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删除链霉菌主要特殊代谢产物生物合成途径对该菌株代谢组和脂质组的影响。

Consequences of the deletion of the major specialized metabolite biosynthetic pathways of Streptomyces coelicolor on the metabolome and lipidome of this strain.

机构信息

Institut de Biologie Intégrative de la Cellule (I2BC, UMR 9198), Université Paris-Saclay, CEA, CNRS, Group MES (Métabolisme Energétique Des Streptomyces), Gif-sur-Yvette, France.

UFR Pharmacie, Université Paris-Saclay, CNRS, Group «Lipides, Systèmes Analytiques et Biologiques (Lip(Sys)2», Orsay, France.

出版信息

Microb Biotechnol. 2024 Aug;17(8):e14538. doi: 10.1111/1751-7915.14538.

Abstract

Chassis strains, derived from Streptomyces coelicolor M145, deleted for one or more of its four main specialized metabolites biosynthetic pathways (CPK, CDA, RED and ACT), in various combinations, were constructed for the heterologous expression of specialized metabolites biosynthetic pathways of various types and origins. To determine consequences of these deletions on the metabolism of the deleted strains comparative lipidomic and metabolomic analyses of these strains and of the original strain were carried out. These studies unexpectedly revealed that the deletion of the peptidic clusters, RED and/or CDA, in a strain deleted for the ACT cluster, resulted into a great increase in the triacylglycerol (TAG) content, whereas the deletion of polyketide clusters, ACT and CPK had no impact on TAG content. Low or high TAG content of the deleted strains was correlated with abundance or paucity in amino acids, respectively, reflecting high or low activity of oxidative metabolism. Hypotheses based on what is known on the bio-activity and the nature of the precursors of these specialized metabolites are proposed to explain the unexpected consequences of the deletion of these pathways on the metabolism of the bacteria and on the efficiency of the deleted strains as chassis strains.

摘要

底盘菌株来源于变铅青链霉菌 M145,缺失了其四个主要的专门代谢物生物合成途径(CPK、CDA、RED 和 ACT)中的一个或多个,以各种组合构建,用于异源表达各种类型和来源的专门代谢物生物合成途径。为了确定这些缺失对缺失菌株代谢的影响,对这些菌株和原始菌株进行了比较脂质组学和代谢组学分析。这些研究出人意料地揭示,在缺失 ACT 簇的菌株中缺失肽簇 RED 和/或 CDA 会导致三酰基甘油 (TAG) 含量大幅增加,而聚酮簇 ACT 和 CPK 的缺失对 TAG 含量没有影响。缺失菌株的低或高 TAG 含量分别与氨基酸的丰富或缺乏相关,反映了氧化代谢的高或低活性。基于对这些专门代谢物的生物活性和前体的了解,提出了假设来解释这些途径的缺失对细菌代谢和缺失菌株作为底盘菌株的效率的意外影响。

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