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灵菌红素生物合成中的蛋白质装配线组件:PigA、G、H、I、J的特性分析

Protein assembly line components in prodigiosin biosynthesis: characterization of PigA,G,H,I,J.

作者信息

Garneau-Tsodikova Sylvie, Dorrestein Pieter C, Kelleher Neil L, Walsh Christopher T

机构信息

Department of Biological Chemistry & Molecular Pharmacology, Harvard Medical School, 240 Longwood Avenue, Boston, MA 02115, USA.

出版信息

J Am Chem Soc. 2006 Oct 4;128(39):12600-1. doi: 10.1021/ja063611l.

Abstract

The red streptomycete metabolite prodigiosin has a unique tripyrrolic structure with two of the three pyrrolyl moieties in tandem. Five enzymes, PigA,G,H,I, and J, are involved in dipyrrole (rings A and B) formation. We have heterologously expressed and purified from Escherichia coli these five enzymes. At first, pyrrole ring A is formed on the peptidyl carrier protein PigG by one of two possible ways: (i) by action of the adenylation domain PigI that transforms l-proline into l-prolyl-AMP and by the flavoprotein dehydrogenase PigA responsible for the four-electron oxidation reaction; (ii) by loading with the pyrrolyl-2-carboxyl-(S)-pantetheinyl moiety from synthetic pyrrolyl-CoA using the phosphopantetheinyl transferase Sfp. Subsequently, pyrrole ring B is constructed by PigH after the transfer of ring A to the ketosynthase of PigJ. PigH consists of three domains: two acyl carrier proteins (ACPs) and a seryltransferase (SerT). Using HPLC and nanospray-Fourier Transform Mass Spectrometry (nFTMS), we established that all three domains of PigH undergo post-translational modifications and gained insight into the machinery involved in 2,2-dipyrrole biosynthesis.

摘要

红色链霉菌代谢产物灵菌红素具有独特的三吡咯结构,其中三个吡咯基部分中的两个串联排列。五种酶,即PigA、G、H、I和J,参与二吡咯(A环和B环)的形成。我们已在大肠杆菌中异源表达并纯化了这五种酶。首先,吡咯环A通过两种可能的方式之一在肽基载体蛋白PigG上形成:(i)通过腺苷化结构域PigI的作用,将L-脯氨酸转化为L-脯氨酰-AMP,并通过负责四电子氧化反应的黄素蛋白脱氢酶PigA;(ii)使用磷酸泛酰巯基乙胺基转移酶Sfp从合成的吡咯基-CoA加载吡咯基-2-羧基-(S)-泛酰巯基乙胺部分。随后,在环A转移到PigJ的酮合成酶后,由PigH构建吡咯环B。PigH由三个结构域组成:两个酰基载体蛋白(ACP)和一个丝氨酰转移酶(SerT)。使用高效液相色谱和纳米喷雾傅里叶变换质谱(nFTMS),我们确定PigH的所有三个结构域都经历了翻译后修饰,并深入了解了2,2-二吡咯生物合成所涉及的机制。

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