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Phosphorylation of mammalian translation initiation factor 5 (eIF5) in vitro and in vivo

机译:哺乳动物翻译起始因子5(eIF5)在体外和体内的磷酸化

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Eukaryotic translation initiation factor 5 (eIF5) interacts with the 40S initiation complex (40S-eIF3-AUG-Met-tRNA_f·eIF2·GTP) and, acting as a GTPase activating protein, promotes the hydrolysis of bound GTP. We isolated a protein kinase form rabbit reticulocyte lysates on the basis of its ability to phosphorylate purified bacterially expressed recombinant rat eIF5. Physical, biochemical and antigenic properties of this kinase identify it as casein kinase II (CK II). Mass spectrometric analysis of maximally in vitro phosphorylated eIF5 localized the major phosphorylation sites at Ser-387 and Ser-388 near the C-terminus of eIF5. These serine residues are embedded within a cluster of acidic amino acid residues and account for nearly 90% of the total in vitro eIF5 phosphorylation. A minor phosphorylation site at Ser-174 was also observed. Alanine substitution mutagenesis at Ser-387 and Ser-388 of eIF5 abolishes phosphorylation by the purified kinase as well as by crude reticulocyte lysates. The same mutations also abolish phosphorylation of eIF5 when transfected into mammalian cells suggesting that CK II phosphorylates eIF5 at these two serine residues in vivo as well.
机译:真核翻译起始因子5(eIF5)与40S起始复合物(40S-eIF3-AUG-Met-tRNA_f·eIF2·GTP)相互作用,并作为GTPase激活蛋白,促进结合的GTP的水解。我们基于兔网织红细胞裂解物的蛋白激酶分离能力,将其磷酸化纯化的细菌表达的重组大鼠eIF5。该激酶的物理,生化和抗原特性将其鉴定为酪蛋白激酶II(CK II)。最大体外磷酸化eIF5的质谱分析将主要磷酸化位点定位在eIF5 C端附近的Ser-387和Ser-388。这些丝氨酸残基嵌入在酸性氨基酸残基簇中,占体外eIF5磷酸化总量的近90%。还观察到Ser-174处有少量磷酸化位点。 eIF5的Ser-387和Ser-388处的丙氨酸取代诱变消除了纯化激酶和粗网织细胞裂解液的磷酸化作用。当转染到哺乳动物细胞中时,相同的突变也消除了eIF5的磷酸化,提示CK II在体内也将这两个丝氨酸残基处的eIF5磷酸化。

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