Suppr超能文献

博来霉素III和博来霉素IV非核糖体肽合成酶催化的博来霉素双噻唑部分的生物合成,涉及顺式和反式氨酰化作用。

BlmIII and BlmIV nonribosomal peptide synthetase-catalyzed biosynthesis of the bleomycin bithiazole moiety involving both in cis and in trans aminoacylation.

作者信息

Du Liangcheng, Chen Mei, Zhang Yang, Shen Ben

机构信息

Division of Pharmaceutical Sciences and Department of Chemistry, University of Wisconsin, Madison, Wisconsin 53705, USA.

出版信息

Biochemistry. 2003 Aug 19;42(32):9731-40. doi: 10.1021/bi034817r.

Abstract

Cloning and sequence analysis of the bleomycin (BLM) biosynthetic gene cluster predicted that the two nonribosomal peptide synthetases (NRPSs), BlmIV and BlmIII, are responsible for the biosynthesis of the BLM bithiazole moiety. BlmIV is a seven domain (C(2)-A(2)-PCP(2)-Cy(1)-A(1)-PCP(1)-Cy(0)) NRPS, and BlmIII is a three domain (A(0)-PCP(0)-Ox) NRPS. The three domains of Cy(1)-A(1)-PCP(1) residing on the BlmIV subunit, the four domains of Cy(0) residing on the BlmIV subunit, and A(0)-PCP(0)-Ox residing on the BlmIII subunit constitute the two thiazole-forming NRPS-1 and NRPS-0 modules, respectively. BlmIII-A(0) was predicted to be nonfunctional, raising the question of how the NRPS-0 module activates and loads the Cys substrate to its cognate BlmIII-PCP(0). The NRPS-0 module consists of domains residing on two different subunits, requiring precise protein-protein interaction. Here, we report the production of the BlmIV and BlmIII NRPSs as an excised domain(s), module, or intact subunit form and biochemical characterizations of the resultant enzymes in vitro for their roles in BLM bithiazole biosynthesis. Our results (a) confirm that BlmIII-A(0) is a naturally occurring nonfunctional mutant, (b) demonstrate that BlmIV-A(1) activates Cys and catalyzes both in cis aminoacylation of BlmIV-PCP(1) (for NRPS-1) and in trans aminoacylation of BlmIII-PCP(0) (for NRPS-0), and (c) reveal that the C-terminus of the BlmIV subunit, characterized by the unprecedented AGHDDD(G) and PGHDDG repeats, is absolutely required for in trans aminoacylation of BlmIII-PCP(0). These findings underscore the flexibility and versatility of NRPSs in both structure and mechanism for natural product biosynthesis and provide an outstanding opportunity to study the molecular recognition and protein-protein interaction mechanism in NRPS assembly line enzymology.

摘要

博来霉素(BLM)生物合成基因簇的克隆和序列分析预测,两个非核糖体肽合成酶(NRPSs),即BlmIV和BlmIII,负责BLM双噻唑部分的生物合成。BlmIV是一种具有七个结构域(C(2)-A(2)-PCP(2)-Cy(1)-A(1)-PCP(1)-Cy(0))的NRPS,而BlmIII是一种具有三个结构域(A(0)-PCP(0)-Ox)的NRPS。位于BlmIV亚基上的Cy(1)-A(1)-PCP(1)这三个结构域、位于BlmIV亚基上的Cy(0)这四个结构域以及位于BlmIII亚基上的A(0)-PCP(0)-Ox分别构成了两个形成噻唑的NRPS-1和NRPS-0模块。预测BlmIII-A(0)无功能,这就提出了一个问题,即NRPS-0模块如何将半胱氨酸底物激活并加载到其对应的BlmIII-PCP(0)上。NRPS-0模块由位于两个不同亚基上的结构域组成,需要精确的蛋白质-蛋白质相互作用。在此,我们报告了以切除的结构域、模块或完整亚基形式产生的BlmIV和BlmIII NRPSs,并对所得酶在体外进行了生化特性分析,以研究它们在BLM双噻唑生物合成中的作用。我们的结果(a)证实BlmIII-A(0)是一种天然存在的无功能突变体,(b)证明BlmIV-A(1)激活半胱氨酸并催化BlmIV-PCP(1)的顺式氨酰化(用于NRPS-1)和BlmIII-PCP(0)的反式氨酰化(用于NRPS-0),并且(c)揭示BlmIV亚基的C末端,其特征为前所未有的AGHDDD(G)和PGHDDG重复序列,对于BlmIII-PCP(0)的反式氨酰化是绝对必需的。这些发现强调了NRPSs在天然产物生物合成的结构和机制方面的灵活性和多功能性,并为研究NRPS装配线酶学中的分子识别和蛋白质-蛋白质相互作用机制提供了绝佳机会。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验