首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Reduced Expression of an RNA-binding Protein by Prolactin Leads to Translational Silencing of Programmed Cell Death Protein 4 and Apoptosis in Newt Spermatogonia
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Reduced Expression of an RNA-binding Protein by Prolactin Leads to Translational Silencing of Programmed Cell Death Protein 4 and Apoptosis in Newt Spermatogonia

机译:催乳素降低RNA结合蛋白的表达导致New精原细胞中程序性细胞死亡蛋白4的翻译沉默和细胞凋亡。

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摘要

Recent studies indicate that the balance between cell survival and proapoptotic signals determines which cells commit to life or death. We have shown that the balance between follicle-stimulating hormone and prolactin determines differentiation or apoptosis in 7th generation spermatogonia during newt spermatogenesis; however, the molecular mechanisms specifying their fate are poorly understood. Here we show that the newt RNA-binding protein (nRBP) plays a critical role in determining their fate. nRBP was identified as a clone whose mRNA is decreased by prolactin, resulting in the reduction of the protein, which is otherwise expressed predominantly in the spermatogonia. nRBP protein associated with the mRNA for newt programmed cell death protein 4 (nPdcd4) at the 3′-untranslated region. nRBP reduction increased nPdcd4 mRNA but decreased its protein. In a cell-free system, cytoplasmic extracts containing reduced amounts of nRBP and nPdcd4 protein induced apoptosis, whereas adding nRBP protein to the extracts blocked apoptosis. Furthermore, overexpression of nRBP protected cells from apoptosis, stabilized the chimeric transcript containing the nPdcd4 3′-untranslated region, and accelerated its translation. These data suggest that, in the absence of nRBP, nPdcd4 mRNA is not stabilized and its translation is suppressed, leading to apoptosis in the spermatogonia.
机译:最近的研究表明,细胞存活与凋亡信号之间的平衡决定了哪些细胞可以存活或死亡。我们已经表明,促卵泡激素和催乳激素之间的平衡决定了new生精过程中第七代精原细胞的分化或凋亡。但是,人们对确定其命运的分子机制知之甚少。在这里,我们显示了new RNA结合蛋白(nRBP)在决定其命运方面起着至关重要的作用。 nRBP被鉴定为克隆,其mRNA因催乳激素而减少,从而导致蛋白质减少,否则该蛋白质主要在精原细胞中表达。与3t非翻译区的newt程序性细胞死亡蛋白4(nPdcd4)的mRNA相关的nRBP蛋白。 nRBP减少增加nPdcd4 mRNA,但减少其蛋白质。在无细胞系统中,含有减少量的nRBP和nPdcd4蛋白的细胞质提取物诱导凋亡,而向提取物中添加nRBP蛋白则阻止凋亡。此外,nRBP的过表达保护细胞免于凋亡,稳定了包含nPdcd4 3'-非翻译区的嵌合转录物,并加速了其翻译。这些数据表明,在不存在nRBP的情况下,nPdcd4 mRNA不稳定且其翻译受到抑制,从而导致精原细胞凋亡。

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