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Translational Recruitment of Xenopus Maternal mRNAs in Response to Poly(A) Elongation Requires Initiation Factor eIF4G-1

机译:爪蟾母本mRNAs响应Poly(A)延长的翻译招聘需要起始因子eIF4G-1

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摘要

Xenopus oocytes accumulate maternal mRNAs which are then recruited to ribosomes during meiotic cell cycle progression in response to progesterone and coincident with poly(A) elongation. Prior to stimulation, most protein synthesis (approx 70%) does not require intact translation factor eIF4G (B. D. Keiper and R. E. Rhoads, 1997, Nucleic Acids Res. 25, 395-402). In the present study we have addressed the requirement of eIF4G in the recruitment of mRNAs during meiosis. Cleavage of eIF4G by coxsackievirus protease 2A inhibited progesterone-induced meiotic progression in 88% of the oocytes; presented the recruitment of maternal mRNAs encoding cycling B1, c-Mos, D7, and B9; and disrupted the association of eIF4G with poly(A)-binding protein. Poly(A) elongation, however, was not inhibited by eIF4G cleavage. Injection of MPF restored meiotic cell cycle progression to >60% of the oocytes but not the recruitment of cyclin B1 or B9 mRNA. Previously recruited maternal mRNAs were removed from polyribosomes following subsequent cleavage of eIF4G, indicating that eIF4G is required both to recruit and also to maintain maternal mRNAs on polyribosomes. The expression of a cleavage-resistant variant of human eIF4G-1 (G486E) significantly restored the ability to synthesize c-Mos in response to progesterone and to translate exogenous #beta#-globin mRNA, indicating that the inhibition by protease 2A is due to cleavage of eIF4G alone. These results indicate that intact eIF4G is required for the poly(A)-dependent recruitment of several maternal mRNAs (cyclin B1, c-Mos, D7, and B9) during meiotic cell cycle progression but not for the synthesis of most proteins.
机译:爪蟾卵母细胞会积聚母体mRNA,然后在减数分裂细胞周期进程中响应孕激素并与poly(A)延长同时被募集到核糖体。在刺激之前,大多数蛋白质合成(约70%)不需要完整的翻译因子eIF4G(B。D. Keiper和R. E. Rhoads,1997,Nucleic Acids Res。25,395-402)。在本研究中,我们已经解决了eIF4G在减数分裂过程中募集mRNA的需求。柯萨奇病毒蛋白酶2A对eIF4G的切割抑制了88%的卵母细胞中黄体酮诱导的减数分裂进程。介绍了编码循环B1,c-Mos,D7和B9的母亲mRNA的募集;并破坏了eIF4G与poly(A)结合蛋白的结合。但是,poly(A)的延伸不受eIF4G裂解的抑制。注射MPF可将减数分裂细胞周期进展恢复至卵母细胞的60%以上,但不能募集细胞周期蛋白B1或B9 mRNA。在随后切割eIF4G之后,从多核糖体中去除了先前募集的母体mRNA,这表明eIF4G既需要在多核糖体上募集也要维持母体mRNA。人eIF4G-1(G486E)的抗切割变异体的表达显着恢复了响应孕酮合成c-Mos以及翻译外源#beta#-球蛋白mRNA的能力,表明蛋白酶2A的抑制作用是由于单独切割eIF4G。这些结果表明完整的eIF4G是减数分裂细胞周期进程中几个母体mRNA(细胞周期蛋白B1,c-Mos,D7和B9)的poly(A)依赖募集所必需的,但对于大多数蛋白质的合成则不是必需的。

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