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特发性男性不育症的遗传学:Y染色体无精子症因子(AZFa、AZFb、AZFc)

Genetics of idiopathic male infertility: Y chromosomal azoospermia factors (AZFa, AZFb, AZFc).

作者信息

Vogt P H

机构信息

Department of Reproduction Genetics, University of Heidelberg, Germany.

出版信息

Baillieres Clin Obstet Gynaecol. 1997 Dec;11(4):773-95. doi: 10.1016/s0950-3552(97)80013-2.

Abstract

Y chromosomal spermatogenesis loci in Yq11 are disrupted with a frequency of 5-20% in men suffering from idiopathic infertility (azoospermia or severe oligozoospermia). They were designated azoospermia factors (AZFa, AZFb, AZFc). An efficient schedule for their molecular diagnosis in each infertility clinic is presented. In addition, I will include our current knowledge about their biological function during human germ cell development and a description of their pathology in men suffering from deletion of one or more AZF loci. Each Y gene expressed in testis tissue and located in Yq11, in a position overlapping one of the AZF loci, is an AZF candidate gene. Their diagnostic analysis will be described in a separate section. The clinical diagnosis of AZF candidate genes cannot substitute for diagnosis of the genetically defined AZF loci. Therefore, analysis of candidate genes is aimed at answering the question of whether mutations in their exon structures are able to induce the same pathological phenotypes as deletion of the corresponding AZF locus. Only after these gene mutations have been analysed can the AZF candidate gene be designated as a real AZF gene. Therefore, the basic aim of our current research is isolation and identification of all AZF genes.

摘要

在患有特发性不育症(无精子症或严重少精子症)的男性中,Yq11区域的Y染色体精子发生位点被破坏的频率为5%-20%。这些位点被命名为无精子症因子(AZFa、AZFb、AZFc)。本文介绍了在每个不育症诊所对其进行分子诊断的有效方案。此外,我还将阐述我们目前对它们在人类生殖细胞发育过程中的生物学功能的了解,以及对患有一个或多个AZF位点缺失的男性患者其病理学特征的描述。每个在睾丸组织中表达且位于Yq11、与其中一个AZF位点重叠的Y基因,都是一个AZF候选基因。它们的诊断分析将在单独的部分进行描述。AZF候选基因的临床诊断不能替代对基因定义的AZF位点的诊断。因此,对候选基因的分析旨在回答其外显子结构中的突变是否能够诱导出与相应AZF位点缺失相同的病理表型这一问题。只有在对这些基因突变进行分析之后,AZF候选基因才能被认定为真正的AZF基因。因此,我们当前研究的基本目标是分离和鉴定所有的AZF基因。

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