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首页> 外文期刊>Extremophiles: Life under extreme conditions >Identification of a GntR family regulator BusR(Tha) and its regulatory mechanism in the glycine betaine ABC transport system of Tetragenococcus halophilus
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Identification of a GntR family regulator BusR(Tha) and its regulatory mechanism in the glycine betaine ABC transport system of Tetragenococcus halophilus

机译:鉴别甘氨酸甜菜碱的甘氨酸甜菜碱ABC运输系统的GNTR家族调节器BUSR(THA)及其调节机制

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摘要

Glycine betaine is one of the most effective compatible solutes of the halophilic lactic acid bacterium Tetragenococcus halophilus, the transportation of which is essential for its survival under salinity stress condition. In the current study, we attempted to define a glycine betaine ABC transporter system of T. halophilus, busA(Tha), which plays an important role in adapting to salinity condition. The expression of busA(Tha) enhanced the growth of the recombinant strain under high salinity. BusR(Tha), a transcription regulator that represses the expression of busA(Tha), was characterized, and the repression was abrogated under high salinity. The binding of the regulator was demonstrated through electrophoretic mobility shift assays, and the binding sites were characterized as 5-AAA(T/G)TGAC(C/A)(G/A)T(C/A)C-3. This is the first studied transcription regulator of T. halophilus, and our findings provide insights into the molecular mechanism of halophilic life and tools for further application of halophiles as chassis in industrial biotechnology.
机译:甘氨酸甜菜碱是嗜盐乳酸菌四嗜盐杆菌的最有效的相容溶质之一,其运输在盐度胁迫条件下其存活至关重要。在目前的研究中,我们试图定义T.Halophilus,BUSA(THA)的甘氨酸甜菜碱ABC转运系统,这在适应盐度条件方面起着重要作用。 BUSA(THA)的表达增强了高盐度下重组菌株的生长。 BUSR(THA),一种抑制BUSA(THA)表达的转录调节剂,并在高盐度下抑制抑制。通过电泳迁移率移位测定证明了调节剂的结合,结合位点表征为5-AAA(T / G)TGAC(C / A)(G / A)T(C / A)C-3。这是第一个研究的T.Halophilus的转录调节因子,我们的研究结果提供了进入嗜盐寿命和工具的分子机制的见解,以便在工业生物技术中进一步申请烟草属性作为底盘。

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