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The role of intercalating residues in chromosomal high-mobility-group protein DNA binding, bending and specificity

机译:插入残基在染色体高迁移率组蛋白DNA结合,弯曲和特异性中的作用

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摘要

Ubiquitous high-mobility-group (HMGB) chromosomal proteins bind DNA ina non-sequence-specific fashion to promote chromatin function and gene regulation. Minor groove DNA binding of the HMG domain induces substantial DNA bending toward the major groove, and several interfacial residues contribute by DNA intercalation. The role of the intercalating residues in DNA binding, bending and specificity was systematically examined for a series of mutant Drosophila HMGB (HMG-D) proteins. The primary intercalating residue of HMG-D, Met13, is required both for high-affinity DNA binding and normal DNA bending. Leu9 and Tyr12 directly interact with Met13 and are required for HMG domain stability in addition to linear DNA binding and bending, which is an important function for these residues. In contrast, DNA binding and bending is retained in truncations of intercalating residues Val32 and Thr33 to alanine, but DNA bending is decreased for the glycine substitutions. Furthermore, substitution of the intercalating residues with those predicted to be involved in the specificity of the HMG domain transcription factors results in increased DNA affinity and decreased DNA bending without increased specificity. These studies reveal the importance of residues that buttress intercalating residues and suggest that features of the HMG domain other than a few base-specific hydrogen bonds distinguish the sequence-specific and non-sequence-specific HMG domain functions.
机译:无处不在的高迁移率族(HMGB)染色体蛋白以非序列特异性方式结合DNA,以促进染色质功能和基因调控。 HMG结构域的小沟DNA结合会诱导DNA朝着大沟弯曲,并且DNA嵌入会产生一些界面残基。对于一系列突变果蝇HMGB(HMG-D)蛋白,系统地检查了插入残基在DNA结合,弯曲和特异性中的作用。 HMG-D的主要插入残基Met13是高亲和力DNA结合和正常DNA弯曲所必需的。 Leu9和Tyr12直接与Met13相互作用,是HMG结构域稳定所必需的,除了线性DNA结合和弯曲外,这对于这些残基是重要的功能。相反,DNA结合和弯曲保留在插入残基Val32和Thr33到丙氨酸的截短物中,但DNA弯曲因甘氨酸取代而减少。此外,用预测与HMG结构域转录因子的特异性有关的那些残基代替嵌入残基导致DNA亲和力增加和DNA弯曲减少而没有特异性。这些研究揭示了支持插入的残基的残基的重要性,并表明HMG结构域的功能(除少数碱基特异性氢键以外)可区分序列特异性和非序列特异性HMG域功能。

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