Université Blaise Pascal, Unité Mixte de Recherche GReD Centre National de la Recherche Scientifique 6247, INSERM U931, 63177 Aubiere, cedex, France.
J Lipid Res. 2009 Sep;50(9):1766-75. doi: 10.1194/jlr.M800657-JLR200. Epub 2009 Apr 25.
Mammalian spermatozoa undergo important plasma membrane maturation steps during epididymal transit. Among these, changes in lipids and cholesterol are of particular interest as they are necessary for fertilization. However, molecular mechanisms regulating these transformations inside the epididymis are still poorly understood. Liver X receptors (LXRs), the nuclear receptors for oxysterols, are of major importance in intracellular cholesterol homeostasis, and LXR(-/-)-deficient male mice have already been shown to have reduced fertility at an age of 5 months and complete sterility for 9-month-old animals. This sterility phenotype is associated with testes and caput epididymides epithelial defects. The research presented here was aimed at investigating how LXRs act in the male caput epididymidis by analyzing key actors in cholesterol homeostasis. We show that accumulation of cholesteryl esters in LXR(-/-) male mice is associated with a specific loss of ABCA1 and an increase in apoptosis of apical cells of the proximal caput epididymidis. ATP-binding cassette G1 (ABCG1) and scavenger receptor B1 (SR-B1), two other cholesterol transporters, show little if any modifications. Our study also revealed that SR-B1 appears to have a peculiar expression pattern along the epididymal duct. These results should help in understanding the functional roles of LXR in cholesterol trafficking processes in caput epididymidis.
哺乳动物精子在附睾转运过程中经历重要的质膜成熟步骤。在这些变化中,脂质和胆固醇的变化特别引人注目,因为它们是受精所必需的。然而,调节附睾内这些转化的分子机制仍知之甚少。肝 X 受体 (LXRs) 是氧化固醇的核受体,在细胞内胆固醇稳态中具有重要意义,并且已经证明 LXR(-/-) 缺陷型雄性小鼠在 5 月龄时生育力降低,9 月龄时完全不育。这种不育表型与睾丸和附睾头部上皮细胞缺陷有关。本研究旨在通过分析胆固醇稳态中的关键因子,研究 LXR 在雄性附睾头部中的作用。我们发现,LXR(-/-) 雄性小鼠的胆固醇酯积累与 ABCA1 的特异性缺失和附睾头部近端顶细胞凋亡增加有关。ATP 结合盒转运蛋白 G1 (ABCG1) 和清道夫受体 B1 (SR-B1) 这两种其他的胆固醇转运蛋白几乎没有变化。我们的研究还表明,SR-B1 在附睾管中似乎具有特殊的表达模式。这些结果将有助于理解 LXR 在附睾头部胆固醇转运过程中的功能作用。