首页> 外文期刊>Circulation research: a journal of the American Heart Association >Platelet-derived growth factor maintains stored calcium through a nonclustering orai1 mechanism but evokes clustering if the endoplasmic reticulum is stressed by store depletion.
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Platelet-derived growth factor maintains stored calcium through a nonclustering orai1 mechanism but evokes clustering if the endoplasmic reticulum is stressed by store depletion.

机译:血小板衍生的生长因子通过非聚簇的orai1机理维持钙的存储,但是如果内质网受存储耗竭的影响,则会引起聚集。

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Rationale: Calcium entry through Orai1 channels drives vascular smooth muscle cell migration and neointimal hyperplasia. The channels are activated by the important growth factor platelet-derived growth factor (PDGF). Channel activation is suggested to depend on store depletion, which redistributes and clusters stromal interaction molecule 1 (STIM1), which then coclusters and activates Orai1. Objective: To determine the relevance of STIM1 and Orai1 redistribution in PDGF responses. Methods and Results: Vascular smooth muscle cells were cultured from human saphenous vein. STIM1 and Orai1 were tagged with green and red fluorescent proteins to track them in live cells. Under basal conditions, the proteins were mobile but mostly independent of each other. Inhibition of sarco-endoplasmic reticulum calcium ATPase led to store depletion and dramatic redistribution of STIM1 and Orai1 into coclusters. PDGF did not evoke redistribution, even though it caused calcium release and Orai1-mediated calcium entry in the same time period. After chemical blockade of Orai1-mediated calcium entry, however, PDGF caused redistribution. Similarly, mutagenic disruption of calcium flux through Orai1 caused PDGF to evoke redistribution, showing that calcium flux through the wild-type channels had been filling the stores. Acidification of the extracellular medium to pH 6.4 caused inhibition of Orai1-mediated calcium entry and conferred capability for PDGF to evoke complete redistribution and coclustering. Conclusions: The data suggest that PDGF has a nonclustering mechanism by which to activate Orai1 channels and maintain calcium stores replete. Redistribution and clustering become important, however, when the endoplasmic reticulum stress signal of store depletion arises, for example when acidosis inhibits Orai1 channels.
机译:理由:钙通过Orai1通道进入可驱动血管平滑肌细胞迁移和新内膜增生。通道被重要的生长因子血小板衍生的生长因子(PDGF)激活。建议通道激活取决于存储损耗,它重新分布和聚集基质相互作用分子1(STIM1),然后簇聚并激活Orai1。目的:确定STIM1和Orai1重新分布在PDGF反应中的相关性。方法与结果:从人隐静脉培养血管平滑肌细胞。 STIM1和Orai1用绿色和红色荧光蛋白标记,以在活细胞中追踪它们。在基础条件下,蛋白质是可移动的,但大多数彼此独立。肌内质网钙ATPase的抑制导致STIM1和Orai1的存储消耗和戏剧性的重新分配。尽管PDGF引起钙释放和Orai1介导的钙进入同一时间,但它并未引起再分布。但是,在化学阻断Orai1介导的钙进入后,PDGF导致了重新分布。同样,通过Orai1引起的钙通量的诱变破坏导致PDGF引起重新分布,这表明通过野生型通道的钙通量已经充满了商店。将细胞外培养基酸化至​​pH 6.4导致抑制Orai1介导的钙进入,并赋予PDGF引起完全重新分布和共聚的能力。结论:数据表明PDGF具有非聚集机制,可通过该机制激活Orai1通道并维持钙存储充足。但是,当出现内耗的内质网应激信号时,例如当酸中毒抑制Orai1通道时,重新分布和聚集就变得很重要。

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