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首页> 外文期刊>Biochemistry research international >A Bioinformatics Analysis Reveals a Group of MocR Bacterial Transcriptional Regulators Linked to a Family of Genes Coding for Membrane Proteins
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A Bioinformatics Analysis Reveals a Group of MocR Bacterial Transcriptional Regulators Linked to a Family of Genes Coding for Membrane Proteins

机译:生物信息学分析揭示了一组与编码膜蛋白的基因系列组合的MOLT细菌转录调节剂

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摘要

The MocR bacterial transcriptional regulators are characterized by an N-terminal domain, 60 residues long on average, possessing the winged-helix-turn-helix (wHTH) architecture responsible for DNA recognition and binding, linked to a large C-terminal domain (350 residues on average) that is homologous to fold type-I pyridoxal 5'-phosphate (PLP) dependent enzymes like aspartate aminotransferase (AAT). These regulators are involved in the expression of genes taking part in several metabolic pathways directly or indirectly connected to PLP chemistry, many of which are still uncharacterized. A bioinformatics analysis is here reported that studied the features of a distinct group of MocR regulators predicted to be functionally linked to a family of homologous genes coding for integral membrane proteins of unknown function. This group occurs mainly in the Actinobacteria and Gammaproteobacteria phyla. An analysis of the multiple sequence alignments of their wHTH and AAT domains suggested the presence of specificity-determining positions (SDPs). Mapping of SDPs onto a homology model of the AAT domain hinted at possible structural/functional roles in effector recognition. Likewise, SDPs in wHTH domain suggested the basis of specificity of Transcription Factor Binding Site recognition. The results reported represent a framework for rational design of experiments and for bioinformatics analysis of other MocR subgroups.
机译:MOCT细菌转录调节剂的特征在于N-末端结构域,平均延长60个残留物,具有负责DNA识别和结合的翼螺旋转螺旋(WHTH)架构,与大C末端结构域连接(350平均残留物(平均)是折叠型-I吡哆醛5'-磷酸(PLP)依赖性酶如天冬氨酸氨基转移酶(AAT)的同源物。这些调节剂涉及在直接或间接连接到PLP化学的几种代谢途径中的基因的表达,其中许多仍然是无声的。这里报道了生物信息学分析,研究了预测的特异性混合调节器的特征,该特征预测到编码未知功能的整体膜蛋白的同源基因家族。该组主要发生在肌动菌细菌和γ曲线杆菌。对其WHTH和AAT域的多个序列对准的分析表明存在特异性确定位置(SDP)。 SDP映射到AAT域的同源模型,暗示在效应识别中可能的结构/功能作用。同样地,WHTH结构域中的SDP表明了转录因子结合位点识别的特异性的基础。结果报告代表了一个合理设计的实验设计框架和其他混淆亚组的生物信息分析。

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