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小鼠附睾中特异性表达的新基因的计算机模拟发现及体外特性分析

Discovery in silico and characterization in vitro of novel genes exclusively expressed in the mouse epididymis.

作者信息

Penttinen Jenni, Pujianto Dwi Ari, Sipila Petra, Huhtaniemi Ilpo, Poutanen Matti

机构信息

Department of Physiology, Institute of Biomedicine, University of Turku, Kiinamyllynkatu 10, FIN-20520 Turku, Finland.

出版信息

Mol Endocrinol. 2003 Nov;17(11):2138-51. doi: 10.1210/me.2003-0008. Epub 2003 Aug 14.

Abstract

Epididymal proteins interact with sperm during their passage through the epididymis and thus contribute to the maturation and fertilizing capacity of the spermatozoa. In the present study we have discovered five novel epididymis-specific genes through in silico analysis of expressed sequence tags (ESTs) at the UniGene library collection. The strategy used is a powerful way to discover novel epididymis-specific genes. The full-length cDNA sequences were determined, and computational tools were used to characterize the genomic structures and to predict putative functions for the encoded proteins. In vitro analyses revealed that all five genes characterized were highly expressed in the defined areas of the epididymis, and they were not expressed at significant levels in any other tissue. Three of the genes were named on the basis of their putative functions: Spint4 (serine protease inhibitor, Kunitz type 4), and Rnase9 and Rnase10 (ribonuclease, Rnase A family 9 and 10), while for the ESTs AV381130 and AV381126 no putative functions could be predicted. The expression of Spint4, Rnase9, and AV381130 was found to be under a direct or indirect regulation by androgens, while the expression of Rnase10 is regulated by a testicular factor(s) other than androgen. None of the genes were expressed in the immature epididymis, while mRNAs were detected from d 17 onward, at the time of maturation of epididymal epithelium. However, the expression of AV381130 was not detected until d 30 after birth, indicating a close connection between gene expression and puberty.

摘要

附睾蛋白在精子通过附睾的过程中与精子相互作用,从而有助于精子的成熟和受精能力。在本研究中,我们通过对UniGene文库集合中的表达序列标签(EST)进行电子分析,发现了五个新的附睾特异性基因。所使用的策略是发现新的附睾特异性基因的有效方法。确定了全长cDNA序列,并使用计算工具来表征基因组结构并预测编码蛋白的推定功能。体外分析表明,所表征的所有五个基因在附睾的特定区域中高度表达,并且它们在任何其他组织中均未以显著水平表达。其中三个基因根据其推定功能进行命名:Spint4(丝氨酸蛋白酶抑制剂,Kunitz型4)、Rnase9和Rnase10(核糖核酸酶,Rnase A家族9和10),而对于EST AV381130和AV381126,无法预测其推定功能。发现Spint4、Rnase9和AV381130的表达受雄激素直接或间接调节,而Rnase10的表达受雄激素以外的睾丸因子调节。这些基因在未成熟的附睾中均未表达,而在附睾上皮成熟时,从第17天开始可检测到mRNA。然而,直到出生后第30天才检测到AV381130的表达,这表明基因表达与青春期之间存在密切联系。

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