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Modifications of eukaryotic initiation factor 4F (eIF4F) in adult cardiocytes by adenoviral gene transfer: differential effects on eIF4F activity and total protein synthesis rates

机译:腺病毒基因转移修饰成年心肌真核起始因子4F(eIF4F):对eIF4F活性和总蛋白合成率的差异影响

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pIn adult feline cardiocytes, increases in eukaryotic initiation factor 4F (eIF4F) activity are correlated with accelerated rates of total protein synthesis produced in response to increased load. Adenoviral gene transfer was employed to increase either eIF4F complex formation or the phosphorylation of eIF4E on Ser-209. To simulate load, cardiocytes were electrically stimulated to contract (2Hz, 5ms pulses). Non-stimulated cardiocytes were used as controls. Adenovirus-mediated overexpression of wild-type eIF4E increased the total eIF4E pool by 120–140% above endogenous levels after 24h and produced a corresponding increase in eIF4F content. However, it did not accelerate total protein synthesis rates in quiescent cardiocytes; neither did it potentiate the increase produced by contraction. To modify the affinity of eIF4F, cardiocytes were infected with a mutant (eIF4E/W56F) with a decreased binding affinity for the mRNA cap. Overexpression of eIF4E/W56F increased the quantity of eIF4F but the rate of total protein synthesis was decreased in quiescent and contracting cardiocytes. Overexpression of a mutant that blocked eIF4E phosphorylation (eIF4E/S209A) increased the quantity of eIF4F without any significant effect on total protein synthesis rates in quiescent or contracting cardiocytes. Overexpression of the eIF4E kinase Mnk-1 increased eIF4E phosphorylation without a corresponding increase in eIF4F complex formation or in the rate of total protein synthesis. We conclude the following: (1) eIF4F assembly is increased by raising eIF4E levels via adenoviral gene transfer; (2) the cap binding affinity of eIF4F is a rate-limiting determinant for total protein synthesis rates; and (3) increases in the quantity of eIF4F alone or in eIF4E phosphorylation are not sufficient to accelerate total protein synthesis rates./p
机译:>在成年猫的心肌细胞中,真核起始因子4F(eIF4F)活性的增加与响应增加的负荷而产生的总蛋白质合成的加快速率相关。腺病毒基因转移用于增加eIF4F复合物的形成或在Ser-209上eIF4E的磷酸化。为了模拟负荷,对心肌细胞进行电刺激以使其收缩(2Hz,5ms脉冲)。未刺激的心肌细胞用作对照。 24小时后,腺病毒介导的野生型eIF4E的过量表达使总eIF4E库比内源性水平增加了120–140%,并产生了相应的eIF4F含量增加。然而,它并没有加快静态心肌细胞的总蛋白合成速率。它也没有增强收缩产生的增加。为了修饰eIF4F的亲和力,用对mRNA帽结合亲和力降低的突变体(eIF4E / W56F)感染心肌细胞。在静止和收缩的心肌细胞中,eIF4E / W56F的过表达增加了eIF4F的数量,但总蛋白合成率却降低了。阻断eIF4E磷酸化的突变体(eIF4E / S209A)的过表达增加了eIF4F的数量,而对静止或收缩的心肌细胞的总蛋白质合成速率没有任何显着影响。 eIF4E激酶Mnk-1的过表达增加了eIF4E的磷酸化,而eIF4F复合物的形成或总蛋白合成速率没有相应增加。我们得出以下结论:(1)通过腺病毒基因转移提高eIF4E水平可增加eIF4F装配; (2)eIF4F的帽结合亲和力是决定蛋白质总合成速率的速率决定因素; (3)单独增加eIF4F或增加eIF4E磷酸化的数量不足以促进总蛋白合成速率。

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