Caveolin-1 regulates store-operated Ca2+ influx by binding of its scaffolding domain to transient receptor potential channel-1 in endothelial cells

被引:78
作者
Kwiatek, Angela M.
Minshall, Richard D.
Cool, David R.
Skidgel, Randal A.
Malik, Asrar B.
Tiruppathi, Chinnaswamy
机构
[1] Univ Illinois, Coll Med, Dept Pharmacol, Chicago, IL 60612 USA
[2] Univ Illinois, Coll Med, Ctr Lund & Vasc Biol, Chicago, IL 60612 USA
[3] Wright State Univ, Boonshoft Sch Med, Dept Pharmacol Toxicol, Dayton, OH 45435 USA
关键词
D O I
10.1124/mol.105.021741
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Caveolin-1 associates with store-operated cation channels (SOC) in endothelial cells. We examined the role of the caveolin-1 scaffolding domain (CSD) in regulating the SOC [i.e., transient receptor potential channel-1 (TRPC1)] in human pulmonary artery endothelial cells (HPAECs). We used the cell-permeant antennapedia (AP)-conjugated CSD peptide, which competes for protein binding partners with caveolin-1, to assess the interactions of caveolin-1 with TRPC1 and its consequences on thrombin-induced Ca2+ influx. We observed that AP-CSD peptide markedly reduced thrombin-induced Ca2+ influx via SOC in HPAECs in contrast to control peptide. AP-CSD also suppressed thapsigargin-induced Ca2+ influx. Streptavidin-bead pull-down assay indicated strong binding of biotin-labeled AP-CSD peptide to TRPC1. Immunoprecipitation studies demonstrated an interaction between endogenous TRPC1 and ectopically expressed hemagglutinin-tagged CSD. Analysis of the deduced TRPC1 amino acid sequence revealed the presence of CSD binding consensus sequence in the TRPC1 C terminus. We also observed that an AP-TRPC1 peptide containing the CSD binding sequence markedly reduced the thrombin-induced Ca2+ influx. We identified the interaction between biotin-labeled AP-TRPC1 C terminus peptide and caveolin-1. Thus, these results demonstrate a crucial role of caveolin-1 scaffolding domain interaction with TRPC1 in regulating Ca2+ influx via SOC.
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页码:1174 / 1183
页数:10
相关论文
共 41 条
[1]  
Bergveld HJ., 2002, PHIL RES, P9, DOI 10.1007/978-94-017-0843-2_2
[2]   Dissecting the molecular control of endothelial NO synthase by caveolin-1 using cell-permeable peptides [J].
Bernatchez, PN ;
Bauer, PM ;
Yu, J ;
Prendergast, JS ;
He, PN ;
Sessa, WC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (03) :761-766
[3]   A comparison of the genes coding for canonical TRP channels and their M, V and P relatives [J].
Birnbaumer, L ;
Yidirim, E ;
Abramowitz, J .
CELL CALCIUM, 2003, 33 (5-6) :419-432
[4]   Modulation of Ca2+ entry by polypeptides of the inositol 1,4,5-trisphosphate receptor (IP3R) that bind transient receptor potential (TRP):: Evidence for roles of TRP and IP3R in store depletion-activated Ca2+ entry [J].
Boulay, G ;
Brown, DM ;
Qin, N ;
Jiang, MS ;
Dietrich, A ;
Zhu, MX ;
Chen, ZG ;
Birnbaumer, M ;
Mikoshiba, K ;
Birnbaumer, L .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (26) :14955-14960
[5]   Caveolin-1 contributes to assembly of store-operated Ca2+ influx channels by regulating plasma membrane localization of TRPC1 [J].
Brazer, SCW ;
Singh, BB ;
Liu, XB ;
Swaim, W ;
Ambudkar, IS .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (29) :27208-27215
[6]   Contribution of endogenously expressed Trp1 to a Ca2+-selective, store-operated Ca2+ entry pathway [J].
Brough, GH ;
Wu, SW ;
Cioffi, D ;
Moore, TM ;
Li, M ;
Dean, N ;
Stevens, T .
FASEB JOURNAL, 2001, 15 (10) :1727-1738
[7]   A role for hTRPCl and lipid raft domains in store-mediated calcium entry in human platelets [J].
Brownlow, SL ;
Harper, AGS ;
Harper, MT ;
Sage, SO .
CELL CALCIUM, 2004, 35 (02) :107-113
[8]   In vivo delivery of the caveolin-1 scaffolding domain inhibits nitric oxide synthesis and reduces inflammation [J].
Bucci, M ;
Gratton, JP ;
Rudic, RD ;
Acevedo, L ;
Roviezzo, F ;
Cirino, G ;
Sessa, WC .
NATURE MEDICINE, 2000, 6 (12) :1362-1367
[9]   C-Terminal sequencing of peptide hormones using carboxypeptidase Y and SELDI-TOF mass spectrometry [J].
Cool, DR ;
Hardiman, A .
BIOTECHNIQUES, 2004, 36 (01) :32-34
[10]   Identification of peptide and protein ligands for the caveolin-scaffolding domain - Implications for the interaction of caveolin with caveolae-associated proteins [J].
Couet, J ;
Li, SW ;
Okamoto, T ;
Ikezu, T ;
Lisanti, MP .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (10) :6525-6533