首页> 外文期刊>Nucleic Acids Research >Recognition but no repair of abasic site in single-stranded DNA by human ribosomal uS3 protein residing within intact 40S subunit
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Recognition but no repair of abasic site in single-stranded DNA by human ribosomal uS3 protein residing within intact 40S subunit

机译:识别但是通过人核糖体US3蛋白在完整的40s亚基内,无股DNA中的脱脂遗址的修复

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摘要

Isolated human ribosomal protein uS3 has extra-ribosomal functions including those related to base excision DNA repair, e.g. AP lyase activity that nicks double-stranded (ds) DNA 3' to the abasic (AP) site. However, the ability of uS3 residing within ribosome to recognize and cleave damaged DNA has never been addressed. Here, we compare interactions of single-stranded (ss) DNA and dsDNA bearing AP site with human ribosome-bound uS3 and with the isolated protein, whose interactions with ssDNA were not yet studied. The AP lyase activity of free uS3 was much higher with ssDNA than with dsDNA, whereas ribosome-bound uS3 was completely deprived of this activity. Nevertheless, an exposed peptide of ribosome-bound uS3 located far away from the putative catalytic center previously suggested for isolated uS3 cross-linked to full-length uncleaved ssDNA, but not to dsDNA. In contrast, free uS3 crosslinked mainly to the 5'-part of the damaged DNA strand after its cleavage at the AP site. ChIP-seq analysis showed preferential uS3 binding to nucleolus-associated chromatin domains. We conclude that free and ribosome-bound uS3 proteins interact with AP sites differently, exhibiting their non-translational functions in DNA repair in and around the nucleolus and in regulation of DNA damage response in looped DNA structures, respectively.
机译:分离的人核糖体蛋白质US3具有额外的核糖体功能,包括与基础切除DNA修复有关的核糖体功能,例如,如此。 AP Lyase活性将双链(DS)DNA 3'刻录到Abasic(AP)位点。然而,从未解决过核糖体内核糖体和裂开受损DNA的能力。在此,我们将单链(SS)DNA和DSDNA轴承AP位点与人核糖瘤结合US3和分离蛋白的相互作用进行比较,其与SSDNA的相互作用尚未研究。 Free US3的AP裂解酶活性与SSDNA高于DSDNA,而核糖体结合US3完全被剥夺了该活性。然而,核糖体结合US3的暴露肽位于远离推定的催化中心的核糖体 - 结合的US3,以前建议用于分离的US3与全长未切割的SSDNA交联,但不是DSDNA。相比之下,在AP位点切割后,Free US3主要在其裂解后的5'部分受损DNA链。 CHIP-SEQ分析显示优先US3与核仁相关的染色质域结合。我们的结论是自由和核糖体结合US3蛋白与AP位点不同地相互作用,表现出DNA修复其非平移功能和周围的核仁,并在环状DNA结构,分别为DNA损伤反应的调节。

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