Liu Yabo, Wang Xiaoxue
State Key Laboratory of Tropical Oceanography, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou 510301, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
FEMS Microbiol Rev. 2025 Jan 14;49. doi: 10.1093/femsre/fuaf045.
Histone-like nucleoid structuring protein H-NS plays a pivotal role in orchestrating bacterial chromatin and regulating horizontal gene transfer (HGT) elements. In response to environmental signals, H-NS undergoes dynamic post-translational modifications (PTMs) that resemble the epigenetic codes of eukaryotic histones. This review explores how environmental cues regulate PTMs at specific sites within distinct domains of H-NS, thereby modulating its oligomerization and DNA-binding capabilities to reprogram bacterial responses. Notably, HGT elements commonly encode counter-silencing factors, including PTM-modifying enzymes, that counteract H-NS repression. We propose that combinatorial PTM patterns on H-NS form the bacterial histone-like epigenetic code, regulating the expression of HGT elements. Collectively, these interactions establish a sophisticated network of silencing and counter-silencing mechanisms that drive bacterial genome evolution.
组蛋白样核仁结构蛋白H-NS在协调细菌染色质和调节水平基因转移(HGT)元件方面发挥着关键作用。响应环境信号时,H-NS会经历动态的翻译后修饰(PTM),这类似于真核组蛋白的表观遗传密码。本综述探讨了环境线索如何调节H-NS不同结构域内特定位点的PTM,从而调节其寡聚化和DNA结合能力,以重新编程细菌反应。值得注意的是,HGT元件通常编码反沉默因子,包括PTM修饰酶,它们可抵消H-NS的抑制作用。我们提出,H-NS上的组合PTM模式形成了细菌组蛋白样表观遗传密码,调节HGT元件的表达。总的来说,这些相互作用建立了一个复杂的沉默和反沉默机制网络,推动细菌基因组进化。