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BCL-xL Regulates Synaptic Plasticity.

机译:BCL-xL调节突触可塑性。

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摘要

Mitochondria are the predominant organelle within many presynaptic terminals. During times of high synaptic activity, they affect intracellular calcium homeostasis and provide the energy needed for synaptic vesicle recycling and for the continued operation of membrane ion pumps. Recent discoveries have altered our ideas about the role of mitochondria in the synapse. Mitochondrial localization, morphology, and docking at synaptic sites may indeed alter the kinetics of transmitter release and calcium homeostasis in the presynaptic terminal. In addition, the mitochondrial ion channel BCL-xL, known as a protector against programmed cell death, regulates mitochondrial membrane conductance and bioenergetics in the synapse and can thereby alter synaptic transmitter release and the recycling of pools of synaptic vesicles. BCL-xL, therefore, not only affects the life and death of the cell soma, but its actions in the synapse may underlie the regulation of basic synaptic processes that subtend learning, memory and synaptic development.
机译:线粒体是许多突触前末梢的主要细胞器。在高突触活性期间,它们会影响细胞内钙稳态,并为突触小泡循环和膜离子泵的持续运行提供所需的能量。最近的发现改变了我们对线粒体在突触中的作用的看法。线粒体的定位,形态和在突触位点的对接可能确实改变了突触前末端递质释放和钙稳态的动力学。此外,线粒体离子通道BCL-xL被称为防止程序性细胞死亡的保护剂,它调节突触中的线粒体膜电导和生物能,从而改变突触递质的释放和突触囊泡池的回收利用。因此,BCL-xL不仅影响细胞体的生与死,而且其在突触中的作用可能是对基本突触过程进行调节的基础,该过程突触了学习,记忆和突触的发育。

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