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A2 isoform of mammalian translation factor eEF1A displays increased tyrosine phosphorylation and ability to interact with different signalling molecules

机译:哺乳动物翻译因子eEF1A的A2亚型显示出增强的酪氨酸磷酸化和与不同信号分子相互作用的能力

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摘要

The eEF1A1 and eEF1A2 isoforms of translation elongation factor 1A have 98% similarity and perform the same protein synthesis function catalyzing codon-dependent binding of aminoacyl-tRNA to 80S ribosome. However, the isoforms apparently play different non-canonical roles in apoptosis and cancer development which are awaiting further investigations. We hypothesize that the difference in non-translational functions could be caused, in particular, by differential ability of the isoforms to be involved in phosphotyrosine-mediated signalling.The ability of eEF1A1 and eEF1A2 to interact with SH2 and SH3 domains of different signalling molecules in vitro was compared. Indeed, contrary to eEF1A1, eEF1A2 was able to interact with SH2 domains of Grb2, RasGAP, Shc and C-terminal part of Shp2 as well as with SH3 domains of Crk, Fgr, Fyn and phospholipase C-gamma1.Interestingly, the interaction of both isoforms with Shp2 in vivo was found using stable cell lines expressing eEF1A1-His or eEF1A2-His. The formation of a complex between endogenous eEF1A and Shp2 was also shown. Importantly, a higher level of tyrosine phosphorylation of eEF1A2 as compared to eEF1A1 was demonstrated in several independent experiments and its importance for interaction of eEF1A2 with Shp2 in vitro was revealed.Thus, despite the fact that both isoforms of eEF1A could be involved in the phosphotyrosine-mediated processes, eEF1A2 apparently has greater potential to participate in such signalling pathways. Since tyrosine kinases/phosphatases play a prominent role in human cancerogenesis, our observations may gave a basis for recently found oncogenicity of the eEF1A2 isoform.
机译:翻译延伸因子1A的eEF1A1和eEF1A2同工型具有98%的相似性,并执行相同的蛋白质合成功能,催化氨酰基-tRNA与80S核糖体的密码子依赖性结合。然而,同工型显然在凋亡和癌症发展中起着不同的非经典作用,有待进一步研究。我们假设非翻译功能的差异可能是由同工型参与磷酸酪氨酸介导的信号传导的差异性引起的。eEF1A1和eEF1A2与不同信号分子的SH2和SH3结构域相互作用的能力比较体外。实际上,与eEF1A1相反,eEF1A2能够与Grb2,RasGAP,Shc和Shp2的C末端部分的SH2结构域以及Crk,Fgr,Fyn和磷脂酶C-γ1的SH3结构域相互作用。使用表达eEF1A1-His或eEF1A2-His的稳定细胞系发现了体内具有Shp2的两种同工型。还显示了内源性eEF1A和Shp2之间形成复合物。重要的是,在几个独立的实验中证明了eEF1A2的酪氨酸磷酸化水平高于eEF1A1,并且揭示了其对于eEF1A2与Shp2体外相互作用的重要性。因此,尽管eEF1A的两种同工型均可参与磷酸酪氨酸介导的过程中,eEF1A2显然具有更大的参与这种信号通路的潜力。由于酪氨酸激酶/磷酸酶在人类癌症发生中起着重要作用,因此我们的观察结果可能为最近发现eEF1A2同工型的致癌性提供基础。

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