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Bcl-xL 通过促进线粒体 ATP/ADP 交换来防止生长因子撤除后的细胞死亡。

Bcl-xL prevents cell death following growth factor withdrawal by facilitating mitochondrial ATP/ADP exchange.

作者信息

Vander Heiden M G, Chandel N S, Schumacker P T, Thompson C B

机构信息

Gwen Knapp Center, University of Chicago, Illinois 60637, USA.

出版信息

Mol Cell. 1999 Feb;3(2):159-67. doi: 10.1016/s1097-2765(00)80307-x.

Abstract

Growth factor withdrawal is associated with a metabolic arrest that can result in apoptosis. Cell death is preceded by loss of outer mitochondrial membrane integrity and cytochrome c release. These mitochondrial events appear to follow a relative increase in mitochondrial membrane potential. This change in membrane potential results from the failure of the adenine nucleotide translocator (ANT)/voltage-dependent anion channel (VDAC) complex to maintain ATP/ADP exchange. Bcl-xL expression allows growth factor-deprived cells to maintain sufficient mitochondrial ATP/ADP exchange to sustain coupled respiration. These data demonstrate that mitochondrial adenylate transport is under active regulation. Efficient exchange of ADP for ATP is promoted by Bcl-xL expression permitting oxidative phosphorylation to be regulated by cellular ATP/ADP levels and allowing mitochondria to adapt to changes in metabolic demand.

摘要

生长因子的撤除与可导致细胞凋亡的代谢停滞相关。细胞死亡之前会出现线粒体外膜完整性丧失和细胞色素c释放。这些线粒体事件似乎是在线粒体膜电位相对增加之后发生的。膜电位的这种变化是由于腺嘌呤核苷酸转位酶(ANT)/电压依赖性阴离子通道(VDAC)复合物无法维持ATP/ADP交换所致。Bcl-xL的表达使生长因子缺乏的细胞能够维持足够的线粒体ATP/ADP交换以维持偶联呼吸。这些数据表明线粒体腺苷酸转运受到积极调控。Bcl-xL的表达促进了ADP与ATP的有效交换,使氧化磷酸化能够由细胞ATP/ADP水平调节,并使线粒体能够适应代谢需求的变化。

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