EBP50 is a key molecule for the Schwann cell-axon interaction in peripheral nerves

再髓鞘化 再生(生物学) 雪旺细胞 神经科学 轴突 细胞生物学 生物 坐骨神经 周围神经损伤 神经损伤 髓鞘 中枢神经系统 解剖
作者
Deepak Prasad Gupta,Anup Bhusal,Md Habibur Rahman,Jae‐Hong Kim,Youngshik Choe,Jaemyung Jang,Hyun Jin Jung,Un‐Kyung Kim,Jin‐Sung Park,Lee-So Maeng,Kyoungho Suk,Gyun Jee Song
出处
期刊:Progress in Neurobiology [Elsevier BV]
卷期号:231: 102544-102544 被引量:1
标识
DOI:10.1016/j.pneurobio.2023.102544
摘要

Peripheral nerve injury disrupts the Schwann cell-axon interaction and the cellular communication between them. The peripheral nervous system has immense potential for regeneration extensively due to the innate plastic potential of Schwann cells (SCs) that allows SCs to interact with the injured axons and exert specific repair functions essential for peripheral nerve regeneration. In this study, we show that EBP50 is essential for the repair function of SCs and regeneration following nerve injury. The increased expression of EBP50 in the injured sciatic nerve of control mice suggested a significant role in regeneration. The ablation of EBP50 in mice resulted in delayed nerve repair, recovery of behavioral function, and remyelination following nerve injury. EBP50 deficiency led to deficits in SC functions, including proliferation, migration, cytoskeleton dynamics, and axon interactions. The adeno-associated virus (AAV)-mediated local expression of EBP50 improved SCs migration, functional recovery, and remyelination. ErbB2-related proteins were not differentially expressed in EBP50-deficient sciatic nerves following injury. EBP50 binds and stabilizes ErbB2 and activates the repair functions to promote regeneration. Thus, we identified EBP50 as a potent SC protein that can enhance the regeneration and functional recovery driven by NRG1-ErbB2 signaling, as well as a novel regeneration modulator capable of potential therapeutic effects.
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