间隙连接通过修改细胞内Ca2+和Ca2+依赖性调节TXNIP,放大TRPV4激活引发的细胞损伤。

Xiling Zhang, Zhimin Mao, Yanru Huang, Zhen Zhang, Jian Yao
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引用次数: 7

摘要

细胞内Ca2+升高和氧化应激是各种损伤引发肾小管上皮损伤的良好机制。鉴于TRPV4和Cx43通道被广泛的刺激激活,并调节细胞内Ca2+和氧化还原状态,我们推测这些通道参与肾小管细胞损伤。在这里,我们测试了这种可能性,并探索了潜在的潜在机制。我们的研究结果表明,肾小管上皮细胞暴露于氨基糖苷G418导致细胞死亡,TRPV4和间隙连接(Gj)抑制剂均可减轻细胞死亡。TRPV4的激活导致细胞损伤,这与Cx43表达和功能的早期增加有关。用化学抑制剂或siRNA抑制Cx43在很大程度上阻止了TRPV4激活诱导的细胞损伤。进一步的分析显示,TRPV4激动剂引起细胞内Ca2+升高,并引起TXNIP(抗氧化剂硫氧还蛋白的负调节因子)的Ca2+依赖性升高。然而,在Gj抑制剂的存在下,TRPV4的这些作用在很大程度上被阻止了。用Ca2+螯合剂BAPTA-AM去除细胞内Ca2+或用siRNA下调TXNIP可显著减轻TRPV4激活引发的细胞损伤。总的来说,我们的研究结果表明,通过细胞内Ca2+和氧化应激的协同诱导机制,TRPV4/Cx43通道相互作用在肾小管细胞损伤中的关键参与。通道相互作用可能是细胞损伤的重要机制。靶向通道在治疗急性小管细胞损伤方面具有潜在的治疗潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Gap junctions amplify TRPV4 activation-initiated cell injury via modification of intracellular Ca2+ and Ca2+-dependent regulation of TXNIP.

The elevated intracellular Ca2+ and oxidative stress are well-reported mechanisms behind renal tubular epithelial injury initiated by various insults. Given that TRPV4 and connexin43 (Cx43) channels are activated by a wide range of stimuli and regulate both intracellular Ca2+ and redox status, we speculated an involvement of these channels in renal tubular cell injury. Here, we tested this possibility and explored the potential underlying mechanisms. Our results demonstrated that exposure of renal tubular epithelial cells to aminoglycoside G418 led to cell death, which was attenuated by both TRPV4 and gap junction (Gj) inhibitor. Activation of TRPV4 caused cell damage, which was associated with an early increase in Cx43 expression and function. Inhibition of Cx43 with chemical inhibitor or siRNA largely prevented TRPV4 activation-induced cell damage. Further analysis revealed that TRPV4 agonists elicited a rise in intracellular Ca2+ and caused a Ca2+-dependent elevation in TXNIP (a negative regulator of the antioxidant thioredoxin). In the presence of Gj inhibitor, however, these effects of TRPV4 were largely prevented. The depletion of intracellular Ca2+ with Ca2+ chelator BAPTA-AM or downregulation of TXNIP with siRNA significantly alleviated TRPV4 activation-initiated cell injury. Collectively, our results point to a critical involvement of TRPV4/Cx43 channel interaction in renal tubular cell injury through mechanisms involving a synergetic induction of intracellular Ca2+ and oxidative stress. Channel interactions could be an important mechanism underlying cell injury. Targeting channels could have therapeutic potential for the treatment of acute tubular cell injury.

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