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ChiS histidine kinase negatively regulates the production of chitinase ChiC in Streptomyces peucetius

机译:ChiS组氨酸激酶负调控皮氏链霉菌中几丁质酶ChiC的产生

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摘要

Computational analysis of sequence homology of the chiSRC gene cluster, encoding a chitinase in Streptomyces peucetius, showed that the gene cluster could be a two-component regulon comprising a sensor kinase (chiS) and a response regulator (chiR). To prove that the ChiSRC is an authentic two-component system, the chiS gene was cloned and expressed in E.coli and the purified protein was used for biochemical analysis. In this report, we provide biochemical evidence to show that the sensor kinase encoded by chis gene indeed is a histidine kinase capable of autophosphorylation and the histidine 144 residue of the ChiS protein is the phosphate acceptor. An insertion mutation at the chiS locus led to overproduction chitinase protein in S. peucetius implying that the chiC gene is negatively regulated by the two-component system
机译:chiSRC基因簇中编码几丁质链霉菌中几丁质酶的序列同源性的计算分析表明,该基因簇可能是包含传感器激酶(chiS)和响应调节剂(chiR)的两组分调节子。为了证明ChiSRC是真正的两组分系统,将chiS基因克隆并在大肠杆菌中表达,并将纯化的蛋白质用于生化分析。在这份报告中,我们提供了生化证据,证明chis基因编码的传感器激酶确实是能够自磷酸化的组氨酸激酶,而ChiS蛋白的组氨酸144残基是磷酸受体。 chiS基因座上的插入突变导致S. peucetius中几丁质酶蛋白的过量生产,这表明chiC基因受到两组分系统的负调控

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