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A DinB variant reveals diverse physiological consequences of incomplete TLS extension by a Y-family DNA polymerase

机译:DinB变体揭示了Y家族DNA聚合酶不完全TLS延伸的多种生理后果

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摘要

The only Y-family DNA polymerase conserved among all domains of life, DinB and its mammalian ortholog pol κ, catalyzes proficient bypass of damaged DNA in translesion synthesis (TLS). Y-family DNA polymerases, including DinB, have been implicated in diverse biological phenomena ranging from adaptive mutagenesis in bacteria to several human cancers. Complete TLS requires dNTP insertion opposite a replication blocking lesion and subsequent extension with several dNTP additions. Here we report remarkably proficient TLS extension by DinB from Escherichia coli. We also describe a TLS DNA polymerase variant generated by mutation of an evolutionarily conserved tyrosine (Y79). This mutant DinB protein is capable of catalyzing dNTP insertion opposite a replication-blocking lesion, but cannot complete TLS, stalling three nucleotides after an N2-dG adduct. Strikingly, expression of this variant transforms a bacteriostatic DNA damaging agent into a bactericidal drug, resulting in profound toxicity even in a dinB+ background. We find that this phenomenon is not exclusively due to a futile cycle of abortive TLS followed by exonucleolytic reversal. Rather, gene products with roles in cell death and metal homeostasis modulate the toxicity of DinB(Y79L) expression. Together, these results indicate that DinB is specialized to perform remarkably proficient insertion and extension on damaged DNA, and also expose unexpected connections between TLS and cell fate.
机译:DinB及其哺乳动物直向同源物polκ是生命中所有领域中唯一保守的Y家族DNA聚合酶,可催化跨损伤合成(TLS)中受损DNA的有效旁路。 Y家族的DNA聚合酶(包括DinB)与多种生物学现象有关,从细菌的适应性诱变到几种人类癌症。完整的TLS要求在复制阻止病灶的对面插入dNTP,并随后添加多个dNTP进行扩展。在这里,我们报道了来自大肠杆菌的DinB非常出色的TLS扩展。我们还描述了由进化保守酪氨酸(Y79)突变产生的TLS DNA聚合酶变体。这种突变的DinB蛋白能够催化dNTP插入与复制阻断病变相对的位置,但不能完成TLS,在Nsup2 -dG加合物后停滞了三个核苷酸。令人惊讶的是,该变体的表达将抑菌DNA破坏剂转化为杀菌药,即使在dinB + 背景下也产生了深远的毒性。我们发现这种现象不仅是由于无效的流产TLS循环,然后是核酸外切逆转。而是,在细胞死亡和金属稳态中起作用的基因产物调节DinB(Y79L)表达的毒性。总之,这些结果表明DinB专门用于在受损的DNA上进行非常熟练的插入和延伸,并且还暴露了TLS与细胞命运之间的意外连接。

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