首页> 外文期刊>Sexual development: genetics, molecular biology, evolution, endocrinology, embryology, and pathology of sex determination and differentiation >Piwi-Pathway Alteration Induces LINE-1 Transposon Derepression and Infertility Development in Cryptorchidism
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Piwi-Pathway Alteration Induces LINE-1 Transposon Derepression and Infertility Development in Cryptorchidism

机译:Piwi-途径改变诱导隐睾症LINE-1转座子抑制和不育发展。

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摘要

Spermatogonia contain processing bodies that harbor P-element-induced wimpy testis (Piwi) proteins. Piwi proteins are associated specifically with Piwi-interacting RNAs to silence transposable DNA elements. Loss-of-function mutations in the Piwi pathway lead to derepression of transposable elements, resulting in defective spermatogenesis. Furthermore, deletion of gametocyte-specific factor 1 (GTSF1), a factor involved in Piwi-mediated transcriptional repression, causes male-specific sterility and derepression of LINE1 (L1) retrotransposons. No previous studies have examined GTSF1, L1 and PIWIL4 expression in cryptorchidism. We examined transposon-silencing genes and L1 transposon expression in testicular biopsies with Affymetrix microarrays and immunohistology. Seven members of the Tudor gene family, 3 members of the DEAD-box RNA helicase family, and the GTSF1 gene were found to show significantly lower RNA signals in the high-infertility-risk group. In the immunohistochemical analysis, patients from the low-infertility-risk group showed coherently stronger staining for GTSF1 and PIWIL4 proteins and weaker staining for L1 transposon when compared to the high-infertility-risk samples. These new findings provide first evidence consistent with the idea that infertility in cryptorchidism is a consequence of alterations in the Piwi pathway and transposon derepression induced by the impaired function of mini-puberty. (C) 2015 S. Karger AG, Basel
机译:精原细胞中含有带有P元素诱导的w弱睾丸(Piwi)蛋白的加工体。 Piwi蛋白与与Piwi相互作用的RNA特异性结合,以使转座DNA元件沉默。 Piwi途径中的功能丧失突变导致转座因子的阻遏,导致精子发生缺陷。此外,配子体特异性因子1(GTSF1)的缺失是参与Piwi介导的转录抑制的一种因子,导致雄性特异性不育和LINE1(L1)逆转座子的抑制。以前没有研究检查隐睾症中的GTSF1,L1和PIWIL4表达。我们用Affymetrix芯片和免疫组织学检查了睾丸活检组织中的转座子沉默基因和L1转座子表达。发现在高不育风险人群中,Tudor基因家族的7个成员,DEAD-box RNA解旋酶家族的3个成员和GTSF1基因显示出明显较低的RNA信号。在免疫组织化学分析中,与高不育风险人群相比,低不育风险人群的GTSF1和PIWIL4蛋白染色一致,而L1转座子染色弱。这些新发现提供了与隐睾症的不育症是由小青春期功能受损引起的Piwi途径改变和转座子抑制所导致的结果相一致的第一个证据。 (C)2015 S.Karger AG,巴塞尔

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