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首页> 外文期刊>Journal of Molecular Biology >Indirect readout of DNA sequence by P22 repressor: Roles of DNA and protein functional groups in modulating DNA conformation
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Indirect readout of DNA sequence by P22 repressor: Roles of DNA and protein functional groups in modulating DNA conformation

机译:P22阻遏物间接读出DNA序列:DNA和蛋白质官能团在调节DNA构象中的作用

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The repressor of bacteriophage P22 (P22R) discriminates between its various DNA binding sites by sensing the identity of non-contacted base pairs at the center of its binding site. The "indirect readout" of these non-contacted bases is apparently based on DNA's sequence-dependent conformational preferences. The structures of P22R-DNA complexes indicate that the non-contacted base pairs at the center of the binding site are in the B′ state. This finding suggests that indirect readout and therefore binding site discrimination depend on P22R's ability to either sense and/or impose the B′ state on the non-contacted bases of its binding sites. We show here that the affinity of binding sites for P22R depends on the tendency of the central bases to assume the B′-DNA state. Furthermore, we identify functional groups in the minor groove of the non-contacted bases as the essential modulators of indirect readout by P22R. In P22R-DNA complexes, the negatively charged E44 and E48 residues are provocatively positioned near the negatively charged DNA phosphates of the non-contacted nucleotides. The close proximity of the negatively charged groups on protein and DNA suggests that electrostatics may play a key role in the indirect readout process. Changing either of two negatively charged residues to uncharged residues eliminates the ability of P22R to impose structural changes on DNA and to recognize non-contacted base sequence. These findings suggest that these negatively charged amino acids function to force the P22R-bound DNA into the B′ state and therefore play a key role in indirect readout by P22R.
机译:噬菌体P22(P22R)的阻遏物通过感知其结合位点中心非接触碱基对的身份来区分其各种DNA结合位点。这些非接触碱基的“间接读出”显然是基于DNA的序列依赖性构象偏好。 P22R-DNA复合物的结构表明,结合位点中心的非接触碱基对处于B'状态。这一发现表明,间接读出以及由此引起的结合位点区分取决于P22R在其结合位点的非接触碱基上感测和/或强加B'状态的能力。我们在这里表明,结合位点对P22R的亲和力取决于中心碱基采取B'-DNA状态的趋势。此外,我们确定非接触式碱基的小沟中的官能团是P22R间接读出的基本调节剂。在P22R-DNA复合物中,带负电荷的E44和E48残基被挑衅性地定位在未接触核苷酸的带负电荷的DNA磷酸附近。蛋白质和DNA上带负电荷的基团非常接近,这表明静电可能在间接读出过程中起关键作用。将两个带负电荷的残基中的任何一个更改为不带电荷的残基将消除P22R对DNA施加结构变化并识别非接触碱基序列的能力。这些发现表明这些带负电荷的氨基酸起到迫使结合P22R的DNA进入B'状态的作用,因此在P22R间接读出中起关键作用。

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