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The fidelity of the human leading and lagging strand DNA replication apparatus with 8-oxodeoxyguanosine triphosphate.

机译:具有8氧代脱氧鸟苷三磷酸的人类前导和落后链DNA复制设备的保真度。

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摘要

A product of oxidative metabolism, 8-oxodeoxyguanosine triphosphate (8-O-dGTP), readily pairs with adenine during DNA replication, ultimately causing A.T-->C.G transversions. This study utilized 8-O-dGTP as a probe to examine the fidelity of the leading and lagging strand replication apparatus in extracts of HeLa cells. Simian virus (SV) 40 T antigen-dependent DNA replication reactions were performed with two M13mp2 vectors with the SV40 origin located on opposite sides of the lacZ alpha sequence used to score replication errors. The presence of 8-O-dGTP at equimolar concentration with each of the 4 normal dNTPs resulted in a > 46-fold increase in error rate for A.T-->C.G transversion over that observed in the absence of 8-O-dGTP. A similar average error rate was observed on the (+) and (-) strands in both vectors, suggesting that the fidelity of replication by leading and lagging strand replication proteins is similar for the dA.8-O-dGMP mispair. Replication fidelity in the presence of 8-O-dGTP was reduced on both strands when an inhibitor of exonucleolytic proofreading (dGMP) was added to the reaction. These data suggest that the majority of dA.8-O-dGMP mispairs are proofread by both leading and lagging strand replication proteins.
机译:氧化代谢的产物8-氧代脱氧鸟苷三磷酸(8-O-dGTP)在DNA复制过程中容易与腺嘌呤配对,最终导致A.T-> C.G转化。这项研究利用8-O-dGTP作为探针来检查HeLa细胞提取物中前导链和滞后链复制装置的保真度。用两个M13mp2载体进行猿猴病毒(SV)40 T抗原依赖性DNA复制反应,其中两个SV40起源位于lacZ alpha序列的相反侧,用于对复制错误进行评分。与4种正常dNTP中的每一种等摩尔浓度的8-O-dGTP的存在导致A.T-> C.G转化的错误率比没有8-O-dGTP的错误率增加> 46倍。在两个载体的(+)和(-)链上均观察到相似的平均错误率,这表明dA.8-O-dGMP错配导致前导链和滞后链复制蛋白的复制保真度相似。当将外切核酸校对(dGMP)抑制剂添加到反应中时,两条链上都存在8-O-dGTP的复制保真度。这些数据表明,大多数的dA.8-O-dGMP错误配对均由前导链和滞后链复制蛋白校对。

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