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9 results for “Daboia”
Fig. 2 in Daboia russelii (Reptilia: Squamata) in remote parts of Gujjar Village Miandam, Swat, Khyber Pakhtunkhwa, Pakistan
Fig. 2. Collection sites of Daboia russelii in Gujjar village Miandam, Swat, KP, Pakistan. (A) Karoo, 35º3ʹ32ʺN 72º33ʹ11ʺE; (B) Kaalandori, 35º3ʹ31ʺN 72º32ʹ21ʺE; (C) Chhar 35º3ʹ34ʺN 72º33ʹ12ʺE; (D) Doop, 35º3ʹ23ʺN 72º32ʹ58ʺE.
Fig. 1 in Daboia russelii (Reptilia: Squamata) in remote parts of Gujjar Village Miandam, Swat, Khyber Pakhtunkhwa, Pakistan
Fig. 1. Map of Khyber Pakhtunkhwa, red circle shows the study area in the District Swat within the province.
Fig. 3 in Daboia russelii (Reptilia: Squamata) in remote parts of Gujjar Village Miandam, Swat, Khyber Pakhtunkhwa, Pakistan
Fig. 3. Photos of the dead Daboia russelii specimens from Gujjar village Miandam, Swat, KP, Pakistan. (A, B) Dorsal views, (C, D) Fangs, (E) Black spots on ventral side, (F) Anal orifice with tail showing a zip-like structure.
DATASET - Mass Spectrometry - Snake venom proteomics of seven taxa of the genera Vipera, Montivipera, Macrovipera and Daboia across Türkiye
<p><strong>Publication: Damm <em>et al.</em> 2024 - <a title="DOI URL" href="https://doi.org/10.1021/acs.jproteome.4c00171">https://doi.org/10.1021/acs.jproteome.4c00171</a></strong></p> <p> </p> <p><strong>This DATASET collection includes the mass spectrometry files for proteomics venom investigation of seven taxa of the genera <em>Vipera</em>, <em>Montivipera</em>, <em>Macrovipera</em> and <em>Daboia </em>across Türkiye.</strong></p> <p><strong>Species list:</strong></p> <ol> <li>Vipera berus barani</li> <li>Vipera darevskii</li> <li>Montivipera bulgardaghica bulgardaghica </li> <li>Montivipera bulgardaghica albizona</li> <li>Montivipera xanthina</li> <li>Macrovipera lebetinus obtusa</li> <li>Daboia palaestinae</li> </ol> <p><strong>Folders 01-07 - BOTTOM-UP PROTEOMICS</strong>: The venom pools were investigated by the bottom-up "snake venomics" (labled as SVX) approach and in short: separated by RP-HPLC, followed by SDS-PAGE separation and the single bands were in-gel processed by DTT, IAC and finally o/n tryptic digested. Samples submitted to HPLC-MS/MS. Early peptidic fractions of the first HPLC run were directly submitted to HPLC-MS/MS analytic w/o further gel procession. Folders 01 to 07 include the MS and MS/MS spectra of the snake species 1-7, respectively. Files are included as RAW and MZML format.</p> <p>Used instrument: LTQ Orbitrap XL mass spectrometer (Thermo, Bremen, Germany) with an Agilent 1260 HPLC system (Agilent Technologies, Waldbronn, Germany) using a reversed-phase Grace Vydac 218MS C18 (2.1 × 150 mm; 5 μm particle size) column.</p> <p>Modifications: UNIMOD:4 - \"Iodoacetamide derivative.\"</p> <p>Used protein database: Uniprot_8570_serpentes_reviewed_canonical_2640_entries_cRAP_210408.fasta</p> <p><strong>Folders 10-11 - TOP-DOWN PROTEOMICS</strong>: The venom pools were investigated by the non-reduced and TCEP reduced top-down (labled as TD) approach and in short: untreated or TCEP reduced samples submitted to HPLC-MS/MS. Folders 10 and 11 include the MS and MS/MS spectra of the snake species 1-7 as labled. Files are included as RAW and MZML format.</p> <p>Used instrument: Q Exactive HF mass spectrometer (Thermo, Bremen, Germany) with a Vanquish ultra-high performance liquid chromatography (UHPLC) system (Agilent Technologies, Waldbronn, Germany) using a reversed-phase Supelco Discovery BIO wide C18 (2.0 × 150 mm; 3 μm particle size; 300 Å pore size).</p> <p>Modifications: none (either red. or non-red. disulfide bridges)</p> <p>Used protein database for TopPIC analysis: Uniprot_8570_serpentes_reviewed_ISOandCAN_2749_entries_NOcRAP_231011.fasta</p> <p> </p>
Supplement DataLongitudinal metabolomics and lipidomics analyses reveal markers of envenoming by Bothrops asper and Daboia russelii in an experimental murine model
<p>Longitudinal metablolomic and lipidomics analyses were carried out on the blood plasma of mice injected with venoms of the viperid species Northrop's asper and Daboia russelii.</p>
Optimal Dose of Antivenom for Daboia Siamensis Envenomings
ClinicalTrials.gov study NCT04210141. IPD Sharing: UNDECIDED. Countries: 1. Publications: 5.
Data from: Phylogentic analysis of serine proteases from Russell's viper (Daboia russelli siamensis) and Agkistrodon piscivorus leucostoma venom
Serine proteases are widely found in snake venoms. They have variety of functions including contributions to hemostasis. In this study, five serine protease were cloned and characterized from two different cDNA libraries. Factor V activator (RVV-V), alpha fibrinogenase (RVAF) and beta fibrinogenase (RVBF) from Russell's viper (Daboia russelli siamensis), and plasminogen activator (APL-PA) and protein C activator (APL-C) from Agkistrodon piscivorus leucostoma. The snake venom serine proteases were clustered in phylogenetic tree according to their functions. KA/KS values suggested that accelerated evolution has occurred in the mature protein-coding regions in cDNAs of snake venom serine proteases.
Data from: Phylogentic analysis of serine proteases from Russell’s viper (Daboia russelli siamensis) and Agkistrodon piscivorus leucostoma venom
Open the record for dataset details and reuse information.
Mapping the immune cell microenvironment by digital spatial profiling in muscle tissue injected with the venom of Daboia russelii
GEO Series GSE222977. Mus musculus. 63 samples. Type: Other.
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