Section on Synapse Development Plasticity, National Institute of Mental Health, National Institutes of Health, Bethesda, Maryland 20892.
Advanced Imaging Core, National Institute on Deafness and Other Communication Disorders, National Institutes of Health, Bethesda, Maryland 20892.
J Neurosci. 2021 Feb 10;41(6):1174-1190. doi: 10.1523/JNEUROSCI.0969-20.2020. Epub 2020 Dec 10.
The BAD-BAX-caspase-3 cascade is a canonical apoptosis pathway. Macroautophagy ("autophagy" hereinafter) is a process by which organelles and aggregated proteins are delivered to lysosomes for degradation. Here, we report a new function of the BAD-BAX-caspase-3 cascade and autophagy in the control of synaptic vesicle pools. We found that, in hippocampal neurons of male mice, the BAD-BAX-caspase-3 pathway regulates autophagy, which in turn limits the size of synaptic vesicle pools and influences the kinetics of activity-induced depletion and recovery of synaptic vesicle pools. Moreover, the caspase-autophagy pathway is engaged by fear conditioning to facilitate associative fear learning and memory. This work identifies a new mechanism for controlling synaptic vesicle pools, and a novel, nonapoptotic, presynaptic function of the BAD-BAX-caspase-3 cascade. Despite the importance of synaptic vesicles for neurons, little is known about how the size of synaptic vesicle pools is maintained under basal conditions and regulated by neural activity. This study identifies a new mechanism for the control of synaptic vesicle pools, and a new, nonapoptotic function of the BAD-BAX-caspase-3 pathway in presynaptic terminals. Additionally, it indicates that autophagy is not only a homeostatic mechanism to maintain the integrity of cells and tissues, but also a process engaged by neural activity to regulate synaptic vesicle pools for optimal synaptic responses, learning, and memory.
BAD-BAX-caspase-3 级联反应是一条典型的细胞凋亡途径。巨自噬(以下简称“自噬”)是一种将细胞器和聚集的蛋白质递送至溶酶体进行降解的过程。在这里,我们报告了 BAD-BAX-caspase-3 级联反应和自噬在控制突触囊泡库中的新功能。我们发现,在雄性小鼠海马神经元中,BAD-BAX-caspase-3 途径调节自噬,而自噬反过来又限制了突触囊泡库的大小,并影响了活性诱导的突触囊泡库耗竭和恢复的动力学。此外,该途径还参与了恐惧条件作用,以促进联想性恐惧学习和记忆。这项工作确定了一种控制突触囊泡库的新机制,以及 BAD-BAX-caspase-3 级联反应的一种新的、非细胞凋亡的突触前功能。尽管突触囊泡对神经元非常重要,但人们对其在基础条件下如何维持大小以及如何被神经活动调节知之甚少。本研究确定了一种控制突触囊泡库的新机制,以及 BAD-BAX-caspase-3 途径在突触前末梢中的一种新的、非细胞凋亡功能。此外,它表明自噬不仅是维持细胞和组织完整性的一种稳态机制,也是一种由神经活动参与的过程,用于调节突触囊泡库,以实现最佳的突触反应、学习和记忆。