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Spacing between core recognition motifs determines relative orientation of AraR monomers on bipartite operators

机译:核心识别基序之间的间隔决定了二分算子上AraR单体的相对取向

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摘要

Transcription factors modulate expression primarily through specific recognition of cognate sequences resident in the promoter region of target genes. AraR (Bacillus subtilis) is a repressor of genes involved in l-arabinose metabolism. It binds to eight different operators present in five different promoters with distinct affinities through a DNA binding domain at the N-terminus. The structures of AraR-NTD in complex with two distinct operators (ORA1 and ORR3) reveal that two monomers bind to one recognition motif (T/ANG) each in the bipartite operators. The structures show that the two recognition motifs are spaced apart by six bases in cases of ORA1 and eight bases in case of ORR3. This increase in the spacing in the operators by two base pairs results in a drastic change in the position and orientation of the second monomer on DNA in the case of ORR3 when compared with ORA1. Because AraR binds to the two operators with distinct affinities to achieve different levels of repression, this observation suggests that the variation in the spacing between core recognition motifs could be a strategy used by this transcription modulator to differentially influence gene expression.
机译:转录因子主要通过特异性识别驻留在靶基因启动子区域的同源序列来调节表达。 AraR(枯草芽孢杆菌)是参与1-阿拉伯糖代谢的基因的阻遏物。它通过位于N端的DNA结合结构域与存在于五个不同启动子中的八个不同操纵子结合,具有不同的亲和力。具有两个不同的操纵子(ORA1和ORR3)的AraR-NTD的结构揭示了在二元操纵子中,两个单体分别与一个识别基序(T / ANG)结合。该结构表明,两个识别基序在ORA1情况下间隔六个碱基,在ORR3情况下间隔八个碱基。与ORA1相比,在ORR3的情况下,操纵子之间的间隔增加了两个碱基对,导致第二个单体在DNA上的位置和方向发生了急剧变化。由于AraR以不同的亲和力结合到两个操纵子上,以实现不同程度的阻抑,因此该观察结果表明,核心识别基序之间的间隔变化可能是该转录调节剂用来差异影响基因表达的一种策略。

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