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糖肽产生菌拜来霉素链霉菌的VanRS同源双组分系统VnlRSAb可激活天蓝色链霉菌中vanHAXSc基因的转录,但在拜来霉素链霉菌中则不然。

The VanRS Homologous Two-Component System VnlRSAb of the Glycopeptide Producer Amycolatopsis balhimycina Activates Transcription of the vanHAXSc Genes in Streptomyces coelicolor, but not in A. balhimycina.

作者信息

Kilian Regina, Frasch Hans-Joerg, Kulik Andreas, Wohlleben Wolfgang, Stegmann Evi

机构信息

1 Interfaculty Institute of Microbiology and Infection Medicine Tuebingen, Microbiology/Biotechnology, University of Tuebingen , Tuebingen, Germany .

2 German Centre for Infection Research (DZIF) , Partner Site Tuebingen, Tuebingen, Germany .

出版信息

Microb Drug Resist. 2016 Sep;22(6):499-509. doi: 10.1089/mdr.2016.0128. Epub 2016 Jul 15.

Abstract

In enterococci and in Streptomyces coelicolor, a glycopeptide nonproducer, the glycopeptide resistance genes vanHAX are colocalized with vanRS. The two-component system (TCS) VanRS activates vanHAX transcription upon sensing the presence of glycopeptides. Amycolatopsis balhimycina, the producer of the vancomycin-like glycopeptide balhimycin, also possesses vanHAXAb genes. The genes for the VanRS-like TCS VnlRSAb, together with the carboxypeptidase gene vanYAb, are part of the balhimycin biosynthetic gene cluster, which is located 2 Mb separate from the vanHAXAb. The deletion of vnlRSAb did not affect glycopeptide resistance or balhimycin production. In the A. balhimycina vnlRAb deletion mutant, the vanHAXAb genes were expressed at the same level as in the wild type, and peptidoglycan (PG) analyses proved the synthesis of resistant PG precursors. Whereas vanHAXAb expression in A. balhimycina does not depend on VnlRAb, a VnlRAb-depending regulation of vanYAb was demonstrated by reverse transcriptase polymerase chain reaction (RT-PCR) and RNA-seq analyses. Although VnlRAb does not regulate the vanHAXAb genes in A. balhimycina, its heterologous expression in the glycopeptide-sensitive S. coelicolor ΔvanRSSc deletion mutant restored glycopeptide resistance. VnlRAb activates the vanHAXSc genes even in the absence of VanS. In addition, expression of vnlRAb increases actinorhodin production and influences morphological differentiation in S. coelicolor.

摘要

在肠球菌和天蓝色链霉菌(一种不产生糖肽的菌)中,糖肽抗性基因vanHAX与vanRS共定位。双组分系统(TCS)VanRS在感知到糖肽存在时激活vanHAX转录。万古霉素样糖肽巴龙霉素的产生菌巴利霉素游动放线菌也拥有vanHAXAb基因。类VanRS双组分系统VnlRSAb的基因,连同羧肽酶基因vanYAb,是巴龙霉素生物合成基因簇的一部分,该基因簇位于与vanHAXAb相隔2 Mb的位置。vnlRSAb的缺失不影响糖肽抗性或巴龙霉素的产生。在巴利霉素游动放线菌vnlRAb缺失突变体中,vanHAXAb基因的表达水平与野生型相同,肽聚糖(PG)分析证明了抗性PG前体的合成。虽然巴利霉素游动放线菌中vanHAXAb的表达不依赖于VnlRAb,但通过逆转录聚合酶链反应(RT-PCR)和RNA测序分析证明了vanYAb的表达受VnlRAb调控。尽管VnlRAb在巴利霉素游动放线菌中不调控vanHAXAb基因,但其在糖肽敏感的天蓝色链霉菌ΔvanRSSc缺失突变体中的异源表达恢复了糖肽抗性。即使在没有VanS的情况下,VnlRAb也能激活vanHAXSc基因。此外,vnlRAb的表达增加了放线紫红素的产生,并影响了天蓝色链霉菌的形态分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5a7/5036315/bdc4b5305890/fig-1.jpg

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