...
首页> 外文期刊>Archives of Toxicology >Mitochondrial permeability transition and its regulatory components are implicated in apoptosis of primary cultures of rat proximal tubular cells exposed to lead
【24h】

Mitochondrial permeability transition and its regulatory components are implicated in apoptosis of primary cultures of rat proximal tubular cells exposed to lead

机译:线粒体渗透率转变及其调节组分涉及大鼠近端管状细胞的凋亡细胞凋亡,暴露于铅

获取原文
获取原文并翻译 | 示例

摘要

Previous studies have already demonstrated that mitochondria play a key role in Pb-induced apoptosis in primary cultures of rat proximal tubular (rPT) cells. To further clarify the underlying mechanism of Pb-induced mitochondrial apoptosis, this study was designed to investigate the role of mitochondrial permeability transition (MPT) and its regulatory components in Pb-induced apoptosis in rPT cells. Mitochondrial permeability transition pore (MPTP) opening together with disruption of mitochondrial ultrastructure, translocation of cytochrome c from mitochondria to cytoplasm and subsequent caspase-3 activation were observed in this study, suggesting that MPT is involved in Pb-induced apoptosis in rPT cells. Simultaneously, Pb-induced caspase-3 activation and apoptosis can be significantly inhibited by three MPTP inhibitors (CsA, DIDS, BA), which target different regulatory components of MPTP (Cyp-D, VDAC, ANT), respectively, demonstrating that Cyp-D, VDAC and ANT participate in MPTP regulation during lead exposure. Moreover, decreased ATP levels and increased ADP/ATP ratio induced by lead treatment can be significantly reversed by BA, indicating that Pb-mediated ANT dysfunction resulted in ATP depletion. In addition, up-regulation of VDAC-1, ANT-1 together with down-regulation of Cyp-D, VDAC-2 and ANT-2 at both the levels of transcription and translation were revealed in rPT cells under lead exposure conditions. In conclusion, Pb-mediated mitochondrial apoptosis in rPT cells is dependent on MPTP opening. Different expression levels in each isoform of three regulatory components contribute to alteration in their functions, which may promote the MPTP opening.
机译:之前的研究已经证明,线粒体在大鼠近端管状(RPT)细胞的原代培养中发挥着PB诱导的细胞凋亡的关键作用。为了进一步阐明PB诱导的线粒体细胞凋亡的潜在机制,旨在研究线粒体渗透率转变(MPT)及其调节组分在RPT细胞中PB诱导的细胞凋亡中的作用。与线粒体超微结构的破坏一起开口线粒体渗透率过渡孔(MPTP),在本研究中观察到从线粒体到细胞质的细胞色素C与细胞质的细胞色素C和随后的Caspase-3活化的转移,表明MPT参与了RPT细胞中的PB诱导的凋亡。同时,通过三种MPTP抑制剂(CSA,DIDS,BA),可以显着抑制PB诱导的Caspase-3活化和细胞凋亡,其分别针对MPTP(CYP-D,VDAC,ANT)的不同调节组分,证明CYP- D,VDAC和ANT在铅曝光期间参与MPTP调节。此外,通过BA可以显着逆转ATP水平和通过铅处理诱导的ADP / ATP比率增加,表明PB介导的抗抗体导致ATP耗竭。此外,在铅暴露条件下,在RPT细胞中揭示了Vdac-1,ant-1的upac-1,ant-1与Cyp-d,Vdac-2和ant-2的降低调节。总之,RPT细胞中的PB介导的线粒体细胞凋亡取决于MPTP开口。三个监管部件的每种同种型的不同表达水平有助于改变其功能,这可能促进MPTP开口。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号