细菌酸胺的生物合成揭示了高度特定的氨基酸结合
Jerry Cui1, Kou-San Ju1,2,3,4
1Department of Microbiology, The Ohio State University, Columbus, Ohio 43210, United States.
ACS chemical biology
|June 17, 2024
概括
研究人员阐明了类胺E和F的生物合成,揭示了类氨酸生产的新型跨氨基途径. 这一发现增强了对酸盐代谢和潜在生物催化剂酶特异性的理解.
科学领域:
- 生物化学 生物化学
- 自然产品化学 自然产品化学
- 微生物学 微生物学
背景情况:
- 酸盐天然产品是有价值的,因为它们的代谢抑制.
- 基因组挖掘已经发现了新的酸盐,但了解它们的新陈代谢是未来发现的关键.
- 类胺E和F是抗菌类,含有独特的l-类氨酸残留物.
研究的目的:
- 为了阐明基胺E和F的完整生物合成途径.
- 了解参与氨生物合成和结合的酶机制.
- 探索已识别的酶的基质特异性和生物催化潜力.
主要方法:
- 使用基因组挖掘数据重建路径.
- 酶定量测试以表征转氨酶和酶活性.
- 关键酶的特异性分析,包括PnfA和PnfB.
- 在体外的酶反应以评估基质的接受性.
主要成果:
- 确定了类胺E和F的完整生物合成途径.
- 一个专门的转氨酶催化 phosphonopyruvate 的可逆转化为l-phosphonoalanine.
- 两个ATP-抓取合酶,PNFA和PNFB,顺序合氨酸形成基胺E和F.
- 酶表现出高特异性,但PNFA显示了结合替代药的潜力.
结论:
- 这项研究建立了酸盐代谢的转氨基分支.
- 获得了对ATP-抓取酶特异性的洞察力.
- 鉴定到的酶显示出新型酸盐合成的显著生物催化潜力.
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