Store-operated calcium channels

被引:1710
作者
Parekh, AB
Putney, JW
机构
[1] Univ Oxford, Dept Physiol, Oxford OX1 3PT, England
[2] NIEHS, NIH, Res Triangle Pk, NC 27709 USA
基金
美国国家卫生研究院;
关键词
D O I
10.1152/physrev.00057.2003
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
In electrically nonexcitable cells, Ca2+ influx is essential for regulating a host of kinetically distinct processes involving exocytosis, enzyme control, gene regulation, cell growth and proliferation, and apoptosis. The major Ca2+ entry pathway in these cells is the store-operated one, in which the emptying of intracellular Ca2+ stores activates Ca2+ influx (store-operated Ca2+ entry, or capacitative Ca2+ entry). Several biophysically distinct store-operated currents have been reported, but the best characterized is the Ca2+ release-activated Ca2+ current, I-CRAC. Although it was initially considered to function only in nonexcitable cells, growing evidence now points towards a central role for I-CRAC-like currents in excitable cells too. In spite of intense research, the signal that relays the store Ca2+ content to CRAC channels in the plasma membrane, as well as the molecular identity of the Ca2+ sensor within the stores, remains elusive. Resolution of these issues would be greatly helped by the identification of the CRAC channel gene. In some systems, evidence suggests that store- operated channels might be related to TRP homologs, although no consensus has yet been reached. Better understood are mechanisms that inactivate store- operated entry and hence control the overall duration of Ca2+ entry. Recent work has revealed a central role for mitochondria in the regulation of I-CRAC, and this is particularly prominent under physiological conditions. I-CRAC therefore represents a dynamic interplay between endoplasmic reticulum, mitochondria, and plasma membrane. In this review, we describe the key electrophysiological features of I-CRAC and other store-operated Ca2+ currents and how they are regulated, and we consider recent advances that have shed insight into the molecular mechanisms involved in this ubiquitous and vital Ca2+ entry pathway.
引用
收藏
页码:757 / 810
页数:54
相关论文
共 417 条
  • [1] Store-operated Ca2+-permeable non-selective cation channels in smooth muscle cells
    Albert, AP
    Large, WA
    [J]. CELL CALCIUM, 2003, 33 (5-6) : 345 - 356
  • [2] Activation of store-operated channels by noradrenaline via protein kinase C in rabbit portal vein myocytes
    Albert, AP
    Large, WA
    [J]. JOURNAL OF PHYSIOLOGY-LONDON, 2002, 544 (01): : 113 - 125
  • [3] Evidence for a vesicle-mediated maintenance of store-operated calcium channels in a human embryonic kidney cell line
    Alderton, JM
    Ahmed, SA
    Smith, LA
    Steinhardt, RA
    [J]. CELL CALCIUM, 2000, 28 (03) : 161 - 169
  • [4] How calcium influx through calcium leak channels is responsible for the elevated levels of calcium-dependent proteolysis in dystrophic myotubes
    Alderton, JM
    Steinhardt, RA
    [J]. TRENDS IN CARDIOVASCULAR MEDICINE, 2000, 10 (06) : 268 - 272
  • [5] ALNEMRI ES, 1992, CANCER RES, V52, P491
  • [6] CONTROL OF CA2+ ENTRY INTO HL-60 AND U937 HUMAN LEUKEMIA-CELLS BY THE FILLING STATE OF THE INTRACELLULAR CA2+ STORES
    ALONSOTORRE, SR
    ALVAREZ, J
    MONTERO, M
    SANCHEZ, A
    GARCIASANCHO, J
    [J]. BIOCHEMICAL JOURNAL, 1993, 289 : 761 - 766
  • [7] Ca2+-dependent capacitance increases in rat basophilic leukemia cells following activation of store-operated Ca2+ entry and dialysis with high-Ca2+-containing intracellular solution
    Artalejo, AR
    Ellory, JC
    Parekh, AB
    [J]. PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1998, 436 (06): : 934 - 939
  • [8] Authi KS, 2002, BLOOD, V100, P4246
  • [9] Baba A, 2003, J NEUROSCI, V23, P7737
  • [10] The role of pp60(c-src) in the regulation of calcium entry via store-operated calcium channels
    Babnigg, G
    Bowersox, SR
    Villereal, ML
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (47) : 29434 - 29437