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环磷酸腺苷核糖可增加平滑肌中钙离子的清除。

Cyclic ADP-ribose increases Ca2+ removal in smooth muscle.

作者信息

Bradley Karen N, Currie Susan, MacMillan Debbi, Muir Thomas C, McCarron John G

机构信息

Institute of Biomedical and Life Sciences, Neuroscience and Biomedical Systems, West Medical Building, University of Glasgow, Glasgow G12 8QQ, UK.

出版信息

J Cell Sci. 2003 Nov 1;116(Pt 21):4291-306. doi: 10.1242/jcs.00713. Epub 2003 Sep 9.

Abstract

Ca2+ release via ryanodine receptors (RyRs) is vital in cell signalling and regulates diverse activities such as gene expression and excitation-contraction coupling. Cyclic ADP ribose (cADPR), a proposed modulator of RyR activity, releases Ca2+ from the intracellular store in sea urchin eggs but its mechanism of action in other cell types is controversial. In this study, caged cADPR was used to examine the effect of cADPR on Ca2+ signalling in single voltage-clamped smooth muscle cells that have RyR but lack FKBP12.6, a proposed target for cADPR. Although cADPR released Ca2+ in sea urchin eggs (a positive control), it failed to alter global or subsarcolemma [Ca2+]c, to cause Ca2+-induced Ca2+ release or to enhance caffeine responses in colonic myocytes. By contrast, caffeine (an accepted modulator of RyR) was effective in these respects. The lack of cADPR activity on Ca2+ release was unaffected by the introduction of recombinant FKBP12.6 into the myocytes. Indeed in western blots, using brain membrane preparations as a source of FKBP12.6, cADPR did not bind to FKBPs, although FK506 was effective. However, cADPR increased and its antagonist 8-bromo-cADPR slowed the rate of Ca2+ removal from the cytoplasm. The evidence indicates that cADPR modulates [Ca2+]c but not via RyR; the mechanism may involve the sarcolemma Ca2+ pump.

摘要

通过兰尼碱受体(RyRs)释放Ca2+在细胞信号传导中至关重要,并调节多种活动,如基因表达和兴奋-收缩偶联。环ADP核糖(cADPR)是一种被认为可调节RyR活性的物质,它能从海胆卵的细胞内储存库中释放Ca2+,但其在其他细胞类型中的作用机制存在争议。在本研究中,使用笼锁cADPR来检测cADPR对单个电压钳制的平滑肌细胞中Ca2+信号传导的影响,这些平滑肌细胞具有RyR但缺乏FKBP12.6,而FKBP12.6被认为是cADPR的作用靶点。尽管cADPR能在海胆卵中释放Ca2+(阳性对照),但它未能改变结肠肌细胞的整体或肌膜下[Ca2+]c,未能引发Ca2+诱导的Ca2+释放,也未能增强咖啡因反应。相比之下,咖啡因(一种公认的RyR调节剂)在这些方面是有效的。将重组FKBP12.6引入肌细胞后,cADPR对Ca2+释放缺乏活性这一情况并未改变。实际上,在蛋白质印迹分析中,以脑膜制剂作为FKBP12.6的来源,cADPR并未与FKBP结合,尽管FK506是有效的。然而,cADPR增加了,其拮抗剂8-溴-cADPR减缓了Ca2+从细胞质中移除的速率。证据表明,cADPR调节[Ca2+]c,但不是通过RyR;其机制可能涉及肌膜Ca2+泵。

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