00r0.10N0.30TopoTrees.FK<br> md5:f9f07bbd7be5377e1589101e85640149 &nbsp;&nbsp; &nbsp;468 B<br> ETASbranch_b1.00r0.20N0.30TopoTrees.FK<br> md5:6c7e40f8b93c7a3e62f2c105f0e7a89b &nbsp;&nbsp; &nbsp;558 B<br> ETASbranch_b1.00r0.20N0.99TopoTrees.FK<br> md5:158884c9bc4afa10c8ebb2e7b516a421 &nbsp;&nbsp; &nbsp;3.3 Mb<br> ETASbranch_b1.00r0.30N0.30TopoTrees.FK<br> md5:14d837b9763b9a54e64311e832e29f04 &nbsp;&nbsp; &nbsp;846 B<br> ETASbranch_b1.00r0.30N0.99TopoTrees.FK<br> md5:90b8b5a38a83cb4b4c833b605cf6b38e &nbsp;&nbsp; &nbsp;2.1 Mb<br> ETASbranch_b1.00r0.40N0.30TopoTrees.FK<br> md5:1f198a7c08078066e7fa57ce9ebda8eb &nbsp;&nbsp; &nbsp;3 Kb<br> ETASbranch_b1.00r0.40N0.99TopoTrees.FK<br> md5:229b837e7950fe85ea1c51be8e3f457e &nbsp;&nbsp; &nbsp;3.3 Mb<br> ETASbranch_b1.00r0.50N0.30TopoTrees.FK<br> md5:6ead8bff09c3c2687c526648bfec6ab3 &nbsp;&nbsp; &nbsp;16 Kb<br> ETASbranch_b1.00r0.60N0.30TopoTrees.FK<br> md5:38c5cb9f544367ff9bdab766c4bcf03f &nbsp;&nbsp; &nbsp;112 Kb<br> ETASbranch_b1.00r0.60N0.99TopoTrees.FK<br> md5:2591d4e2dd1c2051c0b7d96f423c526a &nbsp;&nbsp; &nbsp;106.5 Mb<br> ETASbranch_b1.00r0.70N0.30TopoTrees.FK<br> md5:4f7741314e1a0d0b1c1733532d909277 &nbsp;&nbsp; &nbsp;7.5 Mb<br> ETASbranch_b1.00r0.80N0.30TopoTrees.FK<br> md5:3c4240e79ee19c03afac91d631f38cb8 &nbsp;&nbsp; &nbsp;602 Kb<br> ETASbranch_b1.00r0.80N0.30TopoTrees.FK<br> md5:3c4240e79ee19c03afac91d631f38cb8 &nbsp;&nbsp; &nbsp;602 Kb<br> ETASbranch_b1.00r0.90N0.30TopoTrees.FK<br> md5:914a782fa2e73c0bc5a6e70bbb2afec9 &nbsp;&nbsp; &nbsp;1.3 Mb<br> ETASbranch_b1.00r0.90N0.99TopoTrees.FK<br> md5:cc165045d4d9f25c0f9c30c0ec71759f &nbsp;&nbsp; &nbsp;864 Kb<br> ETASbranch_b1.00r0.99N0.30TopoTrees.FK<br> md5:a08cfc27a0e42d54f207ea05b7210714 &nbsp;&nbsp; &nbsp;187 Kb<br> ETASbranch_b1.00r0.99N0.99TopoTrees.FK<br> md5:a15681be56f870a95fe62794b11524df &nbsp;&nbsp; &nbsp;365 Kb</p> <p><br> 4.4 Known missing/broken files<br> ------------------------------</p> <p>ETASbranch_b1.00r0.50N0.50TopoTrees.dat<br> ETASbranch_b1.00r0.10N0.99TopoTrees.FK<br> ETASbranch_b1.00r0.20N0.99TopoTrees.FK<br> ETASbranch_b1.00r0.50N0.99TopoTrees.FK<br> ETASbranch_b1.00r0.70N0.99TopoTrees.FK<br> ETASbranch_b1.00r0.05N0.500TopoTrees.dat<br> ETASbranch_b1.00r0.70N0.500TopoTrees.dat<br> ETASbranch_b1.00r0.75N0.500TopoTrees.dat<br> ETASbranch_b1.00r0.80N0.500TopoTrees.dat<br> ETASbranch_b1.00r0.85N0.500TopoTrees.dat<br> ETASbranch_b1.00r0.90N0.500TopoTrees.dat<br> ETASbranch_b1.00r0.95N0.500TopoTrees.dat<br> &nbsp;</p>

