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Meiotic Segregation Analysis of RB1 Alleles in Retinoblastoma Pedigrees by Use of Single-Sperm Typing

机译:视网膜母细胞瘤谱系中RB1等位基因的减数分裂分离的单精子分型分析

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摘要

In hereditary retinoblastoma, different epidemiological studies have indicated a preferential paternal transmission of mutant retinoblastoma alleles to offspring, suggesting the occurrence of a meiotic drive. To investigate this mechanism, we analyzed sperm samples from six individuals from five unrelated families affected with hereditary retinoblastoma. Single-sperm typing techniques were performed for each sample by study of two informative short tandem repeats located either in or close to the retinoblastoma gene (RB1). The segregation probability of mutant RB1 alleles in sperm samples was assessed by use of the SPERMSEG program, which includes experimental parameters, recombination fractions between the markers, and segregation parameters. A total of 2,952 single sperm from the six donors were analyzed. We detected a significant segregation distortion in the data as a whole (P=.0099) and a significant heterogeneity in the segregation rate across donors (.0092). Further analysis shows that this result can be explained by segregation distortion in favor of the normal allele in one donor only and that it does not provide evidence of a significant segregation distortion in the other donors. The segregation distortion favoring the mutant RB1 allele does not seem to occur during spermatogenesis, and, thus, meiotic drive may result either from various mechanisms, including a fertilization advantage or a better mobility in sperm bearing a mutant RB1 gene, or from the existence of a defectively imprinted gene located on the human X chromosome.
机译:在遗传性视网膜母细胞瘤中,不同的流行病学研究表明,突变性视网膜母细胞瘤等位基因优先通过父系传播给子代,提示发生减数分裂驱动。为了研究这种机制,我们分析了来自遗传性视网膜母细胞瘤的五个无关家庭的六个人的精子样本。通过研究位于视网膜母细胞瘤基因(RB1)或附近的两个信息性短串联重复序列,对每个样品进行单精子分型技术。使用SPERMSEG程序评估了精子样本中突变RB1等位基因的分离概率,该程序包括实验参数,标记之间的重组比例和分离参数。分析了来自六个供体的总共2,952个单精子。我们在整个数据中检测到明显的偏析畸变(P = .0099),并且在各个供体之间的偏析率中存在明显的异质性(.0092)。进一步的分析表明,该结果只能通过偏向于一个供体中正常等位基因的偏析来解释,而不能提供另一只供体中明显偏析的证据。有利于突变型RB1等位基因的偏析似乎不会在精子发生过程中发生,因此,减数分裂驱动可能是由多种机制导致的,包括受精优势或携带突变型RB1基因的精子中更好的迁移性,或由于位于人类X染色体上的缺陷印迹基因。

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