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Emerging Concepts and Functions of Autophagy as a Regulator of Synaptic Components and Plasticity

机译:自噬作为突触成分和可塑性调节剂的新兴概念和功能

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摘要

Protein homeostasis (proteostasis) is crucial to the maintenance of neuronal integrity and function. As the contact sites between neurons, synapses rely heavily on precisely regulated protein-protein interactions to support synaptic transmission and plasticity processes. Autophagy is an effective degradative pathway that can digest cellular components and maintain cellular proteostasis. Perturbations of autophagy have been implicated in aging and neurodegeneration due to a failure to remove damaged proteins and defective organelles. Recent evidence has demonstrated that autophagosome formation is prominent at synaptic terminals and neuronal autophagy is regulated in a compartment-specific fashion. Moreover, synaptic components including synaptic proteins and vesicles, postsynaptic receptors and synaptic mitochondria are known to be degraded by autophagy, thereby contributing to the remodeling of synapses. Indeed, emerging studies indicate that modulation of autophagy may be required for different forms of synaptic plasticity and memory formation. In this review, I will discuss our current understanding of the important role of neuronal/synaptic autophagy in maintaining neuronal function by degrading synaptic components and try to propose a conceptual framework of how the degradation of synaptic components via autophagy might impact synaptic function and contribute to synaptic plasticity.
机译:蛋白质稳态(蛋白稳态)对于维持神经元完整性和功能至关重要。作为神经元之间的接触部位,突触严重依赖于精确调节的蛋白质-蛋白质相互作用来支持突触传递和可塑性过程。自噬是一种有效的降解途径,可以消化细胞成分并维持细胞蛋白质稳定。由于不能去除受损的蛋白质和缺陷的细胞器,自噬的摄动与衰老和神经变性有关。最近的证据表明,自噬小体的形成在突触末端显着,并且神经元自噬以区室特异性的方式调节。此外,已知包括突触蛋白和囊泡,突触后受体和突触线粒体的突触成分可被自噬降解,从而有助于突触的重塑。确实,新兴的研究表明,自噬的调节可能需要不同形式的突触可塑性和记忆形成。在这篇综述中,我将讨论我们目前对神经元/突触自噬在通过降解突触成分维持神经元功能中的重要作用的理解,并尝试提出一个概念框架,说明通过自噬降解突触成分可能如何影响突触功能并有助于突触可塑性。

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