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瞬时受体电位通道蛋白在人血小板中的表达及作用:TRPC6构成非储存依赖性钙内流通道的证据

Expression and role of TRPC proteins in human platelets: evidence that TRPC6 forms the store-independent calcium entry channel.

作者信息

Hassock Sheila R, Zhu Michael X, Trost Claudia, Flockerzi Veit, Authi Kalwant S

机构信息

Centre for Cardiovascular Biology and Medicine, King's College London, New Hunt's House, Guy's Campus, London, UK.

出版信息

Blood. 2002 Oct 15;100(8):2801-11. doi: 10.1182/blood-2002-03-0723.

Abstract

Store-operated Ca(++) entry (SOCE) is thought to comprise the major pathway for Ca(++) entry in platelets. Recently, a number of transient receptor potential (TRP) proteins, which have been divided into 3 groups (TRPC, TRPM, and TRPV), have been suggested as SOCE channels. We report the expression and function of TRPC proteins in human platelets. TRPC6 is found at high levels and TRPC1 at low levels. Using purified plasma (PM) and intracellular membranes (IM), TRPC6 is found in the PM, but TRPC1 is localized to the IM. Using Fura-2-loaded platelets, we report that, in line with TRPC6 expression, 1-oleoyl-2-acetyl-sn-glycerol (OAG) stimulated the entry of Ca(++) and Ba(2+) independently of protein kinase C. Thrombin also induced the entry of Ca(++) and Ba(2+), but thapsigargin, which depletes the stores, induced the entry of only Ca(++). Thus, thrombin activated TRPC6 via a SOCE-independent mechanism. In phosphorylation studies, we report that neither TRPC6 nor TRPC1 was a substrate for tyrosine kinases. TRPC6 was phosphorylated by cAMP-dependent protein kinase (cAMP-PK) and associated with other cAMP-PK substrates. TRPC1 was not phosphorylated by cAMP-PK but also associated with other substrates. Activation of cAMP-PK inhibited Ca(++) but not Ba(2+) entry induced by thrombin and neither Ca(++) nor Ba(2+) entry stimulated by OAG. These results suggest that TRPC6 is a SOCE-independent, nonselective cation entry channel stimulated by thrombin and OAG. TRPC6 is a substrate for cAMP-PK, although phosphorylation appears to not affect cation permeation. TRPC1 is located in IM, suggesting a role at the level of the stores.

摘要

钙库操纵性钙内流(SOCE)被认为是血小板钙内流的主要途径。最近,一些瞬时受体电位(TRP)蛋白被认为是SOCE通道,这些蛋白已被分为3组(TRPC、TRPM和TRPV)。我们报道了TRPC蛋白在人血小板中的表达和功能。发现TRPC6水平高而TRPC1水平低。利用纯化的质膜(PM)和内膜(IM),发现TRPC6存在于质膜中,而TRPC1定位于内膜。使用负载Fura-2的血小板,我们报道,与TRPC6表达一致,1-油酰基-2-乙酰基-sn-甘油(OAG)可独立于蛋白激酶C刺激钙和钡的内流。凝血酶也可诱导钙和钡的内流,但耗尽钙库的毒胡萝卜素仅诱导钙的内流。因此,凝血酶通过一种不依赖SOCE的机制激活TRPC6。在磷酸化研究中,我们报道TRPC6和TRPC1都不是酪氨酸激酶的底物。TRPC6被cAMP依赖性蛋白激酶(cAMP-PK)磷酸化并与其他cAMP-PK底物相关联。TRPC1不被cAMP-PK磷酸化,但也与其他底物相关联。cAMP-PK的激活抑制了凝血酶诱导的钙内流但不抑制钡内流,也抑制了OAG刺激的钙和钡内流。这些结果表明,TRPC6是一种不依赖SOCE的、非选择性阳离子内流通道,受凝血酶和OAG刺激。TRPC6是cAMP-PK的底物,尽管磷酸化似乎不影响阳离子通透。TRPC1位于内膜,提示其在钙库水平发挥作用。

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