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Probing the DNA kink structure induced by the hyperthermophilic chromosomal protein Sac7d

机译:探索由超嗜热染色体蛋白Sac7d诱导的DNA扭结结构

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摘要

Sac7d, a small, abundant, sequence-general DNA-binding protein from the hyperthermophilic archaeon Sulfolobus acidocaldarius, causes a single-step sharp kink in DNA (∼60°) via the intercalation of both Val26 and Met29. These two amino acids were systematically changed in size to probe their effects on DNA kinking. Eight crystal structures of five Sac7d mutant–DNA complexes have been analyzed. The DNA-binding pattern of the V26A and M29A single mutants is similar to that of the wild-type, whereas the V26A/M29A protein binds DNA without side chain intercalation, resulting in a smaller overall bending (∼50°). The M29F mutant inserts the Phe29 side chain orthogonally to the C2pG3 step without stacking with base pairs, inducing a sharp kink (∼80°). In the V26F/M29F-GCGATCGC complex, Phe26 intercalates deeply into DNA bases by stacking with the G3 base, whereas Phe29 is stacked on the G15 deoxyribose, in a way similar to those used by the TATA box-binding proteins. All mutants have reduced DNA-stabilizing ability, as indicated by their lower Tm values. The DNA kink patterns caused by different combinations of hydrophobic side chains may be relevant in understanding the manner by which other minor groove-binding proteins interact with DNA.
机译:Sac7d是来自超嗜热古细菌Sulfolobus acidocaldarius的一种小而丰富的,具有序列一般性的DNA结合蛋白,通过插入Val26和Met29引起DNA的一步突变(约60°)。这两个氨基酸的大小被系统地改变以探测它们对DNA扭结的影响。已经分析了五个Sac7d突变体-DNA复合物的八个晶体结构。 V26A和M29A单个突变体的DNA结合模式与野生型相似,而V26A / M29A蛋白质结合DNA而没有侧链插入,从而导致较小的总体弯曲(约50°)。 M29F突变体垂直于C2pG3步骤插入了Phe29侧链,而没有与碱基对堆叠,从而引起了明显的扭结(〜80°)。在V26F / M29F-GCGATCGC复合物中,Phe26通过与G3碱基堆叠而深入插入DNA碱基,而Phe29堆叠在G15脱氧核糖上,其方式类似于TATA盒结合蛋白所使用的方式。如其较低的Tm值所示,所有突变体均具有降低的DNA稳定能力。由疏水性侧链的不同组合引起的DNA扭结模式可能与理解其他次要的沟结合蛋白与DNA相互作用的方式有关。

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