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Analysis of DNA Binding and Transcriptional Activation by the LysR-Type Transcriptional Regulator CbbR of Xanthobacter flavus

机译:黄杆菌的LysR型转录调节因子CbbR的DNA结合和转录激活的分析。

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摘要

The LysR-type transcriptional regulator CbbR controls the expression of the cbb and gap-pgk operons in Xanthobacter flavus, which encode the majority of the enzymes of the Calvin cycle required for autotrophic CO2 fixation. The cbb operon promoter of this chemoautotrophic bacterium contains three potential CbbR binding sites, two of which partially overlap. Site-directed mutagenesis and subsequent analysis of DNA binding by CbbR and cbb promoter activity were used to show that the potential CbbR binding sequences are functional. Inverted repeat IR1 is a high-affinity CbbR binding site. The main function of this repeat is to recruit CbbR to the cbb operon promoter. In addition, it is required for negative autoregulation of cbbR expression. IR3 represents the main low-affinity binding site of CbbR. Binding to IR3 occurs in a cooperative manner, since mutations preventing the binding of CbbR to IR1 also prevent binding to the low-affinity site. Although mutations in IR3 have a negative effect on the binding of CbbR to this site, they result in an increased promoter activity. This is most likely due to steric hindrance of RNA polymerase by CbbR since IR3 partially overlaps with the −35 region of the cbb operon promoter. Mutations in IR2 do not affect the DNA binding of CbbR in vitro but have a severe negative effect on the activity of the cbb operon promoter. This IR2 binding site is therefore critical for transcriptional activation by CbbR.
机译:LysR型转录调节因子CbbR控制黄杆菌中黄杆菌的cbb和gap-pgk操纵子的表达,它们编码自养性CO2固定所需的大部分加尔文循环酶。这种化学自养细菌的cbb操纵子启动子包含三个潜在的CbbR结合位点,其中两个部分重叠。定点诱变和随后的CbbR和cbb启动子活性对DNA结合的分析被用来表明潜在的CbbR结合序列是有功能的。反向重复IR1是高亲和力的CbbR结合位点。该重复序列的主要功能是将CbbR募集到cbb操纵子启动子。另外,它对于cbbR表达的负自动调节是必需的。 IR3代表CbbR的主要低亲和力结合位点。与IR3的结合以协作方式发生,因为阻止CbbR与IR1结合的突变也阻止了与低亲和力位点的结合。尽管IR3中的突变对CbbR与该位点的结合具有负面影响,但它们导致启动子活性增加。这很可能是由于CbbR对RNA聚合酶的空间位阻,因为IR3与cbb操纵子启动子的-35部分重叠。 IR2中的突变不会影响体外CbbR的DNA结合,但会对cbb操纵子启动子的活性产生严重的负面影响。因此,该IR2结合位点对于CbbR的转录激活至关重要。

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