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Identification of important chemical groups of the hut mRNA for HutP interactions that regulate the hut operon in Bacillus subtilis

机译:鉴定小屋mRNA的重要化学基团以调节枯草芽孢杆菌中小屋操纵子的HutP相互作用

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摘要

HutP is an RNA binding protein that regulates the expression of the histidine utilization (hut) operon in Bacillus species by binding to cis-acting regulatory sequences on hut mRNA. We recently solved the HutP crystal structure, which revealed a novel fold where three dimers are arranged in a 3-fold axis to form the hexamer. We also identified a minimal RNA binding element sufficient for HutP binding: three UAG trinucleotide motifs, each separated by 4 nt, located just upstream of the terminator. In the present study we have identified important RNA chemical groups essential for HutP interactions, by combining an in vitro selection strategy and analyses by site-specific base substitutions. These analyses suggest that each HutP molecule recognizes one UAG motif, where the first base (U) can be substituted with other bases, while the second and third bases (A and G) are required for the interactions. Further analyses of the chemical groups of the A and G bases in the UAG motif by modified base analogs suggested the importance of the exocyclic NH2 group in these bases. Also, in this motif, only the 2′-OH group of A is important for HutP recognition. Considering the important chemical groups identified here, as well as the electrostatic potential analysis of HutP, we propose that Glu137 is one of the important residues for the HutP–RNA interactions.
机译:HutP是一种RNA结合蛋白,通过与小屋mRNA上的顺式作用调控序列结合来调节芽孢杆菌属物种中组氨酸利用(小屋)操纵子的表达。我们最近解决了HutP晶体结构的问题,揭示了一种新颖的折叠结构,其中三个二聚体在3倍轴上排列以形成六聚体。我们还确定了足以与HutP结合的最小RNA结合元件:位于终止子上游的三个UAG三核苷酸基序,每个基序被4 nt隔开。在本研究中,我们通过结合体外选择策略和通过位点特异性碱基取代的分析,确定了对于HutP相互作用必不可少的重要RNA化学基团。这些分析表明,每个HutP分子都可以识别一个UAG基序,其中第一个碱基(U)可以被其他碱基取代,而第二个和第三个碱基(A和G)是相互作用所必需的。通过修饰的碱基类似物进一步分析UAG基序中A和G碱基的化学基团,表明这些碱基中环外NH 2基的重要性。另外,在该基序中,仅A的2'-OH基对于HutP识别很重要。考虑到此处确定的重要化学基团以及HutP的静电势分析,我们建议Glu137是HutP-RNA相互作用的重要残基之一。

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