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The activity of CouR a MarR family transcriptional regulator is modulated through a novel molecular mechanism

机译:通过一种新的分子机制调节了MarR家族转录调节因子CouR的活性

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摘要

CouR, a MarR-type transcriptional repressor, regulates the cou genes, encoding p-hydroxycinnamate catabolism in the soil bacterium Rhodococcus jostii RHA1. The CouR dimer bound two molecules of the catabolite p-coumaroyl–CoA (Kd = 11 ± 1 μM). The presence of p-coumaroyl–CoA, but neither p-coumarate nor CoASH, abrogated CouR's binding to its operator DNA in vitro. The crystal structures of ligand-free CouR and its p-coumaroyl–CoA-bound form showed no significant conformational differences, in contrast to other MarR regulators. The CouR–p-coumaroyl–CoA structure revealed two ligand molecules bound to the CouR dimer with their phenolic moieties occupying equivalent hydrophobic pockets in each protomer and their CoA moieties adopting non-equivalent positions to mask the regulator's predicted DNA-binding surface. More specifically, the CoA phosphates formed salt bridges with predicted DNA-binding residues Arg36 and Arg38, changing the overall charge of the DNA-binding surface. The substitution of either arginine with alanine completely abrogated the ability of CouR to bind DNA. By contrast, the R36A/R38A double variant retained a relatively high affinity for p-coumaroyl–CoA (Kd = 89 ± 6 μM). Together, our data point to a novel mechanism of action in which the ligand abrogates the repressor's ability to bind DNA by steric occlusion of key DNA-binding residues and charge repulsion of the DNA backbone.
机译:CouR是MarR型转录阻遏物,可调节cou基因,该基因编码土壤细菌红球菌RHA1中的对羟基肉桂酸酯分解代谢。 CouR二聚体结合了分解代谢物对香豆酰辅酶A的两个分子(Kd = 11±1μM)。对-香豆酰-CoA的存在,但对香豆酸和CoASH都没有在体外废除CouR与其操作员DNA的结合。与其他MarR调节剂相比,不含配体的CouR的晶体结构及其对香豆酰辅酶A的结合形式没有明显的构象差异。 CouR-p-香豆酰基-CoA结构揭示了两个与CouR二聚体结合的配体分子,它们的酚部分在每个protomer中占据等效的疏水口袋,并且它们的CoA部分采用非等价位置来掩盖调节剂的预期DNA结合表面。更具体地说,CoA磷酸盐与预期的DNA结合残基Arg36和Arg38形成盐桥,从而改变了DNA结合表面的总电荷。用丙氨酸取代任一精氨酸完全消除了CouR结合DNA的能力。相比之下,R36A / R38A双重变体对对香豆酰辅酶A保留了相对较高的亲和力(Kd = 89±6μM)。总之,我们的数据指出了一种新的作用机制,其中配体通过关键DNA结合残基的空间封闭和DNA骨架的电荷排斥来消除阻遏物结合DNA的能力。

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