多基因巨结肠病中内皮素- b受体基因错义突变。

IF 45.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Cell Pub Date : 1994-12-30 DOI:10.1016/0092-8674(94)90016-7
E G Puffenberger, K Hosoda, S S Washington, K Nakao, D deWit, M Yanagisawa, A Chakravart
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引用次数: 885

摘要

巨结肠病(HSCR)的特点是远端结肠缺乏肠神经节,胃肠道神经支配失败。我们最近在人类染色体13q22上定位了一个隐性易感位点(HSCR2),我们现在证明它是内皮素- b受体基因(EDNRB)。我们在HSCR患者中发现了EDNRB外显子4中的G- >T错义突变,该突变将G蛋白偶联受体第5跨膜螺旋上高度保守的Trp-276残基替换为Cys残基(W276C)。突变体W276C受体在转染细胞中表现出配体诱导的Ca2+瞬时水平的部分损伤。突变是剂量敏感的,W276C纯合子和杂合子发生HSCR的风险分别为74%和21%。Mennonite家系患者的基因型分析显示HSCR是一种多基因疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A missense mutation of the endothelin-B receptor gene in multigenic Hirschsprung's disease.

Hirschsprung's disease (HSCR) is characterized by an absence of enteric ganglia in the distal colon and a failure of innervation in the gastrointestinal tract. We recently mapped a recessive susceptibility locus (HSCR2) to human chromosome 13q22, which we now demonstrate to be the endothelin-B receptor gene (EDNRB). We identified in HSCR patients a G-->T missense mutation in EDNRB exon 4 that substitutes the highly conserved Trp-276 residue in the fifth transmembrane helix of the G protein-coupled receptor with a Cys residue (W276C). The mutant W276C receptor exhibited a partial impairment of ligand-induced Ca2+ transient levels in transfected cells. The mutation is dosage sensitive, in that W276C homozygotes and heterozygotes have a 74% and a 21% risk, respectively, of developing HSCR. Genotype analysis of patients in a Mennonite pedigree shows HSCR to be a multigenic disorder.

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来源期刊
Cell
Cell 生物-生化与分子生物学
CiteScore
110.00
自引率
0.80%
发文量
396
审稿时长
2 months
期刊介绍: Cells is an international, peer-reviewed, open access journal that focuses on cell biology, molecular biology, and biophysics. It is affiliated with several societies, including the Spanish Society for Biochemistry and Molecular Biology (SEBBM), Nordic Autophagy Society (NAS), Spanish Society of Hematology and Hemotherapy (SEHH), and Society for Regenerative Medicine (Russian Federation) (RPO). The journal publishes research findings of significant importance in various areas of experimental biology, such as cell biology, molecular biology, neuroscience, immunology, virology, microbiology, cancer, human genetics, systems biology, signaling, and disease mechanisms and therapeutics. The primary criterion for considering papers is whether the results contribute to significant conceptual advances or raise thought-provoking questions and hypotheses related to interesting and important biological inquiries. In addition to primary research articles presented in four formats, Cells also features review and opinion articles in its "leading edge" section, discussing recent research advancements and topics of interest to its wide readership.
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