通过实时RT-PCR分析正常和受损人类精子发生中的乳霜激活物同工型。

Dorota Fiszer, Małgorzata Białas, Natalia Rozwadowska, Włodzimierz Kosicki, Piotr Jedrzejczak, Maciej Kurpisz
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引用次数: 3

摘要

cAMP响应元件调节(CREM)激活子同工型参与哺乳动物精子发生和精子发生。CREM蛋白在啮齿动物和灵长类动物的减数分裂后生殖细胞中高度表达。纯合子CREM灭活小鼠表现为圆形精子成熟阻滞。在mRNA和蛋白水平上缺乏CREM表达与不育患者精细胞成熟停滞有关。利用实时RT-PCR技术,我们检测了来自正常人类睾丸的配子体和间质细胞组分、来自生精停止和睾丸肿瘤的匀浆组织样本中CREM激活物异构体mrna: CREMtheta1、CREMtheta2和CREMt2 + Ex-gamma的水平。我们首次在正常人类精子发生中发现了含有外显子γ的CREM激活子异构体(CREMtau2 + Exgamma)。CREM三种异构体中,CREMtheta1在雄性性腺中表达水平最高。相比之下,CREMtheta2 mRNA显著减少,这表明P3启动子在人类睾丸中比P4启动子更活跃。在SCOS(仅支持细胞综合征)患者的淋巴细胞或性腺组织中检测到极低水平的CREM激活物亚型mRNA。这些数据强调了CREMtheta1亚型在减数分裂后生殖细胞分化过程中转录调控的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crem activator isoforms in normal and impaired human spermatogenesis analyzed by real time RT-PCR.

cAMP responsive element modulator (CREM) activator isoforms are involved in mammalian spermatogenesis and spermiogenesis. CREM proteins are highly expressed in postmeiotic germ cells of rodents and primates. Homozygous CREM inactivated mice exhibit round spermatid maturation arrest. The lack of CREM expression at both the mRNA and protein levels is associated with spermatid maturation arrest in infertile patients. Using real-time RT-PCR, we have examined the levels of CREM activator isoform mRNAs: CREMtheta1, CREMtheta2 and CREMt2 + Ex-gamma in gametogenic and interstitial cell fractions from normal human testis, in homogenized tissue samples from spermatogenic arrest and from testicular tumors. We have shown for the first time the presence of CREM activator isoform containing exon gamma (CREMtau2 + Exgamma) in normal human spermatogenesis. Among the three CREM isoforms, CREMtheta1 was expressed in its highest level in the male gonads. In comparison, CREMtheta2 mRNA was significantly less suggesting that the P3 promoter is much more active in human testis than the P4 promoter. Minimal-nill levels of mRNA for either of the CREM activator isoforms were detected in lymphocytes or in gonadal tissues from patients with SCOS (Sertoli Cell Only Syndrome). This data underlines the significance of CREMtheta1 isoform in the regulation of transcription during post-meiotic germ cell differentiation.

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