亚精胺
腐胺
胍丁胺
生物化学
生物
细菌
代谢途径
多胺
精胺
代谢物
酶
遗传学
作者
Huachao Xi,Xiaoqun Nie,Fang Gao,Xinxin Liang,Li Hu,Haiyan Zhou,Yujie Cai,Chen Yang
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2023-10-27
卷期号:9 (43)
被引量:3
标识
DOI:10.1126/sciadv.adj9075
摘要
Spermidine, a ubiquitous polyamine, is known to be required for critical physiological functions in bacteria. Two principal pathways are known for spermidine biosynthesis, both of which involve aminopropylation of putrescine. Here, we identified a spermidine biosynthetic pathway via a previously unknown metabolite, carboxyaminopropylagmatine (CAPA), in a model cyanobacterium Synechocystis sp. PCC 6803 through an approach combining 13C and 15N tracers, metabolomics, and genetic and biochemical characterization. The CAPA pathway starts with reductive condensation of agmatine and l-aspartate-β-semialdehyde into CAPA by a previously unknown CAPA dehydrogenase, followed by decarboxylation of CAPA to form aminopropylagmatine, and ends with conversion of aminopropylagmatine to spermidine by an aminopropylagmatine ureohydrolase. Thus, the pathway does not involve putrescine and depends on l-aspartate-β-semialdehyde as the aminopropyl group donor. Genomic, biochemical, and metagenomic analyses showed that the CAPA-pathway genes are widespread in 15 different phyla of bacteria distributed in marine, freshwater, and other ecosystems.
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