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The stacked-X DNA Holliday junction and protein recognition

机译:堆叠式X DNA Holliday连接和蛋白质识别

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摘要

The crystal structure of the four-stranded DNA Holliday junction has now been determined in the presence and absence of junction binding proteins, with the extended open-X form of the junction seen in all protein complexes, but the more compact stacked-X structure observed in free DNA. The structures of the stacked-X junction were crystallized because of an unexpected sequence dependence on the stability of this structure. Inverted repeat sequences that contain the general motif NCC or ANC favor formation of stacked-X junctions, with the junction cross-over occurring between the first two positions of the trinucleotides. This review focuses on the sequence dependent structure of the stacked-X junction and how it may play a role in structural recognition by a class of dimeric junction resolving enzymes that themselves show no direct sequence recognition.
机译:现在,在存在和不存在连接结合蛋白的情况下,确定了四链DNA霍利迪连接的晶体结构,在所有蛋白质复合物中都可以看到连接的扩展的开放X形式,但是观察到的结构更为紧凑在自由的DNA中。由于意外序列依赖于该结构的稳定性,因此使堆叠的X结的结构结晶。包含通用基序NCC或ANC的反向重复序列有助于形成堆叠的X连接,且连接交叉发生在三核苷酸的前两个位置之间。这篇综述着重于堆叠式X接头的序列依赖性结构,以及它如何在一类二聚体接头分辨酶本身不显示直接序列识别的结构识别中发挥作用。

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