Chromatin gatekeeper and modifier CHD proteins in development, and in autism and other neurological disorders

色域 染色质 表观遗传学 生物 染色质重塑 嘉雅宠物 遗传学 组蛋白 DNA甲基化 博士手指 基因 细胞生物学 转录因子 计算生物学 解旋酶 基因表达 核糖核酸 锌指
作者
Tahir Muhammad,Stephen F. Pastore,Katrina Good,Juan Ausió,John B. Vincent
出处
期刊:Psychiatric Genetics [Lippincott Williams & Wilkins]
卷期号:33 (6): 213-232 被引量:4
标识
DOI:10.1097/ypg.0000000000000353
摘要

Chromatin, a protein–DNA complex, is a dynamic structure that stores genetic information within the nucleus and responds to molecular/cellular changes in its structure, providing conditional access to the genetic machinery. ATP-dependent chromatin modifiers regulate access of transcription factors and RNA polymerases to DNA by either “opening” or “closing” the structure of chromatin, and its aberrant regulation leads to a variety of neurodevelopmental disorders. The chromodomain helicase DNA-binding (CHD) proteins are ATP-dependent chromatin modifiers involved in the organization of chromatin structure, act as gatekeepers of genomic access, and deposit histone variants required for gene regulation. In this review, we first discuss the structural and functional domains of the CHD proteins, and their binding sites, and phosphorylation, acetylation, and methylation sites. The conservation of important amino acids in SWItch/sucrose non-fermenting (SWI/SNF) domains, and their protein and mRNA tissue expression profiles are discussed. Next, we convey the important binding partners of CHD proteins, their protein complexes and activities, and their involvements in epigenetic regulation. We also show the ChIP-seq binding dynamics for CHD1, CHD2, CHD4, and CHD7 proteins at promoter regions of histone genes, as well as several genes that are critical for neurodevelopment. The role of CHD proteins in development is also discussed. Finally, this review provides information about CHD protein mutations reported in autism and neurodevelopmental disorders, and their pathogenicity. Overall, this review provides information on the progress of research into CHD proteins, their structural and functional domains, epigenetics, and their role in stem cell, development, and neurological disorders.
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