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Identification and Characterization of the Two-Component System HK8700-RR8701 of Kocuria rhizophila DC2201

机译:科松罗米拉DC2201双组分系统HK8700-RR8701的鉴定与表征

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摘要

Two-component systems (TCSs) are highly conserved in prokaryotes, endowing cells with multiple physiological functions to respond to changes in the ambient environment. The signaling pathway of a typical TCS consists of a sensory histidine kinase and a response regulator. The TCSs of Kocuria rhizophila, which is usually used as a target strain for various antibiotics and other adverse factors, have captured our interest due to their potential roles in bacterial adaptation for survival. Herein, the distribution and putative biological functions of the TCSs of K. rhizophila DC2201 were analyzed by using bioinformatics, and a preliminary TCS regulatory network was constructed. A representative and important TCS (i.e., HK8700-RR8701 system), which is homologous to the LiaS-LiaR system previously discovered in Bacillus subtilis, was identified and characterized through yeast two-hybrid screening and phosphorylation assays. Detailed information of TCSs is expected to offer novel insights into the adaptation mechanism of K. rhizophila and thus boost its application.
机译:双组分系统(TCSS)在原核生物中高度保守,赋予具有多种生理功能的细胞来响应环境环境的变化。典型TCS的信号通路由感官组氨酸激酶和反应调节剂组成。 Kocuria rhizophila的TCSS通常用作各种抗生素和其他不利因素的目标菌株,由于它们的潜在作用而占据了生存期的潜在作用。这里,通过使用生物信息学分析K.Rhizophila DC2201的TCS的分布和推定生物学功能,构建了初步TCS调节网络。通过酵母双杂化筛选和磷酸化测定,鉴定了对枯草芽孢杆菌中先前发现的leas-lear系统同源的代表性和重要的Tcs(即HK8700-RR8701系统)。预计TCSS的详细信息将为K.Rhizophila的适应机制提供新的洞察力,从而提高其应用。

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