首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Human Eukaryotic Initiation Factor 4G (eIF4G) Protein Binds to eIF3c -d and -e to Promote mRNA Recruitment to the Ribosome
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Human Eukaryotic Initiation Factor 4G (eIF4G) Protein Binds to eIF3c -d and -e to Promote mRNA Recruitment to the Ribosome

机译:人类真核生物起始因子4G(eIF4G)蛋白与eIF3c-d和-e结合以促进向核糖体的mRNA募集

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摘要

Recruitment of mRNA to the 40S ribosomal subunit requires the coordinated interaction of a large number of translation initiation factors. In mammals, the direct interaction between eukaryotic initiation factor 4G (eIF4G) and eIF3 is thought to act as the molecular bridge between the mRNA cap-binding complex and the 40S subunit. A discrete ∼90 amino acid domain in eIF4G is responsible for binding to eIF3, but the identity of the eIF3 subunit(s) involved is less clear. The eIF3e subunit has been shown to directly bind eIF4G, but the potential role of other eIF3 subunits in stabilizing this interaction has not been investigated. It is also not clear if the eIF4A helicase plays a role in stabilizing the interaction between eIF4G and eIF3. Here, we have used a fluorescence anisotropy assay to demonstrate that eIF4G binds to eIF3 independently of eIF4A binding to the middle region of eIF4G. By using a site-specific cross-linking approach, we unexpectedly show that the eIF4G-binding surface in eIF3 is comprised of the -c, -d and -e subunits. Screening multiple cross-linker positions reveals that eIF4G contains two distinct eIF3-binding subdomains within the previously identified eIF3-binding domain. Finally, by employing an eIF4G-dependent translation assay, we establish that both of these subdomains are required for efficient mRNA recruitment to the ribosome and stimulate translation. Our study reveals unexpected complexity to the eIF3-eIF4G interaction that provides new insight into the regulation of mRNA recruitment to the human ribosome.
机译:将mRNA招募至40S核糖体亚基需要大量翻译起始因子的协同相互作用。在哺乳动物中,真核生物起始因子4G(eIF4G)与eIF3之间的直接相互作用被认为是mRNA帽结合复合物与40S亚基之间的分子桥梁。 eIF4G中约90个氨基酸的离散结构域负责与eIF3结合,但所涉及的eIF3亚基的身份尚不清楚。已显示eIF3e亚基直接结合eIF4G,但尚未研究其他eIF3亚基在稳定这种相互作用中的潜在作用。还不清楚eIF4A解旋酶是否在稳定eIF4G和eIF3之间的相互作用中起作用。在这里,我们已经使用荧光各向异性测定法来证明eIF4G绑定到eIF3,而与eIF4A绑定到eIF4G的中间区域无关。通过使用特定于站点的交联方法,我们意外地显示出eIF3中的eIF4G结合表面由-c,-d和-e亚基组成。筛选多个交联剂位置发现,eIF4G在先前鉴定的eIF3结合域内包含两个不同的eIF3结合亚域。最后,通过采用eIF4G依赖性翻译测定,我们确定这两个子域都是有效的mRNA募集到核糖体并刺激翻译所必需的。我们的研究揭示了eIF3-eIF4G相互作用的意想不到的复杂性,从而为调节人类核糖体的mRNA募集提供了新的见识。

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