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Polymerase θ is a robust terminal transferase that oscillates between three different mechanisms during end-joining

机译:聚合酶θ是一个强大的末端转移酶在末端连接过程中会在三种不同机制之间振荡

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摘要

DNA polymerase θ (Polθ) promotes insertion mutations during alternative end-joining (alt-EJ) by an unknown mechanism. Here, we discover that mammalian Polθ transfers nucleotides to the 3’ terminus of DNA during alt-EJ in vitro and in vivo by oscillating between three different modes of terminal transferase activity: non-templated extension, templated extension in cis, and templated extension in trans. This switching mechanism requires manganese as a co-factor for Polθ template-independent activity and allows for random combinations of templated and non-templated nucleotide insertions. We further find that Polθ terminal transferase activity is most efficient on DNA containing 3’ overhangs, is facilitated by an insertion loop and conserved residues that hold the 3’ primer terminus, and is surprisingly more proficient than terminal deoxynucleotidyl transferase. In summary, this report identifies an unprecedented switching mechanism used by Polθ to generate genetic diversity during alt-EJ and characterizes Polθ as among the most proficient terminal transferases known.>DOI:
机译:DNA聚合酶θ(Polθ)通过未知机制促进了交替末端连接(alt-EJ)期间的插入突变。在这里,我们发现哺乳动物的Polθ在alt-EJ体内和体外通过在三种不同的末端转移酶活性模式之间进行振荡而将核苷酸转移至DNA的3'末端:非模板延伸,顺式模板延伸和顺式模板延伸。反式这种转换机制需要锰作为与Polθ模板无关的活性的辅助因子,并允许模板化和非模板化核苷酸插入的随机组合。我们进一步发现,Polθ末端转移酶活性在含有3'突出端的DNA上最有效,插入环和保留3'引物末端的保守残基会促进其活性,并且令人惊讶地比末端脱氧核苷酸转移酶更有效。总之,本报告确定了Polθ在alt-EJ期间用于产生遗传多样性的前所未有的转换机制,并将Polθ表征为已知的最熟练的末端转移酶之一。> DOI:

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