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小鼠先天性脑积水(ch/Mf1)突变的多效性骨骼和眼部表型源自一个翼状螺旋/叉头转录因子基因。

Pleiotropic skeletal and ocular phenotypes of the mouse mutation congenital hydrocephalus (ch/Mf1) arise from a winged helix/forkhead transcriptionfactor gene.

作者信息

Hong H K, Lass J H, Chakravarti A

机构信息

Department of Genetics BRB 721 and Center for Human Genetics, Case Western Reserve University School of Medicine and University Hospitals of Cleveland, 10900 Euclid Avenue, Cleveland, OH 44106-4955, USA.

出版信息

Hum Mol Genet. 1999 Apr;8(4):625-37. doi: 10.1093/hmg/8.4.625.

Abstract

Congenital hydrocephalus is an etiologically diverse, poorly understood, but relatively common birth defect. Most human cases are sporadic with familial forms showing considerable phenotypic and etiologic heterogeneity. We have studied the autosomal recessive mouse mutation congenital hydrocephalus ( ch ) to identify candidate human hydrocephalus genes and their modifiers. ch mice have a congenital, lethal hydrocephalus in association with multiple developmental defects, notably skeletal defects, in tissues derived from the cephalic neural crest. We utilized positional cloning methods to map ch in the vicinity of D13Mit294 and confirm that the ch phenotype is caused by homozygosity for a nonsense mutation in a gene encoding a winged helix/forkhead transcription factor ( Mf1 ). Based on linked genetic markers, we performed detailed phenotypic characterization of mutant homozygotes and heterozygotes to demonstrate the pleiotropic effects of the mutant gene. Surprisingly, ch heterozygotes have the glaucoma-related distinct phenotype of multiple anterior segment defects resembling Axenfeld-Rieger anomaly. We also localized a second member of this gene family ( Hfh1 ), a candidate for other developmental defects, approximately 470 kb proximal to Mf1.

摘要

先天性脑积水是一种病因多样、了解甚少但相对常见的出生缺陷。大多数人类病例为散发性,家族性形式表现出相当大的表型和病因异质性。我们研究了常染色体隐性小鼠突变先天性脑积水(ch),以确定人类脑积水候选基因及其修饰基因。ch小鼠患有先天性致死性脑积水,并伴有多种发育缺陷,尤其是源自头部神经嵴的组织中的骨骼缺陷。我们利用定位克隆方法将ch定位到D13Mit294附近,并证实ch表型是由编码翼状螺旋/叉头转录因子(Mf1)的基因中的无义突变纯合所致。基于连锁遗传标记,我们对突变纯合子和杂合子进行了详细的表型特征分析,以证明突变基因的多效性作用。令人惊讶的是,ch杂合子具有与青光眼相关的独特表型,即多个眼前节缺陷,类似于Axenfeld-Rieger异常。我们还将该基因家族的第二个成员(Hfh1)定位到Mf1近端约470 kb处,它是其他发育缺陷的一个候选基因。

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