首页> 外文期刊>Philosophical Transactions B: Biological Sciences >The roles of APE1, APE2, DNA polymerase β and mismatch repair in creating S region DNA breaks during antibody class switch
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The roles of APE1, APE2, DNA polymerase β and mismatch repair in creating S region DNA breaks during antibody class switch

机译:APE1,APE2,DNA聚合酶β和错配修复在抗体类别转换过程中产生S区DNA断裂中的作用

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Immunoglobulin class switch recombination (CSR) occurs by an intrachromosomal deletion requiring generation of double-stranded DNA breaks (DSBs) in immunoglobulin switch region DNA. The initial steps of DSB formation have been elucidated: cytosine deamination by activation-induced cytidine deaminase (AID) and the generation of abasic sites by uracil-DNA glycosylase (UNG). We show that abasic sites are converted into single-strand breaks (SSBs) by apurinic/apyrimidinic endonucleases (APE1 and APE2). If SSBs are near to each other on opposite strands, they will generate DSBs; but if distal from each other, mismatch repair appears to be required to generate DSBs. The resulting S region DSBs occur at dC residues that are preferentially targeted by AID. We also investigate whether DNA polymerase β, which correctly repairs SSBs resulting from APE activity, attempts to repair the breaks during CSR. We find that although polymerase β does attempt to repair S region DNA breaks in switching B cells, the frequency of AID-instigated breaks appears to outnumber the SSBs repaired correctly by polymerase β, and thus some DSBs and mutations are generated. We also show that the S region DSBs are introduced and resolved during the G1 phase of the cell cycle.
机译:免疫球蛋白类别转换重组(CSR)通过染色体内缺失发生,需要在免疫球蛋白转换区DNA中产生双链DNA断裂(DSB)。阐明了DSB形成的初始步骤:通过激活诱导的胞苷脱氨酶(AID)进行胞嘧啶脱氨,并通过尿嘧啶DNA糖基化酶(UNG)产生无碱基位点。我们显示无碱基位点被嘌呤/嘧啶内切核酸酶(APE1和APE2)转换为单链断裂(SSBs)。如果SSB在相反的链上彼此靠近,它们将生成DSB。但是如果彼此相距遥远,则似乎需要进行失配修复才能生成DSB。所得的S区DSB出现在优先被AID靶向的dC残基上。我们还研究了DNA聚合酶β(它能正确修复APE活性产生的SSB)是否试图修复CSR期间的断裂。我们发现,尽管聚合酶β确实试图修复开关B细胞中的S区DNA断裂,但AID诱导断裂的频率似乎超过了聚合酶β正确修复的SSB的数目,因此产生了一些DSB和突变。我们还显示S区DSBs是在细胞周期的G1期引入和解析的。

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