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Depletion of intracellular ca2+ stores stimulates the translocation of vanilloid transient receptor potential 4-C1 heteromeric channels to the plasma membrane

  • Xin Ma
  • , Jingyuan Cao
  • , Jianhong Luo
  • , Bernd Nilius
  • , Yu Huang
  • , Indu S. Ambudkar
  • , Xiaoqiang Yao

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

OBJECTIVE-: To examine the effect of Ca2+ store depletion on the translocation of vanilloid transient receptor potential (TRPV) 4-C1 heteromeric channels to the plasma membrane. METHODS AND RESULTS-: Vesicular trafficking is a key mechanism for controlling the surface expression of TRP channels in the plasma membrane, where they perform their function. TRP channels in vivo are often composed of heteromeric subunits. Experiments using total internal fluorescence reflection microscopy and biotin surface labeling show that Ca 2+ store depletion enhanced TRPV4-C1 translocation into the plasma membrane in human embryonic kidney 293 cells that were coexpressed with TRPV4 and canonical transient receptor potential 1 (TRPC1). Fluorescent Ca 2+ measurement and patch clamp studies demonstrated that Ca 2+ store depletion enhanced 4α-PDD-stimulated Ca2+ influx and cation current. The translocation required stromal interacting molecule 1 (STIM1). TRPV4-C1 heteromeric channels were more favorably translocated to the plasma membrane than TRPC1 or TRPV4 homomeric channels. Similar results were obtained in native vascular endothelial cells. CONCLUSION-: Ca2+ store depletion stimulates the insertion of TRPV4-C1 heteromeric channels into the plasma membrane, resulting in an augmented Ca 2+ influx in response to flow in the human embryonic kidney cell overexpression system and native endothelial cells. © 2010 American Heart Association, Inc.
Original languageEnglish
Pages (from-to)2249-2255
JournalArteriosclerosis, Thrombosis, and Vascular Biology
Volume30
Issue number11
DOIs
Publication statusPublished - Nov 2010
Externally publishedYes

Bibliographical note

Publication details (e.g. title, author(s), publication statuses and dates) are captured on an “AS IS” and “AS AVAILABLE” basis at the time of record harvesting from the data source. Suggestions for further amendments or supplementary information can be sent to [email protected].

Research Keywords

  • depletion intracellular Ca2+ stores
  • endothelial cell
  • flow
  • translocation
  • TRPV4-C1 heteromeric channel

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