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首页> 外文期刊>Reproduction: The official journal of the Society for the Study of Fertility >Expression of fragile X mental retardation protein and Fmr1 mRNA during folliculogenesis in the rat
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Expression of fragile X mental retardation protein and Fmr1 mRNA during folliculogenesis in the rat

机译:大鼠卵泡形成过程中脆弱的X智力低下蛋白和Fmr1 mRNA的表达

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Fragile X mental retardation protein (FMRP) belongs to a small family of RNA-binding proteins. Its absence or inactivity is responsible for fragile X syndrome, the most common cause of inherited mental retardation. Despite its ubiquitous expression, FMRP function and expression remain almost understudied in non-neuronal tissues, though previous studies on germline development during oogenesis may suggest a special function of this protein also in ovarian tissue. In addition, the well-documented association of FMR1 premutation state with fragile X-related premature ovarian insufficiency adds interest to the role of FMRP in ovarian physiology. The aim of the present work was to investigate the expression of Fmr1 mRNA and its protein, FMRP, at different stages of rat follicular development. By immunohistochemical studies we demonstrated FMRP expression in granulosa, theca and germ cells in all stages of follicular development. In addition, changes in Fmr1 expression, both at the protein and mRNA levels, were observed. FMRP levels increased upon follicular development while preantral and early antral follicles presented similar levels of Fmr1 transcripts with decreased expression in preovulatory follicles. These observations suggest that Fmr1 expression in the ovary is regulated at different and perhaps independent levels. In addition, our results show expression of at least four different isoforms of FMRP during all stages of follicular growth with expression patterns that differ from those observed in brain and testis. Our study shows a regulated expression of Fmr1 , both at mRNA and protein levels, during rat follicular development.
机译:脆性X智力低下蛋白(FMRP)属于一小类RNA结合蛋白。它的缺乏或缺乏活动是导致脆弱的X综合征的原因,X综合征是遗传性智力低下的最常见原因。尽管FMRP的功能和表达无处不在,但在非神经元组织中的研究仍很少,尽管先前有关卵子发生过程中种系发育的研究可能表明该蛋白在卵巢组织中也有特殊功能。此外,有据可查的FMR1突变状态与脆弱的X相关性卵巢早衰的关联增加了人们对FMRP在卵巢生理中的作用的兴趣。本研究的目的是研究Fmr1 mRNA及其蛋白FMRP在大鼠卵泡发育不同阶段的表达。通过免疫组织化学研究,我们证明了在卵泡发育各个阶段的颗粒,皮膜和生殖细胞中FMRP的表达。此外,在蛋白质和mRNA水平上,Fmr1表达均发生了变化。 FMRP水平随着卵泡发育而增加,而窦前卵泡和早期肛门卵泡的Fmr1转录水平相似,排卵前卵泡表达降低。这些观察结果表明,Fmr1在卵巢中的表达受到不同甚至独立水平的调节。此外,我们的结果显示,在卵泡生长的所有阶段中,至少有四种不同的FMRP亚型表达,其表达方式与在大脑和睾丸中观察到的表达方式不同。我们的研究显示在大鼠卵泡发育过程中Fmr1在mRNA和蛋白质水平上的表达均受调节。

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