Ghyselinck Norbert B, Vernet Nadège, Dennefeld Christine, Giese Norbert, Nau Heinz, Chambon Pierre, Viville Stéphane, Mark Manuel
Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC), Centre National de la Recherche Scientifique (CNRS)/(INSERM)/Université Louis Pasteur de Strasbourg (ULP)/Collège de France. Communauté Urbaine de Strasbourg, France.
Dev Dyn. 2006 Jun;235(6):1608-22. doi: 10.1002/dvdy.20795.
Using Rbp4-null mice as models, we have established for the first time the kinetics of the spermatogenetic alterations during vitamin A deficiency (VAD). Our data demonstrate that the VAD-induced testicular degeneration arises through the normal maturation of germ cells in a context of spermatogonia differentiation arrest. They indicate that retinoic acid (RA) appears dispensable for the transition of premeiotic to meiotic spermatocytes, meiosis, and spermiogenesis. They confirm that RA plays critical roles in controlling spermatogonia differentiation, spermatid adhesion to Sertoli cells, and spermiation, and suggest that the VAD-induced arrest of spermatogonia differentiation results from simultaneous blocks in RA-dependent events mediated by RA receptor gamma (RARgamma) in spermatogonia and by RARalpha in Sertoli cells. They also provide evidence that expression of major RA-metabolizing enzymes is increased in mouse Sertoli cells upon VAD and that vitamin A-deficient A spermatogonia differ from their RA-sufficient counterparts by the expression of the Stra8 gene.
以Rbp4基因敲除小鼠为模型,我们首次确定了维生素A缺乏(VAD)期间生精改变的动力学。我们的数据表明,VAD诱导的睾丸退化是在精原细胞分化停滞的情况下,通过生殖细胞的正常成熟而发生的。这些数据表明,视黄酸(RA)对于减数分裂前精母细胞向减数分裂精母细胞的转变、减数分裂和精子发生似乎是可有可无的。这些数据证实,RA在控制精原细胞分化、精子细胞与支持细胞的黏附以及精子释放方面发挥着关键作用,并表明VAD诱导的精原细胞分化停滞是由精原细胞中由视黄酸受体γ(RARγ)介导的RA依赖性事件以及支持细胞中由RARα介导的RA依赖性事件同时受阻所致。这些数据还提供了证据,表明VAD时小鼠支持细胞中主要RA代谢酶的表达增加,并且维生素A缺乏的A型精原细胞与维生素A充足的精原细胞在Stra8基因的表达上存在差异。