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12 results for “Cav1”

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zenodo44/100

Source data for "Feed-forward metabotropic signaling by Cav1 Ca2+ channels supports pacemaking in pedunculopontine cholinergic neurons"

<p><strong>Fig.1A_ChAT.tif</strong></p><p>Confocal image (green channel, anti-ChAT staining) for Fig.1A</p><p>&nbsp;</p><p><strong>Fig.1A_tdTomato.tif&nbsp;</strong></p><p>Confocal image (red channel, tdTomato) for Fig.1A</p><p>&nbsp;</p><p><strong>Fig.1B_ChAT.tif</strong></p><p>Confocal image (green channel, anti-ChAT staining) for Fig.1B</p><p>&nbsp;</p><p><strong>Fig.1B_tdTomato.tif</strong></p><p>Confocal image (red channel, tdTomato) for Fig.1B</p><p>&nbsp;</p><p><strong>Fig.1C_DIC.png</strong></p><p>Differential interference contrast micrograph for Fig.1C left</p><p>&nbsp;</p><p><strong>Fig.1C_Fluo.png</strong></p><p>Epifluorescent illumination micrograph for Fig. 1C right</p><p>&nbsp;</p><p><strong>Fig.1DEH.xlsx</strong></p><p>Numerical data for the charts in Fig. 1D, Fig.1E, Fig.1H</p><p>&nbsp;</p><p><strong>Fig.1F.tif</strong></p><p>MAX projection of z-stack of 2PLSM images (red channel, Alexa 594) used to generate Fig.1F&nbsp;</p><p>&nbsp;</p><p><strong>Fig.1F_inset.tif</strong></p><p>2PLSM image (green channel, Fura-2) for the right inset of Fig.1F</p><p>&nbsp;</p><p><strong>Fig.2A_inset.tif</strong></p><p>Confocal image (green channel, GFP) for the higher magnification inset of Fig.2A</p><p>&nbsp;</p><p><strong>Fig.2A.tif</strong></p><p>Confocal image (green channel, GFP) for Fig.2A</p><p>&nbsp;</p><p><strong>Fig.2B_bottom.tif</strong></p><p>Confocal image (green channel, GFP) for Fig.2B (bottom and overlay panels)</p><p>&nbsp;</p><p><strong>Fig.2B_top.tif</strong></p><p>Confocal image (red channel, td Tomato) for Fig.2B (top and overlay panels)</p><p>&nbsp;</p><p><strong>Fig.2CE.xlsx</strong></p><p>Numerical data for the charts in Fig. 2C, Fig. 2E</p><p>&nbsp;</p><p><strong>Fig.3B.tif</strong></p><p>Confocal image (green channel, MitoGCaMP6) for Fig.3B and overlay in Fig.3D</p><p>&nbsp;</p><p><strong>Fig.3C.tif</strong></p><p>Confocal image (red channel, tdTomato) for Fig.3C and overlay in Fig.3D</p><p>&nbsp;</p><p><strong>Fig.3E.tif</strong></p><p>2PLSM image (green channel, MitoGCaMP6) for Fig.3E</p><p>&nbsp;</p><p><strong>Fig.3GIJ.xlsx</strong></p><p>Numerical data for the charts in Fig. 3G, Fig. 3I, Fig.3J</p><p>&nbsp;</p><p><strong>Fig.4B.tif</strong></p><p>2PLSM image (green channel, MitoGCaMP6) for Fig.4B</p><p>&nbsp;</p><p><strong>Fig.4DFG.xlsx</strong></p><p>Numerical data for the charts in Fig.4D, Fig.4F, Fig.4G</p><p>&nbsp;</p><p><strong>Fig.5A.tif</strong></p><p>Confocal image (green channel, PercevalHR) for Fig.5A and overlay in Fig.5C</p><p>&nbsp;</p><p><strong>Fig.5B.tif</strong></p><p>Confocal image (red channel, tdTomato) for Fig.5B and overlay in Fig.5C</p><p>&nbsp;</p><p><strong>Fig.5D.tif</strong></p><p>2PLSM image (green channel, PercevalHR) for Fig.5D</p><p>&nbsp;</p><p><strong>Fig.5GHJ.xlsx</strong></p><p>Numerical data for the charts in Fig.5G, Fig.5H, Fig.5J</p><p>&nbsp;</p><p><strong>Fig.6BCD.xlsx</strong></p><p>Numerical data for the charts in Fig.6b, Fig.6C, Fig.6D</p><p>&nbsp;</p><p><strong>Fig.7A.tif</strong></p><p>Confocal image (green channel, mito-roGFP) for Fig.7A and overlay in Fig.7C</p><p>&nbsp;</p><p><strong>Fig.7B.tif</strong></p><p>Confocal image (red channel, tdTomato) for Fig.7B and overlay in Fig.7C</p><p>&nbsp;</p><p><strong>Fig.7D.tif</strong></p><p>2PLSM image (green channel, mito-roGFP) for Fig.7D</p><p>&nbsp;</p><p><strong>Fig.7F.xlsx</strong></p><p>Numerical data for the charts in Fig.7F</p>

opencc-by-4.0Oct 2023View details →
dryad36/100

Cytosolic peptides encoding CaV1 C-termini downregulate the calcium channel activity-neuritogenesis coupling

