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首页> 外文期刊>FEBS letters. >Structural peculiarities of the (MHF1-MHF2)4 octamer provide a long DNA binding patch to anchor the MHF-FANCM complex to chromatin: A solution SAXS study
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Structural peculiarities of the (MHF1-MHF2)4 octamer provide a long DNA binding patch to anchor the MHF-FANCM complex to chromatin: A solution SAXS study

机译:SAXS解决方案:(MHF1-MHF2)4八聚体的结构特点提供了长DNA结合斑块,可将MHF-FANCM复合物锚定在染色质上

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摘要

MHF1 and MHF2 are histone-fold-containing FANCM-associated proteins. FANCM is a Fanconi anemia (FA) complementation group protein. We previously obtained high-resolution structures of MHF1-MHF2 (MHF) and MHF in complex with a fragment of FANCM (MHF-FANCM-F). Here, we use small angle X-ray scattering (SAXS) to investigate the solution behaviors of these protein complexes. In combination with crystallographic data, the results of the SAXS study reveal that a long, positively charged patch exposed on the surface of the MHF complex plays a critical role in double-stranded DNA (dsDNA) binding.
机译:MHF1和MHF2是含组蛋白折叠的FANCM相关蛋白。 FANCM是Fanconi贫血(FA)补充组蛋白。我们先前获得了具有FANCM片段(MHF-FANCM-F)的MHF1-MHF2(MHF)和MHF的高分辨率结构。在这里,我们使用小角度X射线散射(SAXS)来研究这些蛋白质复合物的溶液行为。结合晶体学数据,SAXS研究的结果表明,暴露于MHF复合物表面的长而带正电荷的贴剂在双链DNA(dsDNA)结合中起关键作用。

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