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The Nucleoid-Associated Protein GapR Uses Conserved Structural Elements To Oligomerize and Bind DNA

机译:核相关蛋白质GapR使用保守的结构元素来脱氧和结合DNA

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摘要

Nucleoid-associated proteins (NAPs) are DNA binding proteins critical for the organization and function of the bacterial chromosome. A newly discovered NAP in Caulobacter crescentus , GapR, is thought to facilitate the movement of the replication and transcription machines along the chromosome by stimulating type II topoisomerases to remove positive supercoiling. Here, utilizing genetic, biochemical, and biophysical studies of GapR in light of a recently published DNA-bound crystal structure of GapR, we identified the structural elements involved in oligomerization and DNA binding. Moreover, we show that GapR is maintained as a tetramer upon its dissociation from DNA and that tetrameric GapR is capable of binding DNA molecules in vitro . Analysis of protein chimeras revealed that two helices of GapR are functionally conserved in H-NS, demonstrating that two evolutionarily distant NAPs with distinct mechanisms of action utilize conserved structural elements to oligomerize and bind DNA.
机译:核相关蛋白(抽头)是DNA结合蛋白对细菌染色体的组织和功能至关重要。据认为,在Cailobacter Crescentus,GapR中的午睡,通过刺激II型拓扑异构酶来促进复制和转录机沿染色体的运动,以除去正超级铜。在这里,利用借助于GAPR的GAPR的遗传,生化和生物物理学研究,我们鉴定了寡聚化和DNA结合所涉及的结构元素。此外,我们表明,在其与DNA的解离后,将GaPR保持为四聚体,并且四聚聚光棒率能够在体外结合DNA分子。蛋白质嵌合体的分析显示,在H-NS中,两个螺旋在功能上在功能上保守,证明具有不同的动作机制的两个进化的远离抽搐利用保守的结构元素来利用寡发和结合DNA。

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