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Molecular analysis of mxbD and mxbM, a putative sensor-regulator pair required for oxidation of methanol in Methylobacterium extorquens AM1

机译:MXBD和MXBM的分子分析,甲基杆菌溶液氧化溶液所需的推定的传感器调节剂对

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Five genes are thought to be required for transcription of methanol oxidation genes in Methylobacterium strains. These putative regulatory genes include mxcQE, which encode a putative sensor-regulator pair, and mxbDM and mxaB, whose functions are less well-understood. In this study, mxbDM in Methylobacterium extorquens AM1 were shown to be required for expression of a xyIE transcriptional fusion to the structural gene for the large subunit of methanol dehydrogenase (mxaF), confirming the role of these genes in transcriptional regulation of mxaF. The nucleotide sequence suggests that mxbD encodes a histidiine protein kinase with two transmembrane domains and that mxbM encodes a DNA-binding response regulator. A xyIE transcriptional fusion to the putative mxbD promoter showed low-level expression in wild-type cells grown on one-carbon (C1) compounds and no detectable expression in cells grown on succinate. Deletion analysis of this promoter construct showed that the region 229-129 bp upstream of the start of mxbD is required for expression. The expression of the mxbD-xylE fusion was examined in each of the five known regulatory mutant classes. xyIE expression was reduced to non-detectable levels in MxcQ and MxcE mutants, but was not affected in the other regulatory mutants or in non-regulatory mutants defective in methanol oxidation. These results suggest a regulatory hierarchy in which the sensor-regulator pair MxcQE control expression of the sensor-regulator pair MxbDM, and MxbDM in turn control expression of a number of genes involved in methanol oxidation.
机译:认为五种基因是在甲基杆菌菌株中转录甲醇氧化基因所必需的。这些推定的调节基因包括MXCQE,其编码推定的传感器 - 调节剂对,以及MXBDM和MXAB,其功能较小地理解。在本研究中,显示MXBDM在甲基杆菌AM1中,需要表达Xyie转录融合对甲醇脱氢酶(MXAF)的大亚基的结构基因,确认这些基因在MXAF转录调节中的作用。核苷酸序列表明MXBD编码具有两个跨膜结构域的组氨酸蛋白激酶,并且MXBM编码DNA结合响应调节剂。对推定的MXBD启动子的Xyie转录融合显示出在单碳(C1)化合物种植的野生型细胞中的低水平表达,在琥珀酸盐上生长的细胞中没有可检测的表达。该启动子构建体的缺失分析表明,表达需要在MXBD开始的上游区域229-129bp。在五种已知的调节突变类别中的每一个中检查了MXBD-XYLE融合的表达。将Xyie表达降至MXCQ和MXCE突变体中的未检测到水平,但在其他调节突变体中不受含有甲醇氧化缺陷的非调节突变体的影响。这些结果表明了一种调节层次结构,其中传感器 - 调节剂对MXCQE MXCQE对照表达式的传感器 - 调节剂对MXBDM和MXBDM反过来控制表达许多基因涉及甲醇氧化的基因。

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