首页> 外文期刊>Iranian Journal of Reproductive Medicine >CYTOGENETIC AND MOLECULAR GENETIC ANALYSIS OF DICENTRIC Y CHROMOSOME AND ITS RELATION TO MALE AZOOSPERMIA
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CYTOGENETIC AND MOLECULAR GENETIC ANALYSIS OF DICENTRIC Y CHROMOSOME AND ITS RELATION TO MALE AZOOSPERMIA

机译:二中心Y染色体的细胞遗传学和分子遗传学分析及其与男性无精子症的关系

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Background: Cytogenetic analysis, Y-chromosome microdeletion screening, FISH techniques and other genetic methods have helped in finding the causes of infertility in azoospermic or severe oligoazoospermic cases in the last decade.Objective: In the present study, we characterized an abnormal Y-chromosome, detected as a mosaic in an azoospermic male ascertained for infertility.Materials and Methods: Chromosome analysis, using G, Q and C banding techniques and FISH analyses with several different DNA probes specific for Y and X chromosome sequences [XY centromeric ?±-satellite, Y non-a-satellite III, LSI-probes of the Y chromosome, WCP of Chromosome Y, SRY gene, subtelomeric Xp and Yp, which cover the SHOX (short stature-homeobox containing) gene, and subtelomeric Xq and Yq probes] were performed. A total of 20 sequence tagged sites were analyzed using primer sets specific for the Y-chromosome microdeletion loci. The primers were chosen to cover AZFa, AZFb, and AZFc regions as well as the SRY gene.Results: Chromosome analysis revealed a gonosomal mosaicism of monosomy X (51%) and a pseudodicentric Y (49%) chromosome: mos 45, X/46,X psu dic (Y) (qter??p11.32 :: p11.2??qter). Molecular genetic studies did not show deletions in the AZFabc regions, but a deletion was found in the short arms of the dicentric Y chromosome. One of the SRY genes was also missing.Conclusion: The azoospermia in this patient could be explained by either the presence of an abnormal Y-chromosome that cannot form a sex vesicle (which appears to be necessary for the completion of meiosis process and the formation of sperm), or the presence of the 45, X cell line.
机译:背景:细胞遗传学分析,Y染色体微缺失筛选,FISH技术和其他遗传方法有助于在过去十年中找到无精症或严重少精子症患者的不育原因。目的:在本研究中,我们鉴定了异常的Y染色体材料和方法:使用G,Q和C结合技术进行染色体分析,并使用针对Y和X染色体序列的几种不同DNA探针进行FISH分析[XY着丝粒±±卫星,Y非卫星III,Y染色体的LSI探针,Y染色体的WCP,SRY基因,亚端粒Xp和Yp(覆盖SHOX(含短身同源盒)基因)以及亚端粒Xq和Yq探针]被执行。使用对Y染色体微缺失基因座具有特异性的引物对总共20个序列标记的位点进行了分析。选择引物覆盖AZFa,AZFb和AZFc区域以及SRY基因。结果:染色体分析显示X染色体(51%)和假双中心Y染色体(49%)的染色体嵌合体:mos 45,X / 46,X psu dic(Y)(qter ?? p11.32 :: p11.2 ?? qter)。分子遗传学研究未显示AZFabc区域的缺失,但在双着丝粒Y染色体的短臂中发现了缺失。结论:该患者无精症的原因可能是存在不能形成性囊泡的异常Y染色体(这似乎是完成减数分裂过程和形成的必要条件)。精子)或45个X细胞系的存在。

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