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Replication slippage versus point mutation rates in short tandem repeats of the human genome

机译:人类基因组短串联重复序列中复制滑移与点突变率的关系

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摘要

Short tandem repeats (STRs) are subjected to two kinds of mutational modifications: point mutations and replication slippages. The latter is found to be the more frequent cause of STR modifications, but a satisfactory quantitative measure of the ratio of the two processes has yet to be determined. The comparison of entire genome sequences of closely enough related species enables one to obtain sufficient statistics by counting the differences in the STR regions. We analyzed human-chimpanzee DNA sequence alignments to obtain the counts of point mutations and replication slippage modifications. The results were compared with the results of a computer simulation, and the parameters quantifying the replication slippage probability as well as the probabilities of point mutations within the repeats were determined. It was found that within the STRs with repeated units consisting of one, two or three nucleotides, point mutations occur approximately twice as frequently as one would expect on the basis of the 1.2% difference between the human and chimpanzee genomes. As expected, the replication slippage probability is negligible below a 10-bp threshold and grows above this level. The replication slippage events outnumber the point mutations by one or two orders of magnitude, but are still lower by one order of magnitude relative to the mutability of the markers that are used for genotyping purposes.
机译:短串联重复序列(STR)经历两种突变修饰:点突变和复制滑动。已发现后者是STR修饰的更常见原因,但是尚未确定令人满意的定量方法来衡量这两个过程的比率。比较足够接近的相关物种的整个基因组序列,使人们能够通过计算STR区的差异来获得足够的统计数据。我们分析了人黑猩猩的DNA序列比对,以获取点突变和复制滑移修饰的计数。将结果与计算机模拟的结果进行比较,并确定量化复制滑移概率以及重复中点突变概率的参数。发现在具有由1、2或3个核苷酸组成的重复单元的STR中,基于人和黑猩猩基因组之间1.2%的差异,点突变发生的频率大约是预期的两倍。正如预期的那样,复制滑移概率在10 bp阈值以下可以忽略不计,并在该水平以上增长。复制滑移事件比点突变的数量多一个或两个数量级,但相对于用于基因分型目的的标记的可变性而言,仍低一个数量级。

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