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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A Method of Estimating the Numbers of Human and Mouse Immunoglobulin V-Genes
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A Method of Estimating the Numbers of Human and Mouse Immunoglobulin V-Genes

机译:一种估计人和小鼠免疫球蛋白V基因数目的方法

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Mutations in immunoglobulin V-genes can be due to gene multiplication, allelic variations, mutations induced by antigens or somatic mutations, etc., and various combinations of these. Since the number of different mouse lambda light V-gene nucleotide sequences is relatively small, a pairwise comparison between these sequences can provide a rough idea as to the contributions of the above mechanisms to the number of nucleotide differences between sequences. A plot of occurrences against the number of differences suggests that differences between one to five can be attributed to somatic mutations. Six to 12 differences can be allelic. Thirteen to 17 may be due to allelic variations together with somatic mutations. Differences 17 appear to be derived from gene multiplication. Although these numbers are most likely somewhat different in humans, they can nevertheless provide a rough guide to sort out the effect of gene multiplication. Estimations of human heavy, kappa and lambda light chain immunoglobulin V-genes are in reasonably good agreement with recent experimental studies. For mouse kappa light and heavy chains, our estimations can provide some insight to future analyses by direct sequencing of these gene segments.
机译:免疫球蛋白V基因的突变可能是由于基因繁殖,等位基因变异,由抗原诱导的突变或体细胞突变等,以及它们的各种组合。由于不同的小鼠λ轻V基因核苷酸序列的数目相对较小,因此这些序列之间的成对比较可以提供关于上述机制对序列之间核苷酸差异数目的贡献的粗略思想。相对于差异数量的出现图表明,一到五个之间的差异可以归因于体细胞突变。 6到12个差异可以是等位基因。十三到十七岁可能是由于等位基因变异以及体细胞突变。差异> 17似乎来自基因倍增。尽管这些数字在人类中极有可能有所不同,但是它们仍然可以提供一个粗略的指导,以理清基因倍增的作用。人类重链,κ和λ轻链免疫球蛋白V基因的估计与最近的实验研究相当吻合。对于小鼠κ轻链和重链,我们的估计可以通过对这些基因片段进行直接测序来为将来的分析提供一些见识。

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