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先天性双侧输精管缺如的分子诊断:对64例法国患者CFTR基因的分析

Molecular diagnosis of congenital bilateral absence of the vas deferens: analyses of the CFTR gene in 64 French patients.

作者信息

Bienvenu T, Adjiman M, Thiounn N, Jeanpierre M, Hubert D, Lepercoq J, Francoual C, Wolf J, Izard V, Jouannet P, Kaplan J C, Beldjord C

机构信息

Laboratoire de Biochimie Génétique, Hôpital Cochin.

出版信息

Ann Genet. 1997;40(1):5-9.

PMID:9150843
Abstract

Congenital bilateral absence of the vas deferens is a congenital reproductive disorder that affects about one in 1000 male individuals. Screening of the entire coding and flanking sequences of the cystic fibrosis transmembrane conductance regulator (CFTR) gene in 64 males with CBAVD revealed that in only 23% CBAVD was caused by two CFTR mutations. The 5T allele in one copy, that causes reduced levels of the normal CFTR protein, in combination with a CFTR mutation in the other copy, was one of the most common causes of CBAVD. Twenty six per cent of men with CBAVD had the 5T allele. The presence of only one CFTR mutation or the 5T allele in 34% of patients suggests that undetected changes in CFTR may be involved in CBAVD. These molecular defects are probably mutations with partial penetrance. Moreover, the high proportion (20%) of patients with CBAVD who did not have CFTR mutations or the 5T allele allows to propose that another gene or genes could be responsible for CBAVD. In these cases, in vitro fertilization may be required and the genetic counselling appears to be very complex and additional studies, including CFTR mRNA and linkage analyses, are required to resolve these questions.

摘要

先天性双侧输精管缺如是一种先天性生殖系统疾病,每1000名男性中约有1人受其影响。对64名患有先天性双侧输精管缺如的男性进行囊性纤维化跨膜传导调节因子(CFTR)基因的整个编码序列和侧翼序列筛查后发现,只有23%的先天性双侧输精管缺如是由两个CFTR突变引起的。一个拷贝中的5T等位基因会导致正常CFTR蛋白水平降低,与另一个拷贝中的CFTR突变共同作用,是先天性双侧输精管缺如最常见的病因之一。26%患有先天性双侧输精管缺如的男性携带5T等位基因。34%的患者仅存在一个CFTR突变或5T等位基因,这表明CFTR中未被检测到的变化可能与先天性双侧输精管缺如有关。这些分子缺陷可能是具有部分外显率的突变。此外,20%患有先天性双侧输精管缺如的患者既没有CFTR突变也没有5T等位基因,这表明可能有其他一个或多个基因导致先天性双侧输精管缺如。在这些情况下,可能需要进行体外受精,而且遗传咨询似乎非常复杂,需要进行包括CFTR mRNA和连锁分析在内的更多研究来解决这些问题。

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