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Evolutionarily Conserved Binding of Translationally Controlled Tumor Protein to Eukaryotic Elongation Factor 1B

机译:翻译控制肿瘤蛋白与真核伸长因子1B的进化保守结合。

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摘要

Translationally controlled tumor protein (TCTP) is an abundant protein that is highly conserved in eukaryotes. However, its primary function is still not clear. Human TCTP interacts with the metazoan-specific eukaryotic elongation factor 1Bδ (eEF1Bδ) and inhibits its guanine nucleotide exchange factor (GEF) activity, but the structural mechanism remains unknown. The interaction between TCTP and eEF1Bδ was investigated by NMR titration, structure determination, paramagnetic relaxation enhancement, site-directed mutagenesis, isothermal titration calorimetry, and HADDOCK docking. We first demonstrated that the catalytic GEF domain of eEF1Bδ is not responsible for binding to TCTP but rather a previously unnoticed central acidic region (CAR) domain in eEF1Bδ. The mutagenesis data and the structural model of the TCTP-eEF1Bδ CAR domain complex revealed the key binding residues. These residues are highly conserved in eukaryotic TCTPs and in eEF1B GEFs, including the eukaryotically conserved eEF1Bα, implying the interaction may be conserved in all eukaryotes. Interactions were confirmed between TCTP and the eEF1Bα CAR domain for human, fission yeast, and unicellular photosynthetic microalgal proteins, suggesting that involvement in protein translation through the conserved interaction with eEF1B represents a primary function of TCTP.
机译:翻译控制的肿瘤蛋白(TCTP)是一种丰富的蛋白,在真核生物中高度保守。但是,其主要功能仍不清楚。人TCTP与后生动物特异性真核伸长因子1Bδ(eEF1Bδ)相互作用并抑制其鸟嘌呤核苷酸交换因子(GEF)的活性,但结构机制仍不清楚。通过NMR滴定,结构确定,顺磁弛豫增强,定点诱变,等温滴定量热法和HADDOCK对接研究了TCTP和eEF1Bδ之间的相互作用。我们首先证明了eEF1Bδ的催化GEF结构域不负责与TCTP的结合,而是eEF1Bδ中以前未被注意到的中央酸性区(CAR)结构域。 TCTP-eEF1BδCAR结构域复合物的诱变数据和结构模型揭示了关键的结合残基。这些残基在真核生物TCTP和eEF1B GEF中都高度保守,包括在真核生物中保守的eEF1Bα,这意味着相互作用在所有真核生物中都可能是保守的。确认了TCTP与eEF1BαCAR结构域之间的相互作用,涉及人,裂殖酵母和单细胞光合微藻蛋白,这表明通过与eEF1B的保守相互作用参与蛋白质翻译代表了TCTP的主要功能。

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