<p><span>L-type Ca<sup>2+</sup> (Ca<sub>V</sub>1) channels transduce channel activities into nuclear signals critical to neuritogenesis. Also, standalone peptides encoded by </span><span><span>Ca<sub>V</sub>1</span> DCT (distal carboxyl-terminus) act as nuclear transcription factors reportedly promoting neuritogenesis. Here, by focusing on exemplary </span><span><span>Ca<sub>V</sub>1</span>.3 and cortical neurons under basal conditions, we discover that cytosolic DCT peptides downregulate neurite outgrowth by the interactions with </span><span><span>Ca<sub>V</sub>1</span>'s apo-calmodulin binding motif. Distinct from nuclear DCT, various cytosolic peptides exert a gradient of inhibitory effects on </span><span>Ca<sup>2+</sup></span><span> influx via CaV1 channels and neurite extension and arborization, and also the intermediate events including CREB activation and c-Fos expression. The inhibition efficacies of DCT are quantitatively correlated with its binding affinities. Meanwhile, c</span><span>ytosolic inhibition tends to facilitate neuritogenesis indirectly by favoring </span><span>Ca<sup>2+</sup>-sensitive nuclear retention of DCT. In summary, DCT peptides as a class of </span><span><span>Ca<sub>V</sub>1</span> inhibitors specifically regulate the channel activity-neuritogenesis coupling in a variant-, affinity-, and localization-dependent manner.</span></p>

opencc-zeroSep 2022View details →
ClinicalTrials.gov36/100

Dose, Safety, Tolerability and Immunogenicity of a Stabilized Prefusion RSV F Subunit Protein Vaccine, VRC-RSVRGP084-00-VP (DS-Cav1), Alone or With Alum Adjuvant, in Healthy Adults

ClinicalTrials.gov study NCT03049488. IPD Sharing: NO. Countries: 1. Publications: 6.

closedIPD-NOFeb 2026View details →
dryad36/100

Cytosolic peptides encoding CaV1 C-termini downregulate the calcium channel activity-neuritogenesis coupling

Open the record for dataset details and reuse information.

publicSep 2022View details →
geo24/100

Expression data comparing Hep3B Caveolin-1 (Cav1) knockdown cells with Hep3B non-target control cells

GEO Series GSE75994. Homo sapiens. 2 samples. Type: Expression profiling by array.

openGEO-OpenMar 2016View details →
geo24/100

SWAP70 Promotes Atherosclerosis via Endothelial CAV1 Nuclear Translocation

GEO Series GSE301062. Homo sapiens. 9 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenJan 2026View details →
geo24/100

Impact of CAV1 target site blocker (CAV1 TSB) on bleomycin-induced lung fibrosis

GEO Series GSE97826. Mus musculus. 16 samples. Type: Expression profiling by array.

openGEO-OpenApr 2019View details →
geo24/100

Impact of miR-199-5p overexpression and CAV1 silencing on human lung fibroblasts

GEO Series GSE34815. Homo sapiens. 14 samples. Type: Expression profiling by array.

openGEO-OpenFeb 2013View details →
geo20/100

Expression data from cav1-/+apcmin/+ mouse intestinal tissue

GEO Series GSE124838. Mus musculus. 2 samples. Type: Expression profiling by array.

openGEO-OpenJan 2019View details →
geo20/100

SWAP70 Promotes Atherosclerosis via Endothelial CAV1 Nuclear Translocation [ATAC-seq]

GEO Series GSE301155. Homo sapiens. 6 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.

openGEO-OpenJan 2026View details →
ClinicalTrials.gov20/100

Detection of Cav1 Calcium Channels in Inflammatory Cells of Asthmatic Children

ClinicalTrials.gov study NCT02809560. IPD Sharing: NO. Countries: 0. Publications: 0.

closedIPD-NOFeb 2026View details →
geo16/100

Gene expression profiling of Cav1 knock down in murine hepatic stellate cell

GEO Series GSE229291. Mus musculus. 9 samples. Type: Expression profiling by array.

openGEO-OpenApr 2023View details →

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