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神经元LRP4指导外周突触的发育、成熟和细胞骨架组织。

Neuronal LRP4 directs the development, maturation, and cytoskeletal organization of peripheral synapses.

作者信息

DePew Alison T, Bruckner Joseph J, O'Connor-Giles Kate M, Mosca Timothy J

机构信息

Dept. of Neuroscience, Vickie and Jack Farber Institute of Neuroscience, Thomas Jefferson University, Philadelphia, PA 19107 USA.

Cell and Molecular Biology Training Program, University of Wisconsin-Madison, Madison, WI 53706 USA.

出版信息

bioRxiv. 2023 Nov 8:2023.11.03.564481. doi: 10.1101/2023.11.03.564481.

Abstract

Synapse development requires multiple signaling pathways to accomplish the myriad of steps needed to ensure a successful connection. Transmembrane receptors on the cell surface are optimally positioned to facilitate communication between the synapse and the rest of the neuron and often function as synaptic organizers to synchronize downstream signaling events. One such organizer, the LDL receptor-related protein LRP4, is a cell surface receptor most well-studied postsynaptically at mammalian neuromuscular junctions. Recent work, however, has identified emerging roles for LRP4 as a presynaptic molecule, but how LRP4 acts as a presynaptic organizer, what roles LRP4 plays in organizing presynaptic biology, and the downstream mechanisms of LRP4 are not well understood. Here we show that LRP4 functions presynaptically at neuromuscular synapses, acting in motor neurons to instruct multiple aspects of pre- and postsynaptic development. Loss of presynaptic LRP4 results in a range of developmental defects, impairing active zone organization, synapse growth, physiological function, microtubule organization, synaptic ultrastructure, and synapse maturation. We further demonstrate that LRP4 promotes most aspects of presynaptic development via a downstream SR-protein kinase, SRPK79D. SRPK79D overexpression suppresses synaptic defects associated with loss of . These data demonstrate a function for LRP4 as a peripheral synaptic organizer acting presynaptically, highlight a downstream mechanism conserved with its CNS function, and indicate previously unappreciated roles for LRP4 in cytoskeletal organization, synapse maturation, and active zone organization, underscoring its developmental importance.

摘要

突触发育需要多种信号通路来完成确保成功连接所需的众多步骤。细胞表面的跨膜受体处于最佳位置,以促进突触与神经元其他部分之间的通信,并且通常作为突触组织者发挥作用,以同步下游信号事件。一种这样的组织者,低密度脂蛋白受体相关蛋白LRP4,是一种细胞表面受体,在哺乳动物神经肌肉接头的突触后研究得最为充分。然而,最近的研究发现LRP4作为一种突触前分子出现了新的作用,但LRP4如何作为突触前组织者发挥作用、LRP4在组织突触前生物学中发挥什么作用以及LRP4的下游机制尚不清楚。在这里,我们表明LRP4在神经肌肉突触的突触前发挥作用,在运动神经元中起作用,指导突触前和突触后发育的多个方面。突触前LRP4的缺失会导致一系列发育缺陷,损害活性区组织、突触生长、生理功能、微管组织、突触超微结构和突触成熟。我们进一步证明,LRP4通过下游的SR蛋白激酶SRPK79D促进突触前发育的大多数方面。SRPK79D的过表达抑制了与LRP4缺失相关的突触缺陷。这些数据证明了LRP4作为一种在突触前起作用的外周突触组织者的功能,突出了与其中枢神经系统功能保守的下游机制,并表明LRP4在细胞骨架组织、突触成熟和活性区组织中以前未被认识到的作用,强调了其发育重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daf5/10635100/f2632bb8fa1c/nihpp-2023.11.03.564481v2-f0002.jpg

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