"Pseudo" γ-Butyrolactone Receptors Respond to Antibiotic Signals to Coordinate Antibiotic Biosynthesis

被引:105
作者
Xu, Gangming [1 ]
Wang, Juan [1 ]
Wang, Linqi [1 ]
Tian, Xiuyun [1 ]
Yang, Haihua [1 ]
Fan, Keqiang [1 ]
Yang, Keqian [1 ]
Tan, Huarong [1 ]
机构
[1] Chinese Acad Sci, State Key Lab Microbial Resources, Inst Microbiol, Beijing 100101, Peoples R China
基金
中国国家自然科学基金;
关键词
STREPTOMYCES-COELICOLOR A3(2); COMPLETE GENOME SEQUENCE; VENEZUELAE ISP5230; GENE-CLUSTER; SECONDARY METABOLISM; BINDING-PROTEIN; PATHWAY; REGULATOR; CHLORAMPHENICOL; IDENTIFICATION;
D O I
10.1074/jbc.M110.143081
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In actinomycetes, the onset of secondary metabolite biosynthesis is often triggered by the quorum-sensing signal gamma-butyrolactones (GBLs) via specific binding to their cognate receptors. However, the presence of multiple putative GBL receptor homologues in the genome suggests the existence of an alternative regulatory mechanism. Here, in the model streptomycete Streptomyces coelicolor, ScbR2 (SCO6286, a homologue of GBL receptor) is shown not to bind the endogenous GBL molecule SCB1, hence designated "pseudo" GBL receptor. Intriguingly, it could bind the endogenous antibiotics actinorhodin and undecylprodigiosin as ligands, leading to the derepression of KasO, an activator of a cryptic type I polyketide synthase gene cluster. Likewise, JadR2 is also a putative GBL receptor homologue in Streptomyces venezuelae, the producer of chloramphenicol and cryptic antibiotic jadomycin. It is shown to coordinate their biosynthesis via direct repression of JadR1, which activates jadomycin biosynthesis while repressing chloramphenicol biosynthesis directly. Like ScbR2, JadR2 could also bind these two disparate antibiotics, and the interactions lead to the derepression of jadR1. The antibiotic responding activities of these pseudo GBL receptors were further demonstrated in vivo using the lux reporter system. Overall, these results suggest that pseudo GBL receptors play a novel role to coordinate antibiotic biosynthesis by binding and responding to antibiotics signals. Such an antibiotic-mediated regulatory mechanism could be a general strategy to coordinate antibiotic biosynthesis in the producing bacteria.
引用
收藏
页码:27440 / 27448
页数:9
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