opencc-by-4.0Feb 2020View details →
zenodo36/100

ABodyBuilder2 predicted structures of paired antibody sequences from Observed Antibody Space.

<p>We used ABodyBuilder2 (https://doi.org/10.1038/s42003-023-04927-7) to model ~1.5M paired antibody structures from paired antibody sequences in Observed Antibody Space (https://opig.stats.ox.ac.uk/webapps/oas/oas_paired/). We have save the structures in folders and sub folders that correspond to the OAS files they came from. Parent folders are named according to study. Within each parent folder are sub folders names according to the files (named by SRA ID) containing sequences. Each structure is then named with the parent file followed by the row number from this file.</p>

opencc-by-4.0Dec 2023View details →
zenodo36/100

Single-molecule structural and kinetic studies across sequence space

<p>Data and analysis code related to the research article:</p> <p>Single-molecule structural and kinetic studies across sequence space</p>

opengpl-3.0-or-laterJun 2024View details →
zenodo36/100

Respiratory-triggered MRCP acquisition at 3T using a T2-weighted TSE (3D SPACE) sequence for Deep Learning-based reconstruction of MRCP

<h1>Description</h1> <p>This dataset is the sample data for MRCP_DLRecon (<a href="https://github.com/JinhoKim46/MRCP_DLRecon">GitHub</a>).&nbsp;<br>Place this dataset in the "Sample_data/" directory along with the "dataset.csv" file.&nbsp;</p> <h1>Data</h1> <p>The provided 3D MRCP data were acquired at 3T (Skyra, Siemens Healthineers AG, Erlangen) using the 3D-SPACE (3D T2w TSE) sequence for a single healthy volunteer. We provide two 2x&nbsp; and one 6x 3D MRCP data to ensure various training and testing scenarios. Each data in the HDF5 format contains the following structures:</p> <ul> <li>Datasets <ul> <li><strong>grappa</strong>: target data (y * x *<em> </em>slice)</li> <li><strong>kdata_raw</strong>: Raw <em>k</em>-space data (x2 or x6) (nCoil * PE * RO * slice)</li> <li><strong>kdata_fs</strong>: Fully-sampled k-space data from&nbsp;<strong>kdata_raw</strong> using GRAPPA (nCoil &times;&times; PE &times;&times; RO &times;&times; Slice)</li> <li><strong>sm_espirit</strong>: ESPIRiT-based sensitivity maps (nCoil * y * x * slice)</li> </ul> </li> </ul> <h1>Citation</h1> <p>Please cite the following <a href="https://analyticalsciencejournals.onlinelibrary.wiley.com/doi/10.1002/nbm.70002" target="_blank" rel="noopener">paper</a> if this dataset is helpful for your research :)</p> <blockquote> <p>Kim, J., Nickel, M. and Knoll, F. (2025), Deep Learning-Based Accelerated MR Cholangiopancreatography Without Fully-Sampled Data. NMR in Biomedicine, 38: e70002. https://doi.org/10.1002/nbm.70002&nbsp;</p> </blockquote>

opencc-by-4.0Apr 2024View details →
zenodo32/100

Raw k-space data for free-breathing diffusion weighted sequence

Open the record for dataset details and reuse information.

opencc-by-4.0Jan 2024View details →
ClinicalTrials.gov32/100

Cyberknife Radiosurgery for Patients With Brain Metastases Diagnosed With Either SPACE or MPRAGE Sequence

