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首页> 外文期刊>FEMS Microbiology Letters >Transcriptional regulation of the methionine and cysteine transport and metabolism in streptococci
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Transcriptional regulation of the methionine and cysteine transport and metabolism in streptococci

机译:链球菌蛋氨酸和半胱氨酸转运和代谢的转录调控

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In streptococci, unlike other Firmicutes, methionine biosynthesis is controlled by protein transcription factors, rather than regulatory RNAs. It was observed that most available streptococcal genomes contain orthologs of two transcriptional regulators of the LysR family: MtaR/MetR and CmbR/FhuR. Comparative genomics techniques were applied to identify two binding motifs occurring upstream of genes involved in metabolism and transport of methionine and cysteine and satisfying the LysR family requirements. The distribution of candidate binding sites allowed to set the correspondence between motifs and regulators (TATAGTTTnAAACTATA for MtaR/MetR and TGATA-N-9-TATCA-N2-4-TGATA for CmbR). Two amino acid transporters were predicted to belong to the cysteine (CmbR) regulon. At least two cases of potential regulator change were observed for orthologous genes of the methionine and cysteine pathway.
机译:在链球菌中,与其他Firmicutes不同,蛋氨酸的生物合成受蛋白质转录因子而非调节性RNA的控制。据观察,大多数可用的链球菌基因组包含两个LysR家族转录调节因子的直系同源物:MtaR / MetR和CmbR / FhuR。应用比较基因组学技术来鉴定两个结合基序,这些结合基序发生在蛋氨酸和半胱氨酸的代谢和运输并满足LysR家族要求的基因上游。候选结合位点的分布允许设置基序和调节子之间的对应关系(MtaR / MetR为TATAGTTTnAAACTATA,CmbR为TGATA-N-9-TATCA-N2-4-TGATA)。预测两个氨基酸转运蛋白属于半胱氨酸(CmbR)调节子。对于蛋氨酸和半胱氨酸途径的直系同源基因,至少观察到两个潜在的调节子改变的情况。

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