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从越南链霉菌GIMV4.0001中发现分枝硫代石榴菌素及其对谷胱甘肽硫转移酶在石榴菌素生物合成中的调控作用。

Discovery of Mycothiogranaticins from Streptomyces vietnamensis GIMV4.0001 and the Regulatory Effect of Mycothiol on the Granaticin Biosynthesis.

作者信息

Deng Ming-Rong, Li Yan, Luo Xiao, Zheng Xiang-Ling, Chen Yuchan, Zhang Yu-Lian, Zhang Weimin, Zhou Hao, Zhu Honghui

机构信息

Key Laboratory of Agricultural Microbiomics and Precision Application - Ministry of Agriculture and Rural Affairs, Guangdong Provincial Key Laboratory of Microbial Culture Collection and Application, State Key Laboratory of Applied Microbiology Southern China, Guangdong Microbial Culture Collection Center (GDMCC), Institute of Microbiology, Guangdong Academy of Sciences, Guangzhou, China.

Key Laboratory of Functional Molecules Analysis and Biotransformation of Universities in Yunnan Province, School of Chemical Science and Technology, Yunnan University, Kunming, China.

出版信息

Front Chem. 2021 Dec 23;9:802279. doi: 10.3389/fchem.2021.802279. eCollection 2021.

Abstract

Granaticins are benzoisochromanequinone polyketides with remarkable antibacterial and anticancer activities. Three sulfur-containing granaticin congeners, mycothiogranaticins A (), B () and granaticin MA () were discovered from a granaticin-producing strain of GIMV4.0001. Two of them were structurally determined with mycothiol or N-acetylcysteine moieties and found to be bio-actively reluctant. Disruption of the gene () that encodes the D-inositol-3-phosphate glycosyltransferase crucial for mycothiol biosynthesis, fully abolished the production of mycothiogranaticins. The result substantiated that the newly discovered mycothiogranaticins are consequences of the combination of the granaticin and mycothiol biosynthetic pathways. The overall granaticin production of the Δ mutant strain was unexpectedly decreased by at least more than 50%, while similar production level of granaticins to that of the wild type strain was observed in an mycothiol-S transferase gene () disruptant Δ. These results indicated that the mycothiol deficiency was responsible for the decreased production of granaticins. Mycothiol may positively regulate the biosynthesis of granaticin possibly by maintaining the cellular redox balance. To the best of our knowledge, this is the first report that mycothiol can not only be a direct building block of polyketides but also play a regulatory role in the polyketide biosynthesis.

摘要

石榴菌素是具有显著抗菌和抗癌活性的苯并异色满醌聚酮化合物。从石榴菌素产生菌GIMV4.0001中发现了三种含硫的石榴菌素同系物,即分枝硫代石榴菌素A()、B()和石榴菌素MA()。其中两种的结构已通过与巯基乙醇或N - 乙酰半胱氨酸部分确定,并且发现它们具有生物活性惰性。对编码对巯基乙醇生物合成至关重要的D - 肌醇 - 3 - 磷酸糖基转移酶的基因()进行破坏,完全消除了分枝硫代石榴菌素的产生。该结果证实了新发现的分枝硫代石榴菌素是石榴菌素和巯基乙醇生物合成途径组合的产物。Δ突变株的石榴菌素总体产量意外地降低了至少50%以上,而在巯基乙醇 - S转移酶基因()破坏株Δ中观察到石榴菌素的产量水平与野生型菌株相似。这些结果表明巯基乙醇缺乏是石榴菌素产量降低的原因。巯基乙醇可能通过维持细胞氧化还原平衡对石榴菌素的生物合成起到正向调节作用。据我们所知,这是第一篇关于巯基乙醇不仅可以作为聚酮化合物的直接构建单元,而且在聚酮化合物生物合成中发挥调节作用的报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12be/8733708/ffbaffc27c3a/fchem-09-802279-g001.jpg

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