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Operator recognition by the ROK transcription factor family members NagC and Mlc

机译:韩国转录因子家族成员NagC和Mlc对操作员的识别

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摘要

NagC and Mlc, paralogous members of the ROK family of proteins with almost identical helix-turn-helix DNA binding motifs, specifically regulate genes for transport and utilization of N-acetylglucosamine and glucose. We previously showed that two amino acids in a linker region outside the canonical helix-turn-helix motif are responsible for Mlc site specificity. In this work we identify four amino acids in the linker, which are required for recognition of NagC targets. These amino acids allow Mlc and NagC to distinguish between a C/G and an A/T bp at positions ±11 of the operators. One linker position, glycine in NagC and arginine in Mlc, corresponds to the major specificity determinant for the two proteins. In certain contexts it is possible to switch repression from Mlc-style to NagC-style, by interchanging this glycine and arginine. Secondary determinants are supplied by other linker positions or the helix-turn-helix motif. A wide genomic survey of unique ROK proteins shows that glycine- and arginine-rich sequences are present in the linkers of nearly all ROK family repressors. Conserved short sequence motifs, within the branches of the ROK evolutionary tree, suggest that these sequences could also be involved in operator recognition in other ROK family members.
机译:NagC和Mlc是具有几乎相同的螺旋-转-螺旋DNA结合基序的ROK蛋白质家族的旁系成员,专门调节N-乙酰氨基葡萄糖和葡萄糖的转运和利用基因。我们以前表明,在规范的螺旋-转-螺旋基序之外的接头区域中的两个氨基酸是造成Mlc位点特异性的原因。在这项工作中,我们确定了接头中的四个氨基酸,这是识别NagC靶标所必需的。这些氨基酸使Mlc和NagC可以在操纵子的±11位置区分C / G和A / T bp。一个接头位置,NagC中的甘氨酸和Mlc中的精氨酸,对应于这两种蛋白质的主要特异性决定因素。在某些情况下,可以通过互换这种甘氨酸和精氨酸将阻抑作用从Mlc型转变为NagC型。次要决定簇由其他接头位置或螺旋-转-螺旋基序提供。对独特的ROK蛋白进行的广泛基因组研究表明,几乎所有ROK家族阻遏物的接头中都存在富含甘氨酸和精氨酸的序列。在韩国进化树的分支内,保守的短序列基序表明,这些序列也可能与其他韩国家族成员的操纵子识别有关。

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