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8-氧代腺嘌呤抑制DNA糖基化酶Fpg、Nth以及AP核酸内切酶HAP1对脱嘌呤嘧啶位点的切割。

8-OxoA inhibits the incision of an AP site by the DNA glycosylases Fpg, Nth and the AP endonuclease HAP1.

作者信息

Lomax Martine E, Salje Henrik, Cunniffe Siobhan, O'Neill Peter

机构信息

Medical Research Council, Radiation and Genome Stability Unit, Harwell, Didcot, Oxfordshire, OX11 0RD, United Kingdom.

出版信息

Radiat Res. 2005 Jan;163(1):79-84. doi: 10.1667/rr3284.

Abstract

Ionizing radiation induces clustered DNA damage sites, whereby two or more individual DNA lesions are formed within one or two helical turns of DNA by a single radiation track. A subset of DNA clustered damage sites exist in which the lesions are located in tandem on the same DNA strand. Recent studies have established that two closely opposed lesions impair the repair machinery of the cell, but few studies have investigated the processing of tandem lesions. In this study, synthetic double-stranded oligonucleotides were synthesized to contain 8-oxoA and an AP site in tandem, separated by up to four bases in either a 5' or 3' orientation. The influence 8-oxoA has on the incision of the AP site by the E. coli glycosylases Fpg and Nth protein and the human AP endonuclease HAP1 was assessed. 8-OxoA has little or no effect on the efficiency of incision of the AP site by Nth protein; however, the efficiency of incision of the AP site by Fpg protein is reduced in the presence of 8-oxoA even up to a four-base separation in both the 5' and 3' orientations. 8-OxoA influences the efficiency of HAP1 incision of the AP site only when it is 3' to the AP site and separated by up to two bases. This study demonstrates that the initial stages of base excision repair can be impaired by the presence of a second base lesion in proximity to an AP site on the same DNA strand. This impairment could have biological consequences, such as mutation induction, if the AP site is present at replication.

摘要

电离辐射会诱导形成簇状DNA损伤位点,即单个辐射径迹在DNA的一或两个螺旋圈内形成两个或更多个单独的DNA损伤。存在一部分DNA簇状损伤位点,其中的损伤在同一条DNA链上串联排列。最近的研究表明,两个紧密相邻的损伤会损害细胞的修复机制,但很少有研究调查串联损伤的处理过程。在本研究中,合成了双链寡核苷酸,使其串联包含8-氧代腺嘌呤(8-oxoA)和一个脱嘌呤/脱嘧啶位点(AP位点),二者在5'或3'方向上最多相隔四个碱基。评估了8-氧代腺嘌呤对大肠杆菌糖基化酶Fpg和Nth蛋白以及人AP内切核酸酶HAP1切割AP位点的影响。8-氧代腺嘌呤对Nth蛋白切割AP位点的效率几乎没有影响;然而,在存在8-氧代腺嘌呤的情况下,即使在5'和3'方向上相隔多达四个碱基,Fpg蛋白切割AP位点的效率也会降低。只有当8-氧代腺嘌呤在AP位点的3'端且相隔多达两个碱基时,它才会影响HAP1对AP位点的切割效率。本研究表明,在同一条DNA链上,AP位点附近存在第二个碱基损伤会损害碱基切除修复的初始阶段。如果复制时存在AP位点,这种损害可能会产生生物学后果,如诱导突变。

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