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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Fork stalling and template switching as a mechanism for polyalanine tract expansion affecting the DYC mutant of HOXD13, a new murine model of synpolydactyly.
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Fork stalling and template switching as a mechanism for polyalanine tract expansion affecting the DYC mutant of HOXD13, a new murine model of synpolydactyly.

机译:叉失速和模板转换作为聚丙氨酸域扩展影响HOXD13 DYC突变体的一种机制,HOXD13是一种新的多聚鼠模型。

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摘要

Polyalanine expansion diseases are proposed to result from unequal crossover of sister chromatids that increases the number of repeats. In this report we suggest an alternative mechanism we put forward while we investigated a new spontaneous mutant that we named "Dyc" for "Digit in Y and Carpe" phenotype. Phenotypic analysis revealed an abnormal limb patterning similar to that of the human inherited congenital disease synpolydactyly (SPD) and to the mouse mutant model Spdh. Both human SPD and mouse Spdh mutations affect the Hoxd13 gene within a 15-residue polyalanine-encoding repeat in the first exon of the gene, leading to a dominant negative HOXD13. Genetic analysis of the Dyc mutant revealed a trinucleotide expansion in the polyalanine-encoding region of the Hoxd13 gene resulting in a 7-alanine expansion. However, unlike the Spdh mutation, this expansion cannot result from a simple duplication of a short segment. Instead, we propose the fork stalling and template switching (FosTeS) described for generation of nonrecurrent genomic rearrangements as a possible mechanism for the Dyc polyalanine extension, as well as for other polyalanine expansions described in the literature and that could not be explained by unequal crossing over.
机译:聚丙氨酸扩增疾病被认为是由于姐妹染色单体不平等交换导致重复次数增加所致。在本报告中,我们提出了一种替代机制,该机制是在我们研究一种新的自发突变体时提出的,我们将其命名为“ Dyc in Y and Carpe”表型。表型分析揭示了异常的肢体形态,类似于人类遗传性先天性疾病polydactyly(SPD)和小鼠突变模型Spdh的形态。人SPD和小鼠Spdh突变都会在该基因的第一个外显子中15个残基的聚丙氨酸编码重复序列中影响Hoxd13基因,从而导致显性负HOXD13。 Dyc突变体的遗传分析显示Hoxd13基因的聚丙氨酸编码区域中的三核苷酸扩展,导致7-丙氨酸扩展。但是,与Spdh突变不同,这种扩展不能由短片段的简单复制引起。取而代之的是,我们提出将叉子停滞和模板转换(FosTeS)描述为用于非周期性基因组重排的生成,作为Dyc聚丙氨酸扩展以及文献中描述的其他聚丙氨酸扩展的一种可能机制,并且不能用不相等的杂交来解释过度。

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