调节突触成熟节奏的同源特异性信号轴

IF 7.5 1区 生物学 Q1 CELL BIOLOGY
Cell reports Pub Date : 2024-08-27 Epub Date: 2024-07-24 DOI:10.1016/j.celrep.2024.114548
Jian Dong, Xiao-Na Zhu, Peng-Ming Zeng, Dong-Dong Cao, Yang Yang, Ji Hu, Zhen-Ge Luo
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引用次数: 0

摘要

人类皮层神经元(hCNs)表现出高度的树突复杂性和突触密度,而且成熟过程非常漫长。然而,支配这些特定特征的分子机制仍不清楚。在这里,我们报告了同种异体特异性基因 TBC1D3 可促进树突轴化并延长突触发生的速度。在诱导的 hCNs 中消减 TBC1D3 会导致树突生长减少和突触早熟。在小鼠皮层中强制表达 TBC1D3 会延缓突触成熟,同时增加树突的生长。从机理上讲,TBC1D3 是通过与 MICAL1(一种介导肌动蛋白丝氧化的单加氧酶)相互作用而发挥作用的。在分化的早期阶段,细胞质中的 TBC1D3/MICAL1 相互作用通过 F-肌动蛋白氧化和增强肌动蛋白动力学促进树突的生长。在晚期阶段,TBC1D3 将 MICAL1 护送至细胞核,并通过与染色质重塑因子 ATRX 的相互作用下调与突触成熟相关的基因的表达。因此,本研究揭示了人类神经元发育的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A hominoid-specific signaling axis regulating the tempo of synaptic maturation.

A hominoid-specific signaling axis regulating the tempo of synaptic maturation.

Human cortical neurons (hCNs) exhibit high dendritic complexity and synaptic density, and the maturation process is greatly protracted. However, the molecular mechanism governing these specific features remains unclear. Here, we report that the hominoid-specific gene TBC1D3 promotes dendritic arborization and protracts the pace of synaptogenesis. Ablation of TBC1D3 in induced hCNs causes reduction of dendritic growth and precocious synaptic maturation. Forced expression of TBC1D3 in the mouse cortex protracts synaptic maturation while increasing dendritic growth. Mechanistically, TBC1D3 functions via interaction with MICAL1, a monooxygenase that mediates oxidation of actin filament. At the early stage of differentiation, the TBC1D3/MICAL1 interaction in the cytosol promotes dendritic growth via F-actin oxidation and enhanced actin dynamics. At late stages, TBC1D3 escorts MICAL1 into the nucleus and downregulates the expression of genes related with synaptic maturation through interaction with the chromatin remodeling factor ATRX. Thus, this study delineates the molecular mechanisms underlying human neuron development.

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来源期刊
Cell reports
Cell reports CELL BIOLOGY-
CiteScore
13.80
自引率
1.10%
发文量
1305
审稿时长
77 days
期刊介绍: Cell Reports publishes high-quality research across the life sciences and focuses on new biological insight as its primary criterion for publication. The journal offers three primary article types: Reports, which are shorter single-point articles, research articles, which are longer and provide deeper mechanistic insights, and resources, which highlight significant technical advances or major informational datasets that contribute to biological advances. Reviews covering recent literature in emerging and active fields are also accepted. The Cell Reports Portfolio includes gold open-access journals that cover life, medical, and physical sciences, and its mission is to make cutting-edge research and methodologies available to a wide readership. The journal's professional in-house editors work closely with authors, reviewers, and the scientific advisory board, which consists of current and future leaders in their respective fields. The advisory board guides the scope, content, and quality of the journal, but editorial decisions are independently made by the in-house scientific editors of Cell Reports.
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