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首页> 外文期刊>Folia microbiologica >Identification of a novel unpaired histidine sensor kinase affecting secondary metabolism and morphological differentiation in Streptomyces acidiscabies ATCC 49003
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Identification of a novel unpaired histidine sensor kinase affecting secondary metabolism and morphological differentiation in Streptomyces acidiscabies ATCC 49003

机译:新型不配对组氨酸传感器激酶的鉴定,可影响酸性链霉菌ATCC 49003的次级代谢和形态分化

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摘要

Two-component systems (TCSs) are an important signaling transduction pathway that adapt to changing environments. Commonly, a TCS comprises a sensor kinase that is usually an integral membrane histidine sensor kinase and a response regulator that mediates the cellular responses. Presently, however, we cloned a novel sensor kinase gene (tcsK) that is not adjacent to its cognate response regulator from Streptomyces acidiscabies that produces two secondary metabolites, thaxtomin A and WS5995B, and identified its functional involvement in the production of secondary metabolites and morphological differentiation. The elevated expression and disruption of the tcsK gene enhanced 7.1-fold and almost abolished WS5995B production in S. acidiscabies, respectively, but did not affect the production of thaxtomin A. In addition, spore formation of S. acidiscabies was decreased 120-fold by the disruption of tcsK, and the actinorhodin production of Streptomyces lividans TK24 was increased 5.7-fold by the high expression of tcsK. These results indicate that the novel unpaired tcsK gene may be related to the control of secondary metabolite production and spore formation in actinomycetes.
机译:两成分系统(TCS)是适应不断变化的环境的重要信号转导途径。通常,TCS包含通常为整体膜组氨酸传感器激酶的传感器激酶和介导细胞应答的应答调节剂。然而,目前,我们从酸性链霉菌中克隆了一个不与其同源应答调节子相邻的新的传感器激酶基因(tcsK),后者产生了两种次级代谢产物,thaxtomin A和WS5995B,并确定了其在次级代谢产物的产生和形态学上的功能性参与。差异化。 tcsK基因的高表达和破坏分别提高了酸性链球菌的7.1倍和几乎废除了WS5995B的产量,但不影响thaxtomin A的产生。此外,酸性链球菌的孢子形成减少了120倍。 tcsK的高表达使tcsK的破坏和淡紫链霉菌TK24的放线菌素生成增加了5.7倍。这些结果表明,新的不成对的tcsK基因可能与放线菌中次级代谢产物的产生和孢子形成的控制有关。

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