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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >A telomerase-associated RecQ protein-like helicase resolves telomeric G-quadruplex structures during replication
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A telomerase-associated RecQ protein-like helicase resolves telomeric G-quadruplex structures during replication

机译:端粒酶相关的RecQ蛋白样解旋酶解析复制过程中的端粒G-四链体结构。

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摘要

It is well established that G-quadruplex DNA structures form at ciliate telomeres and their formation throughout the cell-cycle by telomere-end-binding proteins (TEBPs) has been analyzed. During replication telomeric G-quadruplex structure has to be resolved to allow telomere replication by telomerase. It was shown that both phosphorylation of TEBPβ and binding of telomerase are prerequisites for this process, but probably not sufficient to unfold G-quadruplex structure in timely manner to allow replication to proceed. Here we describe a RecQ-like helicase required for unfolding of G-quadruplex structures in vivo. This helicase is highly reminiscent of human RecQ protein-like 4 helicase as well as other RecQ-like helicase found in various eukaryotes and E. coli. In situ analyses combined with specific silencing of either the telomerase or the helicase by RNAi and co-immunoprecipitation experiments demonstrate that this helicase is associated with telomerase during replication and becomes recruited to telomeres by this enzyme. In vitro assays showed that a nuclear extract prepared from cells in S-phase containing both the telomerase as well as the helicase resolves telomeric G-quadruplex structure. This finding can be incorporated into a mechanistic model about the replication of telomeric G-quadruplex structures during the cell cycle.
机译:公认的是,G-四链体DNA结构在纤毛端粒上形成,并且已经分析了它们在整个细胞周期中通过端粒末端结合蛋白(TEBP)的形成。在复制过程中,必须解析端粒G-四链体结构以允许端粒通过端粒酶复制。已经表明,TEBPβ的磷酸化和端粒酶的结合都是该过程的先决条件,但可能不足以及时地展开G-四链体结构以允许复制进行。在这里,我们描述了体内G-四链体结构展开所需的RecQ样解旋酶。这种解旋酶高度让人联想到在各种真核生物和大肠杆菌中发现的人类RecQ蛋白样4解旋酶以及其他RecQ类解旋酶。原位分析与RNAi对端粒酶或解旋酶的特异性沉默相结合,并进行了免疫共沉淀实验,证明该解旋酶在复制过程中与端粒酶相关,并被该酶募集到端粒中。体外试验表明,从S期细胞中制备的含有端粒酶和解旋酶的核提取物可分辨端粒G-四链体结构。可以将这一发现纳入关于细胞周期中端粒G-四链体结构复制的机制模型。

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