Pressure-induced and store-operated cation influx in vascular smooth muscle cells is independent of TRPC1

被引:0
作者
Alexander Dietrich
Hermann Kalwa
Ursula Storch
Michael Mederos y Schnitzler
Birgit Salanova
Olaf Pinkenburg
Galyna Dubrovska
Kirill Essin
Maik Gollasch
Lutz Birnbaumer
Thomas Gudermann
机构
[1] Philipps-Universität Marburg,Institut für Pharmakologie und Toxikologie
[2] Max-Delbrück-Centrum,Medizinische Klinik mit Schwerpunkt Nephrologie und internistische Intensivmedizin, Franz
[3] National Institute of Environmental Health Sciences,Volhard Klinik, HELIOS Klinikum
来源
Pflügers Archiv - European Journal of Physiology | 2007年 / 455卷
关键词
TRPC1-deficient mice; Classical transient receptor channel 1; Store-operated cation influx; Pressure-induced cation influx; Bayliss effect; STIM1; Thapsigargin; Inositol-1,4,5 trisphosphate;
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摘要
Among the classical transient receptor potential (TRPC) subfamily, TRPC1 is described as a mechanosensitive and store-operated channel proposed to be activated by hypoosmotic cell swelling and positive pipette pressure as well as regulated by the filling status of intracellular Ca2+ stores. However, evidence for a physiological role of TRPC1 may most compellingly be obtained by the analysis of a TRPC1-deficient mouse model. Therefore, we have developed and analyzed TRPC1−/− mice. Pressure-induced constriction of cerebral arteries was not impaired in TRPC1−/− mice. Smooth muscle cells from cerebral arteries activated by hypoosmotic swelling and positive pipette pressure showed no significant differences in cation currents compared to wild-type cells. Moreover, smooth muscle cells of TRPC1−/− mice isolated from thoracic aortas and cerebral arteries showed no change in store-operated cation influx induced by thapsigargin, inositol-1,4,5 trisphosphate, and cyclopiazonic acid compared to cells from wild-type mice. In contrast to these results, small interference RNAs decreasing the expression of stromal interaction molecule 1 (STIM1) inhibited thapsigargin-induced store-operated cation influx, demonstrating that STIM1 and TRPC1 are mutually independent. These findings also imply that, as opposed to current concepts, TRPC1 is not an obligatory component of store-operated and stretch-activated ion channel complexes in vascular smooth muscle cells.
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页码:465 / 477
页数:12
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  • [1] Nilius B(2007)Transient receptor potential cation channels in disease Physiol Rev 87 165-217
  • [2] Owsianik G(2002)Subunit composition of mammalian transient receptor potential channels in living cells Proc Natl Acad Sci USA 99 7461-7466
  • [3] Voets T(2005)The TRP superfamily of cation channels Sci STKE 2005 re3-198
  • [4] Peters JA(1995)Molecular cloning of a widely expressed human homologue for the Drosophila trp gene FEBS Lett 373 193-9656
  • [5] Hofmann T(1995)TRPC1, a human homolog of a Drosophila store-operated channel Proc Natl Acad Sci USA 92 9652-1196
  • [6] Schaefer M(1996)Cloning and functional expression of a human Ca Neuron 16 1189-1654
  • [7] Schultz G(2001)-permeable cation channel activated by calcium store depletion FASEB J 15 1652-440
  • [8] Gudermann T(2003)Trp1-dependent enhancement of salivary gland fluid secretion: role of store-operated calcium entry Cell Calcium 33 433-80
  • [9] Montell C(2005)TRPC1 store-operated cationic channel subunit Pflugers Arch 451 72-287
  • [10] Zhu X(2007)The diacylgylcerol-sensitive TRPC3/6/7 subfamily of cation channels: functional characterization and physiological relevance Nature 446 284-1241