首页> 美国卫生研究院文献>Molecular and Cellular Biology >The β/Gcd7 Subunit of Eukaryotic Translation Initiation Factor 2B (eIF2B) a Guanine Nucleotide Exchange Factor Is Crucial for Binding eIF2 In Vivo
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The β/Gcd7 Subunit of Eukaryotic Translation Initiation Factor 2B (eIF2B) a Guanine Nucleotide Exchange Factor Is Crucial for Binding eIF2 In Vivo

机译:鸟嘌呤核苷酸交换因子真核翻译起始因子2B(eIF2B)的β/ Gcd7亚基对于体内结合eIF2至关重要

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摘要

Eukaryotic translation initiation factor 2B (eIF2B) is the guanine nucleotide exchange factor (GEF) for eukaryotic translation initiation factor 2, which stimulates formation of the eIF2-GTP-Met-tRNA iMet ternary complex (TC) in a manner inhibited by phosphorylated eIF2 [eIF2(αP)]. While eIF2B contains five subunits, the ɛ/Gcd6 subunit is sufficient for GEF activity in vitro. The δ/Gcd2 and β/Gcd7 subunits function with α/Gcn3 in the eIF2B regulatory subcomplex that mediates tight, inhibitory binding of eIF2(αP)-GDP, but the essential functions of δ/Gcd2 and β/Gcd7 are not well understood. We show that the depletion of wild-type β/Gcd7, three lethal β/Gcd7 amino acid substitutions, and a synthetically lethal combination of substitutions in β/Gcd7 and eIF2α all impair eIF2 binding to eIF2B without reducing ɛ/Gcd6 abundance in the native eIF2B-eIF2 holocomplex. Additionally, β/Gcd7 mutations that impair eIF2B function display extensive allele-specific interactions with mutations in the S1 domain of eIF2α (harboring the phosphorylation site), which binds to eIF2B directly. Consistent with this, β/Gcd7 can overcome the toxicity of eIF2(αP) and rescue native eIF2B function when overexpressed with δ/Gcd2 or γ/Gcd1. In aggregate, these findings provide compelling evidence that β/Gcd7 is crucial for binding of substrate by eIF2B in vivo, beyond its dispensable regulatory role in the inhibition of eIF2B by eIF (αP).
机译:真核翻译起始因子2B(eIF2B)是真核翻译起始因子2的鸟嘌呤核苷酸交换因子(GEF),可刺激eIF2-GTP-Met-tRNA i Met 三元复合物(TC)的形成。以被磷酸化的eIF2 [eIF2(αP)]抑制的方式表达。尽管eIF2B包含五个亚基,但ɛ/ Gcd6亚基足以在体外实现GEF活性。 δ/ Gcd2和β/ Gcd7亚基在介导eIF2(αP)-GDP的紧密抑制结合的eIF2B调节亚复合物中与α/ Gcn3一起起作用,但对δ/ Gcd2和β/ Gcd7的基本功能尚不甚了解。我们显示,野生型β/ Gcd7的耗竭,三个致命的β/ Gcd7氨基酸取代以及β/ Gcd7和eIF2α的合成致死组合都损害eIF2与eIF2B的结合,而不会降低天然的ɛ/ Gcd6丰度。 eIF2B-eIF2完整复合体。此外,损害eIF2B功能的β/ Gcd7突变与eIF2α的S1结构域中的突变(具有磷酸化位点)具有广泛的等位基因特异性相互作用,后者直接与eIF2B结合。与此相一致,当以δ/ Gcd2或γ/ Gcd1过表达时,β/ Gcd7可以克服eIF2(αP)的毒性并挽救天然eIF2B的功能。总体而言,这些发现提供了令人信服的证据,证明β/ Gcd7对于eIF2B在体内结合底物至关重要,除了其在eIF(αP)抑制eIF2B方面的可调节作用之外。

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