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泥鳅发育过程中DNA合成与修复的变化

Alterations in Synthesis and Repair of DNA during the Development of Loach .

作者信息

Gening Leonid V, Lakhin Andrei V, Makarova Irina V, Nenasheva Valentina V, Andreeva Ludmila E, Tarantul Vyacheslav Z

机构信息

Institute of Molecular Genetics, Russian Academy of Sciences, 2 Kurchatov Square, 123182 Moscow, Russia.

出版信息

J Dev Biol. 2016 Jan 27;4(1):6. doi: 10.3390/jdb4010006.

Abstract

Using a modified radiolabeled primer extension method (we named this modification misGvA-"misincorporation of G A") we have investigated the DNA synthesis and repair at early and late stages of development of loach The misincorporation activity of DNA polymerase iota (Pol ι) in wild-type loach could not be detected by this method at any stage of loach development. In transgenic loach overexpressing human Pol ι we have shown that the bypassing of DNA synthesis arrest after incorporation of mismatched nucleotide by Pol ι (the T-stop) was not associated with this enzyme. Non-transgenic loach larvae are virtually lacking the capacity for error correction of DNA duplex containing a mismatched nucleotide. Such repair activity develops only in the adult fish. It appears that the initial stages of development are characterized by more intensive DNA synthesis, while in terminal stages the repair activities become more prominent. The misGvA approach clearly indicates substantial changes in the DNA synthesis intensity, although the role of particular replicative and repair DNA polymerases in this process requires further study.

摘要

使用一种改良的放射性标记引物延伸方法(我们将这种改良命名为misGvA——“G→A错掺入”),我们研究了泥鳅发育早期和晚期的DNA合成与修复。通过这种方法,在泥鳅发育的任何阶段都检测不到野生型泥鳅中DNA聚合酶ι(Pol ι)的错掺入活性。在过表达人Pol ι的转基因泥鳅中,我们发现Pol ι掺入错配核苷酸后DNA合成停滞的绕过(T-stop)与该酶无关。非转基因泥鳅幼虫几乎没有纠正含错配核苷酸的DNA双链体的能力。这种修复活性仅在成年鱼中发展。似乎发育的初始阶段以更强烈的DNA合成为特征,而在末期阶段修复活性变得更加突出。misGvA方法清楚地表明了DNA合成强度的显著变化,尽管特定的复制性和修复性DNA聚合酶在此过程中的作用需要进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3994/5831811/406ffc03f679/jdb-04-00006-g001.jpg

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