丁酸盐
生物
赖氨酸
蛋白质组
乙酰化
生物化学
蛋白质组学
DNA连接酶
酶
计算生物学
组蛋白
泛素连接酶
脂肪酸代谢
去酰胺
基因
代谢途径
新陈代谢
益生菌
脂肪酸
转录组
基因表达
组蛋白脱乙酰基酶
表观遗传学
蛋白质基因组学
激酶
氨基酸
基因表达调控
细胞生物学
泛素
定量蛋白质组学
作者
Guorong Li,Qiong Yang,Xia Liu,Yanqing Tang,Nana Tian,Danfeng Wang,Xinping Zhu,Bingjie Ren,Zhijie Tu,Yan Chen,Jing Huang,Minjia Tan,Jun-Yu Xu
标识
DOI:10.1021/acs.jproteome.5c00492
摘要
Clostridium butyricum (C. butyricum) is a notable butyrate-producing intestinal probiotic that has been utilized for the enhancement and treatment of various intestinal and extraintestinal diseases. Butyrate and acetate, as significant metabolites of this bacterium, are short-chain fatty acids (SCFAs) that play crucial roles in maintaining intestinal stability and safeguarding host health. However, the regulatory functions of lysine butyrylation (Kbu) and acetylation (Kac), mediated by these metabolites, remain inadequately understood. In this study, we performed a comprehensive dynamic multiomic analysis encompassing protein expression, Kbu, and Kac in C. butyricum. Our multiomic analysis identified a total of 2622 proteins, 1887 Kbu sites, and 2188 Kac sites. Subsequent bioinformatic analyses revealed that biological functions such as gene expression and energy metabolism exhibited dynamic changes throughout the growth cycle at both the proteome and post-translational modification levels. Enzymatic experiments demonstrated that Kbu modified key active sites of important substrates, including alanine-tRNA ligase at K794, GMP synthase at K384, and probable butyrate kinase at K269. This study enhances the current understanding of lysine acylations in bacteria and focuses on elucidating the finely tuned regulatory mechanisms of Kbu during the growth and development of C. butyricum.
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