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睾丸特异性硫糖脂——精脂,对精子发生过程中的生殖细胞功能至关重要。

Testis-specific sulfoglycolipid, seminolipid, is essential for germ cell function in spermatogenesis.

作者信息

Zhang Yanlong, Hayashi Yoshihiro, Cheng Xinyao, Watanabe Tae, Wang Xiangchun, Taniguchi Naoyuki, Honke Koichi

机构信息

Department of Molecular Genetics, Kochi University Medical School, Kochi 783-8505, Japan.

出版信息

Glycobiology. 2005 Jun;15(6):649-54. doi: 10.1093/glycob/cwi043. Epub 2005 Jan 19.

Abstract

More than 90% of the glycolipid in mammalian testis consists of a unique sulfated glyceroglycolipid, seminolipid. The sulfation of the molecule is catalyzed by a Golgi membrane-associated sulfotransferase, cerebroside sulfotransferase (CST). Disruption of the Cst gene in mice results in male infertility due to the arrest of spermatogenesis prior to the metaphase of the first meiosis. However, the issue of which side of the cell function-germ cells or Sertoli cells-is deteriorated in this mutant mouse remains unknown. Our findings show that the defect is in the germ cell side, as evidenced by a transplantation analysis, in which wild-type spermatogonia expressing the green fluorescent protein were injected into the seminiferous tubules of CST-null testis. The transplanted GFP-positive cells generated colonies and spermatogenesis proceeded over meiosis in the mutant testis. The findings also clearly show that the seminolipid is expressed on the plasma membranes of spermatogonia, spermatocytes, spermatids, and spermatozoa, as evidenced by the immunostaining of wild-type testes using an anti-sulfogalactolipid antibody, Sulph-1 in comparison with CST-null testes as a negative control, and that seminolipid appears as early as day 8 of age, when Type B spermatogonia emerge.

摘要

哺乳动物睾丸中超过90%的糖脂由一种独特的硫酸化甘油糖脂——精半乳糖苷脂组成。该分子的硫酸化由一种与高尔基体膜相关的硫酸转移酶——脑苷脂硫酸转移酶(CST)催化。小鼠中Cst基因的破坏会导致雄性不育,原因是精子发生在第一次减数分裂中期之前停滞。然而,在这种突变小鼠中,细胞功能的哪一侧——生殖细胞还是支持细胞——受损仍然未知。我们的研究结果表明,缺陷在于生殖细胞一侧,这通过移植分析得到了证实,在该分析中,将表达绿色荧光蛋白的野生型精原细胞注射到CST基因敲除小鼠的生精小管中。移植的GFP阳性细胞形成了集落,并且精子发生在突变小鼠的睾丸中通过减数分裂继续进行。研究结果还清楚地表明,精半乳糖苷脂在精原细胞、精母细胞、精子细胞和精子的质膜上表达,这通过使用抗硫酸半乳糖脂抗体Sulph-1对野生型睾丸进行免疫染色得到证实,并以CST基因敲除小鼠的睾丸作为阴性对照,而且精半乳糖苷脂早在B型精原细胞出现的8日龄时就出现了。

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