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Two high-mobility group box domains act together to underwind and kink DNA

机译:两个高迁移率的群组框结构域共同作用以逆转和扭结DNA

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摘要

High-mobility group protein 1 (HMGB1) is an essential and ubiquitous DNA architectural factor that influences a myriad of cellular processes. HMGB1 contains two DNA-binding domains, box A and box B, which have little sequence specificity but have remarkable abilities to underwind and bend DNA. Although HMGB1 box A is thought to be responsible for the majority of HMGB1–DNA interactions with pre-bent or kinked DNA, little is known about how it recognizes unmodified DNA. Here, the crystal structure of HMGB1 box A bound to an AT-rich DNA fragment is reported at a resolution of 2 Å. Two box A domains of HMGB1 collaborate in an unusual configuration in which the Phe37 residues of both domains stack together and intercalate the same CG base pair, generating highly kinked DNA. This represents a novel mode of DNA recognition for HMGB proteins and reveals a mechanism by which structure-specific HMG boxes kink linear DNA.
机译:高迁移率族蛋白1(HMGB1)是影响无数细胞过程的重要且普遍存在的DNA结构因子。 HMGB1包含两个DNA结合域,框A和框B,它们的序列特异性很小,但具有显着的下旋和弯曲DNA的能力。尽管人们认为HMGB1盒A负责大多数HMGB1-DNA与预弯曲或扭结DNA的相互作用,但对其如何识别未修饰的DNA知之甚少。在此,报道了与富含AT的DNA片段结合的HMGB1盒A的晶体结构的分辨率为2埃。 HMGB1的两个box A结构域以一种不寻常的配置进行协作,其中两个结构域的Phe37残基堆叠在一起并插入相同的CG碱基对,从而产生高度纽结的DNA。这代表了一种新的HMGB蛋白DNA识别模式,并揭示了一种结构特异性HMG盒扭结线性DNA的机制。

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