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BCL-2家族蛋白BCL-xL对突触传递的调节作用。

Modulation of synaptic transmission by the BCL-2 family protein BCL-xL.

作者信息

Jonas Elizabeth A, Hoit Daniel, Hickman John A, Brandt Teresa A, Polster Brian M, Fannjiang Yihru, McCarthy Erin, Montanez Marlena K, Hardwick J Marie, Kaczmarek Leonard K

机构信息

Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut 06250, USA.

出版信息

J Neurosci. 2003 Sep 10;23(23):8423-31. doi: 10.1523/JNEUROSCI.23-23-08423.2003.

Abstract

BCL-2 family proteins are known to regulate cell death during development by influencing the permeability of mitochondrial membranes. The anti-apoptotic BCL-2 family protein BCL-xL is highly expressed in the adult brain and localizes to mitochondria in the presynaptic terminal of the adult squid stellate ganglion. Application of recombinant BCL-xL through a patch pipette to mitochondria inside the giant presynaptic terminal triggered multiconductance channel activity in mitochondrial membranes. Furthermore, injection of full-length BCL-xL protein into the presynaptic terminal enhanced postsynaptic responses and enhanced the rate of recovery from synaptic depression, whereas a recombinant pro-apoptotic cleavage product of BCL-xL attenuated postsynaptic responses. The effect of BCL-xL on synaptic responses persisted in the presence of a blocker of mitochondrial calcium uptake and was mimicked by injection of ATP into the terminal. These studies indicate that the permeability of outer mitochondrial membranes influences synaptic transmission, and they raise the possibility that modulation of mitochondrial conductance by BCL-2 family proteins affects synaptic stability.

摘要

已知BCL-2家族蛋白通过影响线粒体膜的通透性来调节发育过程中的细胞死亡。抗凋亡的BCL-2家族蛋白BCL-xL在成体大脑中高度表达,并定位于成体鱿鱼星状神经节突触前末端的线粒体。通过膜片吸管将重组BCL-xL应用于巨大突触前末端内的线粒体,可触发线粒体膜中的多电导通道活性。此外,将全长BCL-xL蛋白注射到突触前末端可增强突触后反应,并提高从突触抑制中恢复的速率,而BCL-xL的重组促凋亡裂解产物则减弱突触后反应。在存在线粒体钙摄取阻滞剂的情况下,BCL-xL对突触反应的影响依然存在,并且向末端注射ATP可模拟这种影响。这些研究表明线粒体外膜的通透性会影响突触传递,并增加了BCL-2家族蛋白对线粒体电导的调节影响突触稳定性的可能性。

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