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Evolutionary analyses unveil the molecular mechanism of fast inactivation in calcium-permeable TRP channels

biorxiv. 2019; 
Lisandra Flores-Aldama, View Michael W. Vandewege, Kattina Zavala, View Charlotte K. Colenso, View Daniel Bustos, Wendy Gonzalez, View Sebastian E. Brauchi, View Juan C. Opazo
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ORF cDNA Clones/MolecularCloud Open Reading Frames (ORF) encoding the different channels analyzed [Spotted gar TRPV5/6 (gTRPV5/6) WT, gTRPV5 V294LC300T (IS-1), anole lizard TRPV5 (aTRPV5) WT, aTRPV5 E293DF297LS303T (IS-1), aTRPV5 I415VF420Y (IS-2) anole lizard TRPV6 (aTRPV6) WT, chicken TRPV5 (chTRPV5) WT, chTRPV5 E290DF294LS300T (IS-1), human TRPV5 (hTRPV5) WT, hTRPV5 E288DF292LS298T (IS-1) and human TRPV6 (hTRPV6) WT] were obtained from GenScript Corporation (Nanjing, China) and were inserted in a pcDNA3.1(+) vector. Get A Quote

摘要

Fundamental for calcium homeostasis in vertebrates, TRPV5 and TRPV6 are calcium-selective ion channels belonging to the Transient Receptor Potential (TRP) gene family. Detailed phylogenetic analysis suggests that duplications from which TRPV5 and TRPV6 originated occurred independently in the ancestors of mammals, sauropsids, amphibians, and chondrichthyans. Coincident with the conquest of land and the physiological changes needed to maintain calcium homeostasis, our expression analyses suggest a change in the expression pattern from gills to kidney. Within amniotes, we identified a traceable sequence signature of three amino acids at the amino-terminal intracellular region that correlates well with both of the... More

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