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首页> 外文期刊>American Journal of Physiology >Translocon closure to Ca2+ leak in proliferating vascular smooth muscle cells
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Translocon closure to Ca2+ leak in proliferating vascular smooth muscle cells

机译:翻译闭合到Ca2 +泄漏在增殖血管平滑肌细胞中

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Vascular smooth muscle cells have a proliferative phenotype that is important in vascular development, adaptation, and disease. Intracellular calcium handling is thought to play pivotal roles in determining the properties of these cells, and thus previously unrecognized mechanisms for transmem-brane calcium movement are of potential interest. An unsolved question is the mechanism of constitutive (passive) calcium leak from the intracellular stores. Studies of other cell types have suggested that the translocon is a calcium leak pathway. Here we investigated the contribution of the translocon in proliferating vascular smooth muscle cells. Calcium leak into the cytoplasm was measured using fura-2, and protein synthesis was measured using radioactive methionine. Puromycin, emetine, and anisomycin are chemicals that inhibit protein synthesis, acting via the translocon; all three agents strongly inhibited protein synthesis in the smooth muscle cells within 1 h. Puromycin, which opens the translocon, evoked a transient increase in cytoplasmic calcium that was similar in amplitude to the calcium rise evoked by thapsigargin. The puromycin effect was abolished by thapsigargin. The treatment of cells for 1 h with emetine or anisomycin, which close the translocon, inhibited the calcium release evoked by puromycin but not the calcium release evoked by extracellular ATP, endothelin-1, or the calcium ionophore ionomycin. Thapsigargin-evoked calcium rises were slightly suppressed by emetine but unaffected by puromycin or anisomycin. The data suggest that the translocon has the capacity to act as a calcium leak pathway in the ribosomal endoplasmic reticulum but that it is normally closed and lacks relevance to physiological calcium leak mechanisms. Copyright ? 2009 the American Physiological Society.
机译:血管平滑肌细胞具有增殖表型,这在血管开发,适应和疾病中是重要的。在确定这些细胞的性质时,旨在发挥枢转作用的细胞内钙处理,因此以前未被识别的用于传输 - 锋利钙运动的机制具有潜在的兴趣。一个未解决的问题是来自细胞内商店的本构型(被动)钙泄漏的机制。对其他细胞类型的研究表明,转运隆是钙泄漏途径。在这里,我们调查了转运隆在增殖血管平滑肌细胞中的贡献。使用Fura-2测量钙泄漏到细胞质中,并使用放射性蛋氨酸测量蛋白质合成。嘌呤霉素,emetine和茴香霉素是抑制蛋白质合成的化学品,通过摇动件作用;所有三种药剂在1小时内平滑肌细胞中强烈抑制蛋白质合成。嘌呤霉素,其打开摇滚音旋,诱发细胞质钙的瞬时增加,该钙在雷帕格氏菌诱导的钙升高中类似的振幅相似。粉状霉素效应被粉刺被废除。将1小时的细胞与ε或霉菌霉素的处理抑制嘌呤霉素引起的钙释放,但不是通过细胞外ATP,内皮素-1或钙离子载离子霉素引起的钙释放。乳蛋白诱发钙升高的钙升高,但不受嘌呤霉素或菌霉素的影响。数据表明,转音符具有在核糖体内质网中作为钙泄漏途径的能力,但通常闭合并缺乏与生理钙泄漏机制相关的相关性。版权? 2009年美国生理社会。

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