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首页> 外文期刊>FEMS Microbiology Letters >Inhibiting NAD(+)-dependent DNA ligase activity with 2-(cyclopentyloxy)-5 '-deoxyadenosine (CPOdA) offers a new tool for DNA replication and repair studies in the model archaeon Haloferax volcanii
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Inhibiting NAD(+)-dependent DNA ligase activity with 2-(cyclopentyloxy)-5 '-deoxyadenosine (CPOdA) offers a new tool for DNA replication and repair studies in the model archaeon Haloferax volcanii

机译:抑制NAD(+) - 依赖于2-(环戊氧基)-5'-丁氧基腺苷(CPODA)的DNA连接酶活性,提供了一种新的DNA复制和修复研究的新工具,在Archaeon Haloferax Volcanii模型中

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摘要

DNA ligases play an essential role in many aspects of DNA metabolism in all three domains of life. The haloarchaeal organism Haloferax volcanii encodes both ATP- and NAD(+)-dependent DNA ligase enzymes designated LigA and LigN, respectively. Neither LigA nor LigN alone is required for cell viability but they share an essential function, most likely the ligation of Okazaki fragments during chromosome replication. Here we show that 2-(cyclopentyloxy)-5'-deoxyadenosine (referred to as CPOdA), originally developed as a inhibitor of bacterial NAD(+)-dependent DNA ligases, is a potent inhibitor of the growth of Hfx. volcanii cells expressing LigN alone, causing chromosome fragmentation and cell death, while cells expressing LigA are unaffected. Growth inhibition occurs at significantly lower CPOdA concentrations (MIC <= 50 ng ml(-1)) than those required for inhibition of bacterial growth (>= 2 mu gml(-1)). CPOdA has the potential to become a vital tool in DNA replication and repair studies in this important model organism.
机译:DNA连接酶在所有三个生命领域的DNA代谢的许多方面都发挥着重要作用。 HaloAthaeal Organism Haloferax Volcanii分别编码ATP和NAD(+) - 依赖性DNA连接酶分别指定的LIGA和Lign。细胞活力需要lega和liga单独使用,但它们共享一个基本功能,最有可能在染色体复制期间结扎冈崎片段。在这里,我们表明,最初作为细菌NAD(+)依赖性DNA连接酶的抑制剂的2-(环戊氧基)-5'-脱氧腺苷(称为CPODA)是HFX生长的有效抑制剂。单独表达Ligning的Volcanii细胞,引起染色体碎片和细胞死亡,而表达LIGA的细胞不受影响。生长抑制在显着降低的CPODA浓度下发生(MIC <= 50ng ml(-1)),而不是抑制细菌生长所需的(> =2μgml(-1))。 CPODA有可能成为DNA复制和修复研究中的重要工具,在这一重要的模型生物体中。

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