蓝斑链霉菌MH802-fF5中l -苏氨酸利用联氨合成酶的鉴定

IF 2.6 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
ChemBioChem Pub Date : 2025-06-26 DOI:10.1002/cbic.202500298
Yusuke Shikai, Hideyuki Muramatsu, Masayuki Igarashi, Yohei Katsuyama, Yasuo Ohnishi
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引用次数: 0

摘要

联氨合成酶(HSs)由cupin和methionyl-tRNA合成酶(MetRS)样结构域组成,在各种含氮-氮(N-N)键的次生代谢产物的生物合成中催化肼的形成。利用该系统合成的含N-N键的次级代谢物的结构多样性归因于被MetRS结构域识别的氨基酸(如L-Glu、L-Ala、L-Tyr、L-Ser和Gly)的多样性。然而,基因组数据库中仍有许多HS基因的底物未知。在这项研究中,我们通过对三色胺产生物蓝斑链霉菌MH802-fF5的全基因组测序,发现了一个假定的三色胺生物合成基因簇(BGC),三色胺是一种含有重氮基团的具有抗肿瘤活性的次级代谢物。体内和体外分析表明,该BGC编码的HS ThzN可由l -苏氨酸和n6 -羟赖氨酸合成N-((5-羧基-5-(氨基)戊基)氨基)苏氨酸。这是l - thr -利用HS的第一个例子。序列比对分析和Boltz-1的结构预测表明,Gly417附近的空间对苏氨酸侧链的容纳很重要。通过对三嗪嗪BGC与氮杂塞嗪BGC的比较,发现三嗪嗪重氮基团的生物合成机理与氮杂塞嗪不同。该研究扩大了hs的多样性,并为重氮基团的生物合成提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of a l-Threonine-Utilizing Hydrazine Synthetase for Thrazarine Biosynthesis in Streptomyces coerulescens MH802-fF5.

Hydrazine synthetases (HSs), consisting of cupin and methionyl-tRNA synthetase (MetRS)-like domains, catalyze hydrazine formation in the biosynthesis of various nitrogennitrogen (NN) bond-containing secondary metabolites. The structural diversity of the NN bond-containing secondary metabolites synthesized using this system is attributed to the diversity of amino acids (e.g., l-Glu, d-Glu, l-Ala, l-Tyr, l-Ser, and Gly) that are recognized by the MetRS domain. However, there are still many HS genes in the genome database whose substrates are unknown. This study identifies a putative biosynthetic gene cluster (BGC) for thrazarine, a diazo group-containing secondary metabolite with antitumor activity, by whole-genome sequencing of the thrazarine producer Streptomyces coerulescens MH802-fF5. In vivo and in vitro analyses showed that ThzN, an HS encoded by this BGC, synthesizes N-((5-carboxy-5-(amino)pentyl)amino)threonine from l-Thr and N6-hydroxylysine. This is the first example of l-Thr-utilizing HS. Sequence alignment analysis and structure prediction using Boltz-1 indicated that the space near Gly417 is important for the accommodation of the threonine side chain. The comparison of thrazarine BGC with azaserine BGC indicated that the biosynthetic mechanism of the diazo group of thrazarine is different from that of azaserine. This study expands the diversity of HSs and provides new insights into the biosynthesis of diazo groups.

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来源期刊
ChemBioChem
ChemBioChem 生物-生化与分子生物学
CiteScore
6.10
自引率
3.10%
发文量
407
审稿时长
1 months
期刊介绍: ChemBioChem (Impact Factor 2018: 2.641) publishes important breakthroughs across all areas at the interface of chemistry and biology, including the fields of chemical biology, bioorganic chemistry, bioinorganic chemistry, synthetic biology, biocatalysis, bionanotechnology, and biomaterials. It is published on behalf of Chemistry Europe, an association of 16 European chemical societies, and supported by the Asian Chemical Editorial Society (ACES).
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