O'Garro Chenise, Igbineweka Loveth, Ali Zonaira, Mezei Mihaly, Mujtaba Shiraz
Department of Biology, Medgar Evers College, City University of New York, Brooklyn, NY 11225, USA.
Department of Pharmaceutical Sciences, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.
Biomolecules. 2021 Mar 18;11(3):455. doi: 10.3390/biom11030455.
The molecular interplay between nucleosomal packaging and the chromatin landscape regulates the transcriptional programming and biological outcomes of downstream genes. An array of epigenetic modifications plays a pivotal role in shaping the chromatin architecture, which controls DNA access to the transcriptional machinery. Acetylation of the amino acid lysine is a widespread epigenetic modification that serves as a marker for gene activation, which intertwines the maintenance of cellular homeostasis and the regulation of signaling during stress. The biochemical horizon of acetylation ranges from orchestrating the stability and cellular localization of proteins that engage in the cell cycle to DNA repair and metabolism. Furthermore, lysine acetyltransferases (KATs) modulate the functions of transcription factors that govern cellular response to microbial infections, genotoxic stress, and inflammation. Due to their central role in many biological processes, mutations in KATs cause developmental and intellectual challenges and metabolic disorders. Despite the availability of tools for detecting acetylation, the mechanistic knowledge of acetylation-mediated cellular processes remains limited. This review aims to integrate molecular and structural bases of KAT functions, which would help design highly selective tools for understanding the biology of KATs toward developing new disease treatments.
核小体包装与染色质景观之间的分子相互作用调控着下游基因的转录程序和生物学结果。一系列表观遗传修饰在塑造染色质结构中起关键作用,染色质结构控制着DNA与转录机制的接触。氨基酸赖氨酸的乙酰化是一种广泛存在的表观遗传修饰,作为基因激活的标志物,它将细胞稳态的维持与应激期间的信号调节交织在一起。乙酰化的生化范围从协调参与细胞周期的蛋白质的稳定性和细胞定位到DNA修复和代谢。此外,赖氨酸乙酰转移酶(KATs)调节转录因子的功能,这些转录因子控制细胞对微生物感染、基因毒性应激和炎症的反应。由于它们在许多生物学过程中的核心作用,KATs的突变会导致发育和智力挑战以及代谢紊乱。尽管有检测乙酰化作用的工具,但对乙酰化介导的细胞过程的机制了解仍然有限。本综述旨在整合KAT功能的分子和结构基础,这将有助于设计高选择性工具,以了解KATs的生物学特性,从而开发新的疾病治疗方法。