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首页> 外文期刊>Toxicology and Applied Pharmacology >Orai1-STIM1 formed store-operated Ca2+ channels (SOCs) as the molecular components needed for Pb2+ entry in living cells.
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Orai1-STIM1 formed store-operated Ca2+ channels (SOCs) as the molecular components needed for Pb2+ entry in living cells.

机译:Orai1-STIM1形成了存储操作的Ca2 +通道(SOC),作为活细胞中Pb2 +进入所需的分子成分。

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Heavy metal lead (Pb2+) is a pollutant and causes severe toxicity when present in human tissues especially the nervous system. Recent reviews have suggested that Pb2+ can target Ca2+-related proteins within neurons and that Ca2+ channels might be a candidate for Pb2+ entry. This study's main aim was to identify the functional entry pathway of Pb2+ into living cells. We firstly characterized the endogenous expression of Orai1 and STIM1 mRNA together with the level of thapsigargin (TG) stimulated capacitative Ca2+ entry in PC12 and HeLa cells; this was done by RT-PCR and time-lapse Ca2+ imaging microscopy, respectively. Our data supported Orai1 and STIM1 as contributing to store-operated Ca2+ channel (SOC) basal activity. Secondly, using the indo-1 quenching method with the SOC blocker 2-APB, we observed that Pb2+ was able to enter cells directly through unactivated SOCs without TG pretreatment. Thirdly, we further demonstrated that co-expression of Orai1 and STIM1 differentially enhanced SOC functional activity (4-fold with PC12 and 5-fold with HeLa cells) and Pb2+ entry (5- to 7-fold with PC12 and 2-fold with HeLa cells). Furthermore, after a 1 h of Pb2+ exposure, the depolarization- and histamine-induced Ca2+ responses were significantly decreased in both PC12 and HeLa cells in a dose-dependent manner. This result indicated that the decreased Ca2+ responses were, in part, due to Pb2+ entry. In summary, our results suggest that SOCs are responsible for Pb2+ permeation and that the Orai1-STIM1 protein complex formed by functional SOCs is one of the molecular components involved in Pb2+ entry.
机译:重金属铅(Pb2 +)是一种污染物,当存在于人体组织(尤其是神经系统)中时,会引起严重的毒性。最近的评论表明,Pb2 +可以靶向神经元内的Ca2 +相关蛋白,并且Ca2 +通道可能是Pb2 +进入的候选者。这项研究的主要目的是确定Pb2 +进入活细胞的功能性进入途径。我们首先表征了PC12和HeLa细胞中Orai1和STIM1 mRNA的内源表达以及毒胡萝卜素(TG)刺激的Ca2 +进入细胞的水平。这分别通过RT-PCR和延时Ca2 +成像显微镜进行。我们的数据支持Orai1和STIM1有助于存储操作的Ca2 +通道(SOC)基础活动。其次,使用带有SOC阻滞剂2-APB的indo-1淬灭方法,我们观察到Pb2 +能够通过未激活的SOCs直接进入细胞,而无需进行TG预处理。第三,我们进一步证明,Orai1和STIM1的共表达差异性地增强了SOC功能活性(PC12为4倍,HeLa细胞为5倍)和Pb2 +进入(PC12为5至7倍,HeLa为2倍)细胞)。此外,在Pb2 +暴露1 h后,PC12和HeLa细胞中的去极化和组胺诱导的Ca2 +响应均呈剂量依赖性降低。该结果表明减少的Ca 2+反应部分是由于Pb 2+进入。总之,我们的结果表明,SOC负责Pb2 +的渗透,功能SOC形成的Orai1-STIM1蛋白复合物是参与Pb2 +进入的分子成分之一。

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