首页> 外文期刊>The American Journal of Human Genetics >A recurrent deletion of DPY19L2 causes infertility in man by blocking sperm head elongation and acrosome formation.
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A recurrent deletion of DPY19L2 causes infertility in man by blocking sperm head elongation and acrosome formation.

机译:DPY19L2的反复缺失会阻止精子头的延伸和顶体的形成,从而导致男性不育。

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An increasing number of couples require medical assistance to achieve a pregnancy, and more than 2% of the births in Western countries now result from assisted reproductive technologies. To identify genetic variants responsible for male infertility, we performed a whole-genome SNP scan on patients presenting with total globozoospermia, a primary infertility phenotype characterized by the presence of 100% round acrosomeless spermatozoa in the ejaculate. This strategy allowed us to identify in most patients (15/20) a 200 kb homozygous deletion encompassing only DPY19L2, which is highly expressed in the testis. Although there was no known function for DPY19L2 in humans, previous work indicated that its ortholog in C. elegans is involved in cell polarity. In man, the DPY19L2 region has been described as a copy-number variant (CNV) found to be duplicated and heterozygously deleted in healthy individuals. We show here that the breakpoints of the deletions are located on a highly homologous 28 kb low copy repeat (LCR) sequence present on each side of DPY19L2, indicating that the identified deletions were probably produced by nonallelic homologous recombination (NAHR) between these two regions. We demonstrate that patients with globozoospermia have a homozygous deletion of DPY19L2, thus indicating that DPY19L2 is necessary in men for sperm head elongation and acrosome formation. A molecular diagnosis can now be proposed to affected men; the presence of the deletion confirms the diagnosis of globozoospermia and assigns a poor prognosis for the success of in vitro fertilization.
机译:越来越多的夫妇需要医疗帮助才能怀孕,并且在西方国家,现在有超过2%的分娩是由辅助生殖技术造成的。为了鉴定导致男性不育的遗传变异,我们对表现为总球精症的患者进行了全基因组SNP扫描,这是一种主要的不育表型,其特征在于射精中存在100%的圆形无顶体精子。这种策略使我们能够在大多数患者中(15/20)识别出一个仅包含DPY19L2的200 kb纯合缺失,该缺失在睾丸中高度表达。尽管在人体内没有已知的DPY19L2功能,但先前的工作表明其在秀丽隐杆线虫中的直系同源物与细胞极性有关。在人中,DPY19L2区已被描述为在健康个体中发现复制并杂合缺失的拷贝数变异(CNV)。我们在此处显示缺失的断点位于存在于DPY19L2每一侧的高度同源的28 kb低拷贝重复序列(LCR)序列上,表明已鉴定的缺失可能是由这两个区域之间的非等位基因同源重组(NAHR)产生的。我们证明患有球孢子症的患者具有DPY19L2的纯合缺失,因此表明DPY19L2对于男性的精子头延长和顶体形成是必需的。现在可以建议对受影响的男性进行分子诊断。缺失的存在证实了球孢子症的诊断,并为体外受精的成功预后不良。

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