MYRF:一种独特的跨膜转录因子--从蛋白酶自我加工到其在动物发育中的多方面作用。

IF 2.7 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
BioEssays Pub Date : 2024-03-15 DOI:10.1002/bies.202300209
Yingchuan B. Qi, Zhimin Xu, Shiqian Shen, Zhao Wang, Zhizhi Wang
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引用次数: 0

摘要

髓鞘调节因子(MYRF)是中枢神经系统髓鞘形成和维持的主要调节因子。MYRF 在元古界动物中的保守性及其广泛的组织表达表明,它的功能超出了在髓鞘化中的公认作用。在无脊椎动物和脊椎动物中,MYRF 的缺失会导致发育致死,而在人类中,MYRF 单倍体缺失会导致与 MYRF 相关的心脏泌尿系统综合征,这突出表明了它在动物发育中的重要性;然而,这些机制在很大程度上尚未被探索。MYRF 是一种非常规转录因子,一开始嵌入膜中,经过分子内伴侣介导的三聚体化,引发自我裂解,使其带有 Ig-fold DNA 结合域的 N 端片段进入细胞核进行转录调控。最近的研究表明,裂解是受发育调控的,但其机制仍是个谜。虽然 MYRF 结构的某些部分已被阐明,但其他部分仍然模糊不清,人们不禁要问,这些图案是如何与其错综复杂的加工和功能联系在一起的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

MYRF: A unique transmembrane transcription factor- from proteolytic self-processing to its multifaceted roles in animal development

MYRF: A unique transmembrane transcription factor- from proteolytic self-processing to its multifaceted roles in animal development

MYRF: A unique transmembrane transcription factor- from proteolytic self-processing to its multifaceted roles in animal development

The Myelin Regulator Factor (MYRF) is a master regulator governing myelin formation and maintenance in the central nervous system. The conservation of MYRF across metazoans and its broad tissue expression suggest it has functions extending beyond the well-established role in myelination. Loss of MYRF results in developmental lethality in both invertebrates and vertebrates, and MYRF haploinsufficiency in humans causes MYRF-related Cardiac Urogenital Syndrome, underscoring its importance in animal development; however, these mechanisms are largely unexplored. MYRF, an unconventional transcription factor, begins embedded in the membrane and undergoes intramolecular chaperone mediated trimerization, which triggers self-cleavage, allowing its N-terminal segment with an Ig-fold DNA-binding domain to enter the nucleus for transcriptional regulation. Recent research suggests developmental regulation of cleavage, yet the mechanisms remain enigmatic. While some parts of MYRF's structure have been elucidated, others remain obscure, leaving questions about how these motifs are linked to its intricate processing and function.

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来源期刊
BioEssays
BioEssays 生物-生化与分子生物学
CiteScore
7.30
自引率
2.50%
发文量
167
审稿时长
4-8 weeks
期刊介绍: molecular – cellular – biomedical – physiology – translational research – systems - hypotheses encouraged BioEssays is a peer-reviewed, review-and-discussion journal. Our aims are to publish novel insights, forward-looking reviews and commentaries in contemporary biology with a molecular, genetic, cellular, or physiological dimension, and serve as a discussion forum for new ideas in these areas. An additional goal is to encourage transdisciplinarity and integrative biology in the context of organismal studies, systems approaches, through to ecosystems, where appropriate.
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