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非经典类视黄醇信号在神经发育、再生及突触功能中的作用

Non-canonical retinoid signaling in neural development, regeneration and synaptic function.

作者信息

Piazza Alicia, Carlone Robert, Spencer Gaynor E

机构信息

Department of Biological Sciences, Brock University, St. Catharines, ON, Canada.

出版信息

Front Mol Neurosci. 2024 Mar 7;17:1371135. doi: 10.3389/fnmol.2024.1371135. eCollection 2024.

Abstract

Canonical retinoid signaling via nuclear receptors and gene regulation is critical for the initiation of developmental processes such as cellular differentiation, patterning and neurite outgrowth, but also mediates nerve regeneration and synaptic functions in adult nervous systems. In addition to canonical transcriptional regulation, retinoids also exert rapid effects, and there are now multiple lines of evidence supporting non-canonical retinoid actions outside of the nucleus, including in dendrites and axons. Together, canonical and non-canonical retinoid signaling provide the precise temporal and spatial control necessary to achieve the fine cellular coordination required for proper nervous system function. Here, we examine and discuss the evidence supporting non-canonical actions of retinoids in neural development and regeneration as well as synaptic function, including a review of the proposed molecular mechanisms involved.

摘要

通过核受体和基因调控的经典视黄酸信号传导对于细胞分化、模式形成和神经突生长等发育过程的启动至关重要,同时也介导成年神经系统中的神经再生和突触功能。除了经典的转录调控外,视黄酸还具有快速效应,现在有多项证据支持其在细胞核外的非经典视黄酸作用,包括在树突和轴突中的作用。经典和非经典视黄酸信号传导共同提供了实现正常神经系统功能所需的精细细胞协调所必需的精确时空控制。在这里,我们研究并讨论支持视黄酸在神经发育、再生以及突触功能中的非经典作用的证据,包括对所涉及的分子机制的综述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b32f/10954794/9a6bf6934805/fnmol-17-1371135-g0001.jpg

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