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The structural and functional characterization of human RecQ4 reveals insights into its helicase mechanism

机译:人类RecQ4的结构和功能表征揭示了其解旋酶机制的见解

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摘要

RecQ4 is a member of the RecQ helicase family, an evolutionarily conserved class of enzymes, dedicated to preserving genomic integrity by operating in telomere maintenance, DNA repair and replication. While reduced RecQ4 activity is associated with cancer predisposition and premature aging, RecQ4 upregulation is related to carcinogenesis and metastasis. Within the RecQ family, RecQ4 assumes an exceptional position, lacking several characteristic RecQ domains. Here we present the crystal structure of human RecQ4, encompassing the conserved ATPase core and a novel C-terminal domain that lacks resemblance to the RQC domain observed in other RecQ helicases. The new domain features a zinc-binding site and two distinct types of winged-helix domains, which are not involved in canonical DNA binding or helicase activity. Based on our structural and functional analysis, we propose that RecQ4 exerts a helicase mechanism, which may be more closely related to bacterial RecQ helicases than to its human family members.
机译:RecQ4是RecQ解旋酶家族的一员,该家族是进化上保守的一类酶,致力于通过端粒的维护,DNA修复和复制来维护基因组的完整性。虽然RecQ4活性降低与癌症易感性和过早衰老相关,但RecQ4上调与癌变和转移有关。在RecQ系列中,RecQ4处于一个特殊的位置,缺少几个典型的RecQ域。在这里,我们介绍了人类RecQ4的晶体结构,包括保守的ATPase核心和一个新颖的C末端结构域,该结构与其他RecQ解旋酶中所见的RQC结构域缺乏相似性。新的域具有锌结合位点和两种不同类型的带翼螺旋域,它们不参与规范的DNA结合或解旋酶活性。基于我们的结构和功能分析,我们建议RecQ4发挥解旋酶机制,这可能与细菌RecQ解旋酶更紧密相关,而不是与其人类家族成员更紧密相关。

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