ClinicalTrials.gov study NCT03303365. IPD Sharing: NO. Countries: 1. Publications: 21.

closedIPD-NOFeb 2026View details →
dryad32/100

Data from: Prediction accuracies for growth and wood attributes of interior spruce in space using genotyping-by-sequencing

Open the record for dataset details and reuse information.

publicMay 2015View details →
zenodo28/100

Supplementary dataset for Expanded sequence space of radical S-adenosylmethionine-dependent enzyme involved in post-translational macrocyclization

<p>Supplementary dataset for&nbsp;<a href="https://www.researchsquare.com/article/rs-1789925/v1">Expanded sequence space of radical S-adenosylmethionine-dependent enzyme involved in post-translational macrocyclization</a></p> <p>Supporting Information Dataset 1: Logo sequences of 500 clusters in precursor SSN.</p> <p>Supporting Information Dataset 2:&nbsp;199 cyclophane precursor from actinobacteria</p> <p>Supporting Information Dataset 3: Distribution of different enzymes adjacent to small peptides</p> <p>Supporting Information Dataset 4:&nbsp;Cross-comparison analysis of antiSMASH and PRISM-RiPP-predicted rSAM maturase</p> <p>Supporting Information Dataset 5: mmseq2 output of all identified precursors.</p>

opencc-by-4.0Jun 2022View details →
zenodo28/100

FORAlign: Accelerating gap-affine DNA pairwise sequence alignment using FOR-blocks based on FOur Russians approach with linear space complexity

Open the record for dataset details and reuse information.

opencc-by-4.0Apr 2024View details →
dryad28/100

Data from: Viral tagging reveals discrete populations in Synechococcus viral genome sequence space

Open the record for dataset details and reuse information.

publicApr 2015View details →
nasa28/100

['"Draft Genome Sequences of Members of the family Methylobacteriaceae Associated with the International Space Station"']

['"Draft Genome Sequences of isolates belonging to family Methylobacteriaceae Isolated from the International Space Station"']

restrictedus-pdMar 2025View details →
nasa28/100

['Draft Genome Sequences of Two Fusarium oxysporum Isolates Cultured from Infected Zinnia hybrida Plants Grown on the International Space Station']

['Draft genome sequences of two Fusarium oxysporum isolates cultured from infected Zinnia hybrida plants grown on the International Space Station']

restrictedus-pdMar 2025View details →
nasa28/100

['Draft Genome Sequence of Solibacillus kalamii, Isolated from an Air Filter Aboard the International Space Station']

['Solibacillus kalamii was isolated from a HEPA filter in the International Space Station. This strain was of particular interest due to the unique environment in which it was isolated from.']

restrictedus-pdApr 2025View details →
geo24/100

ZFP57 recognizes multiple and closely spaced sequence motif variants to maintain repressive epigenetic marks in mouse embryonic stem cells

GEO Series GSE74757. Mus musculus. 6 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.

openGEO-OpenNov 2015View details →
geo24/100

Engineering orthogonal signaling pathways reveals the sparse distribtion of protein protein interactions in sequence space [RNA-seq]

GEO Series GSE128611. Escherichia coli str. K-12 substr. MG1655. 20 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenSep 2019View details →
geo24/100

Engineering orthogonal signaling pathways reveals the sparse distribtion of protein protein interactions in sequence space [degenerate_library_sort_seq]

GEO Series GSE120780. Escherichia coli str. K-12 substr. MG1655. 56 samples. Type: Other.

openGEO-OpenSep 2019View details →
geo24/100

Expanding the transcriptomic sequence space in leukaemia by RUNX1/RUNX1T1-mediated alternative splicing

GEO Series GSE160792. Homo sapiens. 6 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenNov 2020View details →

ScienceDex guides

Understand access before you commit

These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

Compare curated datasets

Allen Brain Atlas

Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record