琥珀酰化
赖氨酸
乙酰化
串扰
生物化学
代谢途径
代谢工程
调节器
化学
生物
锡尔图因
细胞生物学
酶
蛋白质组学
代谢控制分析
谷氨酸棒杆菌
酵母
营养感应
蛋白质组
计算生物学
脂锚定蛋白
代谢网络
转录调控
新陈代谢
线粒体
作者
Shengchao Yu,Xiaoyun Liu,Aijie Tian,Ying Zhang,Zhiying Yue,Zhangfeng Hu
标识
DOI:10.1021/acs.jafc.5c12224
摘要
Lysine succinylation is an evolutionarily conserved post-translational modification (PTM) involved in cellular metabolic regulation. Chlamydomonas reinhardtii, a GRAS-certified microalga and emerging chassis for biofuel and biobased production, has not yet been systematically characterized for succinylation. Here, we present a comprehensive proteome-wide lysine succinylome map of Chlamydomonas and identify 2806 high-confidence succinylation sites across 791 proteins. These proteins were predominantly distributed in chloroplasts, cytoplasm, and mitochondria and were significantly enriched in pathways central to carbon and lipid metabolism. Comparative analyses revealed extensive crosstalk between succinylation and acetylation with distinct sequence patterns and functional preferences. Site-directed mutagenesis and enzymatic assays revealed that succinylation at K597 of Acetyl-CoA synthetase 3 (ACS3) markedly reduced enzymatic activity, with an inhibitory effect stronger than that of acetylation. These findings establish succinylation as a key metabolic regulator and provide a valuable resource for advancing metabolic engineering in algae.
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