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The effect of Pot1 binding on the repair of thymine analogs in a telomeric DNA sequence

机译:Pot1结合对端粒DNA序列中胸腺嘧啶类似物修复的影响

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Telomeric DNA can form duplex regions or single-stranded loops that bind multiple proteins, preventing it from being processed as a DNA repair intermediate. The bases within these regions are susceptible to damage; however, mechanisms for the repair of telomere damage are as yet poorly understood. We have examined the effect of three thymine (T) analogs including uracil (U), 5-fluorouracil (5FU) and 5-hydroxymethyluracil (5hmU) on DNA-protein interactions and DNA repair within the GGTTAC telomeric sequence. The replacement of T with U or 5FU interferes with Pot1 (Pot1pN protein of Schizosaccha-romyces pombe) binding. Surprisingly, 5hmU substitution only modestly diminishes Pot1 binding suggesting that hydrophobicity of the T-methyl group likely plays a minor role in protein binding. In the GGTTAC sequence, all three analogs can be cleaved by DNA glycosylases; however, glycosylase activity is blocked if Pot1 binds. An abasic site at the G or T positions is cleaved by the endonuclease APE1 when in a duplex but not when single-stranded. A basic site formation thermally destabilizes the duplex that could push a damaged DNA segment into a single-stranded loop. The inability to enzymatically cleave abasic sites in single-stranded telomere regions would block completion of the base excision repair cycle potentially causing telomere attrition.
机译:端粒DNA可以形成结合多个蛋白质的双链体区域或单链环,从而阻止其被加工为DNA修复中间体。这些区域内的基地容易受到破坏;然而,修复端粒损伤的机制仍知之甚少。我们已经检查了三种尿嘧啶(T)类似物,包括尿嘧啶(U),5-氟尿嘧啶(5FU)和5-羟甲基尿嘧啶(5hmU)对GGTTAC端粒序列内DNA-蛋白质相互作用和DNA修复的影响。用U或5FU替代T会干扰Pot1(裂殖酵母-romyces pombe的Pot1pN蛋白)结合。出乎意料的是,5hmU取代只会适度减少Pot1的结合,这表明T-甲基的疏水性可能在蛋白质结合中起次要作用。在GGTTAC序列中,所有三个类似物都可以被DNA糖基化酶切割。但是,如果Pot1结合,糖基化酶的活性就会被阻断。 G或T位置的无碱基位点在双链体中被内切核酸酶APE1切割,而在单链时则没有。基本位点的形成使双链体热不稳定,这可能会将受损的DNA片段推入单链环。无法在单链端粒区域内酶切无碱基位点将阻止碱基切除修复周期的完成,从而可能导致端粒磨损。

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