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富含32种新酶特性的环二肽合酶家族综合概述

A Comprehensive Overview of the Cyclodipeptide Synthase Family Enriched with the Characterization of 32 New Enzymes.

作者信息

Gondry Muriel, Jacques Isabelle B, Thai Robert, Babin Morgan, Canu Nicolas, Seguin Jérôme, Belin Pascal, Pernodet Jean-Luc, Moutiez Mireille

机构信息

Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, Univ. Paris-Sud, Université Paris-Saclay, Gif-sur-Yvette, France.

SIMOPRO, Institut Frédéric Joliot, CEA-Saclay, Gif-sur-Yvette, France.

出版信息

Front Microbiol. 2018 Feb 12;9:46. doi: 10.3389/fmicb.2018.00046. eCollection 2018.

Abstract

Cyclodipeptide synthases (CDPSs) use as substrates two amino acids activated as aminoacyl-tRNAs to synthesize cyclodipeptides in secondary metabolites biosynthetic pathways. Since the first description of a CDPS in 2002, the number of putative CDPSs in databases has increased exponentially, reaching around 800 in June 2017. They are likely to be involved in numerous biosynthetic pathways but the diversity of their products is still under-explored. Here, we describe the activity of 32 new CDPSs, bringing the number of experimentally characterized CDPSs to about 100. We detect 16 new cyclodipeptides, one of which containing an arginine which has never been observed previously. This brings to 75 the number of cyclodipeptides formed by CDPSs out of the possible 210 natural ones. We also identify several consensus sequences related to the synthesis of a specific cyclodipeptide, improving the predictive model of CDPS specificity. The improved prediction method enables to propose the main product synthesized for about 80% of the CDPS sequences available in databases and opens the way for the deciphering of CDPS-dependent pathways. Analysis of phylum distribution and predicted activity for all CDPSs identified in databases shows that the experimentally characterized set is representative of the whole family. Our work also demonstrates that some cyclodipeptides, precursors of diketopiperazines with interesting pharmacological properties and previously described as being synthesized by fungal non-ribosomal peptide synthetases, can also be produced by CDPSs in bacteria.

摘要

环二肽合酶(CDPSs)在次生代谢物生物合成途径中,将两个被激活为氨酰基-tRNA的氨基酸用作底物来合成环二肽。自2002年首次描述CDPS以来,数据库中假定的CDPS数量呈指数增长,到2017年6月已达到约800个。它们可能参与众多生物合成途径,但其产物的多样性仍有待深入探索。在此,我们描述了32种新CDPS的活性,使经实验表征的CDPS数量达到约100种。我们检测到16种新的环二肽,其中一种含有精氨酸,这是此前从未观察到的。这使得CDPS形成的环二肽数量在可能的210种天然环二肽中达到75种。我们还鉴定了几个与特定环二肽合成相关的共有序列,改进了CDPS特异性的预测模型。改进后的预测方法能够为数据库中约80%的CDPS序列所合成的主要产物提出建议,并为破译CDPS依赖途径开辟了道路。对数据库中鉴定出的所有CDPS的门类分布和预测活性分析表明,经实验表征的集合代表了整个家族。我们的工作还表明,一些环二肽是具有有趣药理特性的二酮哌嗪的前体,此前被描述为由真菌非核糖体肽合成酶合成,现在也可由细菌中的CDPS产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48a3/5816076/84ba93c0bb61/fmicb-09-00046-g0001.jpg

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