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afsS是AfsR的一个靶标,AfsR是一种具有ATP酶活性的转录因子,它全面调控天蓝色链霉菌A3(2)中的次级代谢。

afsS is a target of AfsR, a transcriptional factor with ATPase activity that globally controls secondary metabolism in Streptomyces coelicolor A3(2).

作者信息

Lee Ping-Chin, Umeyama Takashi, Horinouchi Sueharu

机构信息

Department of Biotechnology, Graduate School of Agriculture and Life Sciences, The University of Tokyo, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

Mol Microbiol. 2002 Mar;43(6):1413-30. doi: 10.1046/j.1365-2958.2002.02840.x.

DOI:10.1046/j.1365-2958.2002.02840.x
PMID:11952895
Abstract

AfsR is a pleiotropic, global regulator that controls the production of actinorhodin, undecylprodigiosin and calcium-dependent antibiotic in Streptomyces coelicolor A3(2). AfsR, with 993 amino acids, is phosphorylated on serine and threonine residues by a protein serine/threonine kinase AfsK and contains an OmpR-like DNA-binding fold at its N-terminal portion and A- and B-type nucleotide-binding motifs in the middle of the protein. The DNA-binding domain, in-dependently of the nucleotide-binding domain, contributed the binding of AfsR to the upstream region of afsS that locates immediately 3' to afsR and encodes a 63-amino-acid protein. No transcription of afsS in the DeltaafsR background and restoration of afsS transcription by afsR on a plasmid in the same genetic background indicated that afsR served as a transcriptional activator for afsS. Interestingly, the AfsR binding site overlapped the promoter of afsS, as determined by DNase I protection assay and high-resolution S1 nuclease mapping. The nucleotide-binding domain contributed distinct ATPase and GTPase activity. The phosphorylation of AfsR by AfsK greatly enhanced the DNA-binding activity and modulated the ATPase activity. The DNA-binding ability of AfsR was independent of the ATPase activity. However, the ATPase activity was essential for transcriptional activation of afsS, probably because the energy available from ATP hydrolysis is required for the isomerization of the closed complex between AfsR and RNA polymerase to a transcriptionally competent open complex. Thus, AfsR turns out to be a unique transcriptional factor, in that it is modular, in which DNA-binding and ATPase activities are physically separable, and the two functions are modulated by phosphorylation on serine and threonine residues.

摘要

AfsR是一种多效性的全局调控因子,它控制天蓝色链霉菌A3(2)中放线紫红素、灵菌红素和钙依赖性抗生素的产生。AfsR含有993个氨基酸,被一种蛋白丝氨酸/苏氨酸激酶AfsK在丝氨酸和苏氨酸残基上磷酸化,并且在其N端部分含有一个类似OmpR的DNA结合结构域,在蛋白中部含有A类和B类核苷酸结合基序。DNA结合结构域独立于核苷酸结合结构域,促使AfsR与afsS的上游区域结合,afsS位于afsR的紧3'端,编码一个63个氨基酸的蛋白质。在缺失afsR的背景下afsS不转录,而在相同遗传背景下质粒上的afsR可恢复afsS的转录,这表明afsR作为afsS的转录激活因子。有趣的是,通过DNA酶I保护试验和高分辨率S1核酸酶作图确定,AfsR结合位点与afsS的启动子重叠。核苷酸结合结构域具有独特的ATP酶和GTP酶活性。AfsK对AfsR的磷酸化极大地增强了DNA结合活性并调节了ATP酶活性。AfsR的DNA结合能力与ATP酶活性无关。然而,ATP酶活性对于afsS的转录激活至关重要,可能是因为ATP水解产生的能量是AfsR与RNA聚合酶之间的封闭复合物异构化为转录活性开放复合物所必需的。因此,AfsR是一种独特的转录因子,因为它是模块化的,其中DNA结合和ATP酶活性在物理上是可分离的,并且这两种功能通过丝氨酸和苏氨酸残基上的磷酸化来调节。

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