精氨琥珀酸合成酶
联合囊肿
生物化学
精氨酸
精氨琥珀酸裂解酶
生物合成
生物
蓝藻
氨基酸
酶
胍丁胺
精氨酸酶
氨基酸合成
突变体
细菌
赖氨酸
基因
遗传学
作者
Noriaki Katayama,Takashi Osanai
标识
DOI:10.1007/s11103-024-01416-1
摘要
Abstract Cyanobacteria are oxygen-evolving photosynthetic prokaryotes that affect the global carbon and nitrogen turnover. Synechocystis sp. PCC 6803 ( Synechocystis 6803) is a model cyanobacterium that has been widely studied and can utilize and uptake various nitrogen sources and amino acids from the outer environment and media. l-arginine is a nitrogen-rich amino acid used as a nitrogen reservoir in Synechocystis 6803, and its biosynthesis is strictly regulated by feedback inhibition. Argininosuccinate synthetase (ArgG; EC 6.3.4.5) is the rate-limiting enzyme in arginine biosynthesis and catalyzes the condensation of citrulline and aspartate using ATP to produce argininosuccinate, which is converted to l-arginine and fumarate through argininosuccinate lyase (ArgH). We performed a biochemical analysis of Synechocystis 6803 ArgG ( Sy ArgG) and obtained a Synechocystis 6803 mutant overexpressing Sy ArgG and ArgH of Synechocystis 6803 ( Sy ArgH). The specific activity of Sy ArgG was lower than that of other arginine biosynthesis enzymes and Sy ArgG was inhibited by arginine, especially among amino acids and organic acids. Both arginine biosynthesis enzyme-overexpressing strains grew faster than the wild-type Synechocystis 6803. Based on previous reports and our results, we suggest that Sy ArgG is the rate-limiting enzyme in the arginine biosynthesis pathway in cyanobacteria and that arginine biosynthesis enzymes are similarly regulated by arginine in this cyanobacterium. Our results contribute to elucidating the regulation of arginine biosynthesis during nitrogen metabolism.
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