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大鼠性腺功能减退(hgn/hgn)睾丸中胎儿支持细胞的有丝分裂活性降低,凋亡增加。

Reduced mitotic activity and increased apoptosis of fetal sertoli cells in rat hypogonadic (hgn/hgn) testes.

作者信息

Yagi Mio, Takenaka Motoo, Suzuki Katsushi, Suzuki Hiroetsu

机构信息

Laboratory of Veterinary Physiology, Nippon Veterinary and Life Science University, Japan.

出版信息

J Reprod Dev. 2007 Jun;53(3):581-9. doi: 10.1262/jrd.18128. Epub 2007 Feb 19.

Abstract

Sterility in male hypogonadic (hgn/hgn) rats results from congenital testicular dysplasia caused by a single recessive gene hgn on rat chromosome 10. We recently identified an insertion mutation in the Spag5/astrin gene of hgn/hgn rats that may cause defective proliferation of immature Sertoli cells in the postnatal hgn/hgn testis. Since the pathological alterations were present in the testes at birth, we examined the involvement of defective mitosis and apoptotic cell death in embryonic development of hgn/hgn testes. Testicular hypoplasia was apparent at embryonic day (ED) 18.5. Immunostaining of hgn/hgn testes at ED 21.5 with antibody to GATA-4, which is specific for fetal Sertoli cells in the seminiferous cords, showed that the significant decrease in the number of fetal Sertoli cells was accompanied by a two fold increase in their mitotic index and abnormal mitosis and apoptosis. Prior to this, we observed a decrease in the number of BrdU-labeled cells, an increase in the number of TUNEL-positive apoptotic cells, and presence of MIS-positive apoptotic cells in hgn/hgn testes on ED 17.5 and 18.5. These results suggest that the Spag5 mutation may cause a reduction in mitotic activity and an increase in apoptosis of fetal Sertoli cells in hgn/hgn testes.

摘要

雄性性腺功能减退(hgn/hgn)大鼠的不育是由大鼠10号染色体上的单个隐性基因hgn引起的先天性睾丸发育异常所致。我们最近在hgn/hgn大鼠的Spag5/astrin基因中发现了一个插入突变,该突变可能导致出生后hgn/hgn睾丸中未成熟支持细胞的增殖缺陷。由于出生时睾丸就存在病理改变,我们研究了有丝分裂缺陷和凋亡性细胞死亡在hgn/hgn睾丸胚胎发育中的作用。在胚胎第18.5天,睾丸发育不全明显。用针对生精索中胎儿支持细胞特异性的GATA-4抗体对胚胎第21.5天的hgn/hgn睾丸进行免疫染色,结果显示胎儿支持细胞数量显著减少,同时其有丝分裂指数增加了两倍,且存在异常有丝分裂和凋亡。在此之前,我们在胚胎第17.5天和18.5天观察到hgn/hgn睾丸中BrdU标记细胞数量减少、TUNEL阳性凋亡细胞数量增加以及MIS阳性凋亡细胞的存在。这些结果表明,Spag5突变可能导致hgn/hgn睾丸中胎儿支持细胞的有丝分裂活性降低和凋亡增加。

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