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DNA bending, compaction and negative supercoiling by the architectural protein Sso7d of Sulfolobus solfataricus

机译:Sulfolobus solfataricus的建筑蛋白Sso7d对DNA的弯曲,压缩和负超螺旋

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摘要

Members of the Sso7d/Sac7d family are small, abundant, non-specific DNA-binding proteins of the hyperthermophilic Archaea Sulfolobus. Crystal structures of these proteins in complex with oligonucleotides showed that they induce changes in the helical twist and marked DNA bending. On this basis they have been suggested to play a role in organising chromatin structures in these prokaryotes, which lack histones. We report functional in vitro assays to investigate the effects of the observed Sso7d-induced structural modifications on DNA geometry and topology. We show that binding of multiple Sso7d molecules to short DNA fragments induces significant curvature and reduces the stiffness of the complex. Sso7d induces negative supercoiling of DNA molecules of any topology (relaxed, positively or negatively supercoiled) and in physiological conditions of temperature and template topology. Binding of Sso7d induces compaction of positively supercoiled and relaxed DNA molecules, but not of negatively supercoiled ones. Finally, Sso7d inhibits the positive supercoiling activity of the thermophile-specific enzyme reverse gyrase. The proposed biological relevance of these observations is that these proteins might model the behaviour of DNA in constrained chromatin environments.
机译:Sso7d / Sac7d家族的成员是超嗜热古生菌的小而丰富的非特异性DNA结合蛋白。这些蛋白质与寡核苷酸复合的晶体结构表明,它们诱导螺旋扭曲的变化和明显的DNA弯曲。在此基础上,已建议它们在缺乏组蛋白的原核生物中组织染色质结构中发挥作用。我们报告功能性体外测定,以调查观察到的Sso7d诱导的DNA几何形状和拓扑结构修饰的影响。我们表明,多个Sso7d分子与短DNA片段的结合会诱导明显的曲率并降低复合物的刚度。 Sso7d会在温度和模板拓扑的生理条件下诱导任何拓扑结构(松弛,正向或负向超螺旋)的DNA分子负超卷。 Sso7d的结合可诱导正超螺旋和松弛DNA分子的压实,但不会诱导负超螺旋的DNA分子的压实。最后,Sso7d抑制嗜热菌特异性酶反向旋回酶的正超螺旋活性。这些观察结果的生物学相关性是,这些蛋白质可能模拟了染色质环境中DNA的行为。

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