Interstitial deletion of the endothelin-B receptor gene in the spotting lethal (sl) rat.

IF 3.1 2区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
I Ceccherini, A L Zhang, I Matera, G Yang, M Devoto, G Romeo, D T Cass
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引用次数: 78

Abstract

The autosomal recessive spotting lethal (sl) rat phenotype is characterized by absence of intramural ganglion cells in the entire colon and distal small bowel, thus resembling the human Hirschsprung (HSCR) disease. A strategy for identifying the gene responsible for this rat defect was initiated by backcrossing DA x sl rats. After excluding linkage with two candidate genes, RET and Endothelin-3 (EDN3), a highly significant lod score (Z = 47.05 at theta = 0) was found between the Endothelin-B Receptor (EDNRB) gene and the sl phenotype. The exon-intron structure of this rat gene was reconstructed and each exon of the sl rat was screened for possible mutations. A 301 bp interstitial deletion, encompassing the distal half of the first coding exon (exon 2) and the proximal part of the adjacent intron, was demonstrated. This deletion results in two transcriptional products, 270 and 238 bp shorter than wild type cDNA. The discovery of the molecular defect underlying the sl rat phenotype should contribute to the understanding of the genetic heterogeneity of HSCR in man.

斑点致死大鼠内皮素- b受体基因的间质性缺失。
常染色体隐性斑点致死性(sl)大鼠表型的特征是在整个结肠和远端小肠中缺乏壁内神经节细胞,因此与人类巨结肠(HSCR)疾病相似。一种鉴定导致这种大鼠缺陷的基因的策略是通过回交DA x sl大鼠发起的。在排除与RET和内皮素-3 (EDN3)两个候选基因的连锁后,发现内皮素- b受体(EDNRB)基因与sl表型之间存在极显著的负荷评分(Z = 47.05, theta = 0)。重建了该大鼠基因的外显子-内含子结构,并对sl大鼠的每个外显子进行了可能的突变筛选。一个301 bp的间隙缺失,包括第一个编码外显子的远端一半(外显子2)和相邻内含子的近端部分。这种缺失导致两个转录产物分别比野生型cDNA短270和238 bp。sl大鼠表型的分子缺陷的发现应该有助于理解人类HSCR的遗传异质性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Human molecular genetics
Human molecular genetics 生物-生化与分子生物学
CiteScore
6.90
自引率
2.90%
发文量
294
审稿时长
2-4 weeks
期刊介绍: Human Molecular Genetics concentrates on full-length research papers covering a wide range of topics in all aspects of human molecular genetics. These include: the molecular basis of human genetic disease developmental genetics cancer genetics neurogenetics chromosome and genome structure and function therapy of genetic disease stem cells in human genetic disease and therapy, including the application of iPS cells genome-wide association studies mouse and other models of human diseases functional genomics computational genomics In addition, the journal also publishes research on other model systems for the analysis of genes, especially when there is an obvious relevance to human genetics.
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