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首页> 外文期刊>Biochemical and Biophysical Research Communications >The HMGB1 acidic tail regulates HMGB1 DNA binding specificity by a unique mechanism.
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The HMGB1 acidic tail regulates HMGB1 DNA binding specificity by a unique mechanism.

机译:HMGB1酸性尾巴通过独特的机制调节HMGB1 DNA结合特异性。

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HMGB1 is a conserved chromosomal protein composed of two DNA-binding domains and an acidic C-terminal tail. There were evidences suggesting that the C-terminal tail contributed to the DNA binding specificity of the N-terminal DNA-binding domains. However, the mechanism underlining this observation is largely unknown. Our data first confirmed the previous study with NMR that showed a direct interaction between HMGB1's C-terminal tail and its N-terminal domains. We further demonstrated that this interaction can be competed more efficiently by a DNA with four-way junction structure than by a linear double-stranded DNA. Mutations within the N-terminal region, that disrupt its binding to the C-terminal tail, abolished HMGB1's ability to distinguish the linear DNA and the four-way junction DNA. Those data suggested a unique mechanism designed by nature that utilizes a protein's negatively charged C-terminal tail to enhance its DNA-binding domain's specificity to certain structured DNAs.
机译:HMGB1是一种保守的染色体蛋白,由两个DNA结合结构域和一个酸性C末端尾巴组成。有证据表明,C末端的尾巴有助于N末端DNA结合结构域的DNA结合特异性。但是,强调这种观察的机制在很大程度上尚不清楚。我们的数据首先证实了先前的NMR研究,结果表明HMGB1的C末端尾部与其N末端结构域之间存在直接相互作用。我们进一步证明,与线性双链DNA相比,具有四向连接结构的DNA可以更有效地竞争这种相互作用。 N末端区域内的突变破坏了其与C末端尾巴的结合,从而废除了HMGB1区分线性DNA和四向连接DNA的能力。这些数据表明,自然界设计的独特机制利用蛋白质带负电荷的C末端尾巴来增强其DNA结合结构域对某些结构化DNA的特异性。

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