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Telomere associated primase Tap repairs truncated telomeres of Streptomyces

机译:端粒相关的primase Tap修复截断的链霉菌菌

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Replication of the linear chromosomes of soil bacteria Streptomyces proceeds from an internal origin towards the telomeres, followed by patching of the resulting terminal single-strand overhangs by DNA synthesis using terminal proteins as the primer, which remains covalently bound to the 5' ends of the DNA. In most Streptomyces chromosomes, the end patching requires the single-strand overhangs, terminal protein Tpg, and terminal associated protein Tap. The telomere overhangs contain several palindromic sequences capable of forming stable hairpins. Previous in vitro deoxynucleotidylation studies indicated that Tap adds the Palindrome I sequence to Tpg, which is extended by a polymerase to fill the gap. In this study, the stringency of Palindrome I sequencewas examined by anin vitro deoxynucleotidylation system and in vivo replication. Several nt in Palindrome I were identified to be critical for priming. While the first 3 G on the template were required for deoxynucleotidylation in vitro, deletions of them could be suppressed by the presence of dGTP. In vivo, deletions of these G were also tolerated, and the telomere sequencewas restored in the linear plasmid DNA. Our results indicated that the truncated telomeres were repaired by extension synthesis by Tap on the foldback Palindrome I sequence.
机译:土壤细菌的线性染色体的复制从朝向端粒的内部起源进行,然后通过使用末端蛋白作为引物通过DNA合成来修补所得末端单链突出,其保持与5'末端共价结合脱氧核糖核酸。在大多数链霉菌染色体中,最终贴片需要单链突出,末端蛋白TPG和末端相关蛋白质。端粒突出含有几种能够形成稳定发夹的回文序列。先前的体外脱氧核苷酸化研究表明,Tap将回文I序列加入TPG,其由聚合酶延伸以填充间隙。在这项研究中,通过Anin体外脱氧核苷酸化系统和体内复制检查的回族I序列的严格性。在回文中,我被认为是对引发至关重要的。虽然在体外脱氧核苷酸所需的前3g脱氧核苷酸化,但可以通过DGTP的存在抑制它们的缺失。在体内,还耐受这些G的缺失,并且在线性质粒DNA中恢复端粒序列。我们的结果表明,截短的端粒通过敲击折叠回文I序列进行延伸合成修复。

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