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Testis transcriptome analysis in male infertility: new insight on the pathogenesis of oligo-azoospermia in cases with and without AZFc microdeletion

机译:男性不育症的睾丸转录组分析:有无AZFc微缺失的情况下少精症无精症发病机理的新见解

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Background About 10% of cases of male infertility are due to the presence of microdeletions within the long arm of the Y chromosome (Yq). Despite the large literature covering this critical issue, very little is known about the pathogenic mechanism leading to spermatogenesis disruption in patients carrying these microdeletions. In order to identify the presence of specific molecular pathways leading to spermatogenic damage, testicular gene expression profiling was carried out by employing a microarray assay in 16 patients carrying an AZFc microdeletion or affected by idiopathic infertility. Hierarchical clustering was performed pooling the data set from 26 experiments (16 patients, 10 replicates). Results An intriguing and unexpected finding is that all the samples showing the AZFc deletion cluster together irrespectively of their testicular phenotypes. This cluster, including also four patients affected by idiopathic infertility, showed a downregulation of several genes related to spermatogenesis that are mainly involved in testicular mRNA storage. Interestingly, the four idiopathic patients present in the cluster showed no testicular expression of DAZ despite the absence of AZFc deletion in the peripheral blood. Conclusions Our expression profiles analysis indicates that several forms of infertility can be triggered by a common pathogenic mechanism that is likely related to alterations in testicular mRNA storage. Our data suggest that a lack of testicular DAZ gene expression may be the trigger of such mechanism. Furthermore, the presence of AZFc deletions in mosaic or the loss of function of AZFc genes in absence of Yq deletion can perhaps explain these findings. Finally, based on our data, it is intriguing to hypothesize that DAZ gene dysfunctions can account for a larger number of previously thought "idiopathic" infertility cases and investigation of such testicular gene dysfunction can be important to reveal the molecular determinant of infertility than are undetected when only testing Yq deletions in peripheral blood.
机译:背景技术大约10%的男性不育病例是由于Y染色体(Yq)长臂内存在微缺失。尽管有大量文献报道了这个关键问题,但对于携带这些微缺失的患者导致精子发生破坏的致病机制知之甚少。为了鉴定导致精子形成性损伤的特定分子途径的存在,通过对16例携带AZFc微缺失或患有特发性不育症的患者进行微阵列测定,对睾丸基因表达进行了分析。进行层次聚类,合并来自26个实验(16位患者,10个重复)的数据集。结果一个有趣而出乎意料的发现是,所有显示AZFc缺失的样品都聚集在一起,而与它们的睾丸表型无关。这个集群,也包括四位受特发性不育症影响的患者,显示出与精子发生有关的几个基因的下调,这些基因主要参与睾丸mRNA的储存。有趣的是,尽管外周血中不存在AZFc缺失,但簇中存在的四位特发性患者未显示DAZ的睾丸表达。结论我们的表达谱分析表明,一种常见的致病机制可以触发几种不育形式,这可能与睾丸mRNA贮藏的改变有关。我们的数据表明,睾丸DAZ基因表达的缺乏可能是这种机制的触发因素。此外,马赛克中是否存在AZFc缺失或在缺少Yq缺失的情况下AZFc基因功能丧失可能可以解释这些发现。最后,根据我们的数据,令人怀疑的是,DAZ基因功能障碍可导致大量先前认为的“特发性”不育病例,对这种睾丸基因功能障碍的调查对于揭示不育分子决定因素比未发现的重要。仅测试外周血中的Yq缺失时。

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