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在80S起始复合物形成过程中放射性标记的真核起始因子2和3的结合与释放

Binding and release of radiolabeled eukaryotic initiation factors 2 and 3 during 80 S initiation complex formation.

作者信息

Peterson D T, Merrick W C, Safer B

出版信息

J Biol Chem. 1979 Apr 10;254(7):2509-16.

PMID:429297
Abstract

The AUG-dependent formation of an 80 S ribosomal initiation complex was studied using purified rabbit reticulocyte initiation factors radiolabeled by reductive methylation. The radiolabeled initiation factors were as biologically active as untreated factors. Reaction mixtures containing a variety of components (AUG, GTP, Met-tRNAf, initiation factors, and 40 S and 60 S ribosomal subunits) were incubated at 30 degrees C and then analyzed on linear sucrose gradients for the formation of ribosomal complexes. The results show that both eukaryotic initiation factor (eIF)-3 and the ternary complex (eIF-2.GTP.Met-tRNAf) bind independently to the 40 S subunit and each of these components enhances the binding of the other. All of the polypeptides of eIF-2 and eIF-3 participate in this binding. Formation of an 80 S ribosomal complex requires eIF-5 and 60 S subunits in a reaction that is stimulated by eIF-4C. Both eIF-2 and eIF-3 are released from the 40 S preinitiation complex during formation of the 80 S initiation complex. Release of eIF-2 and eIF-3 does not occur and 80 S ribosomal complexes are not formed if GTP is replaced by a nonhydrolyzable analog such as guanosine 5'-O3-(1,2-mu-imido)triphosphate. Despite a variety of attempts, it has not yet been possible to demonstrate binding of eIF-4C, eIF-4D, or eIF-5 to either 40 S or 80 S ribosomal complexes.

摘要

利用经还原甲基化放射性标记的纯化兔网织红细胞起始因子,研究了依赖AUG的80S核糖体起始复合物的形成。放射性标记的起始因子与未处理的因子具有相同的生物活性。将含有多种成分(AUG、GTP、Met-tRNAf、起始因子以及40S和60S核糖体亚基)的反应混合物在30℃下孵育,然后在线性蔗糖梯度上进行分析,以检测核糖体复合物的形成。结果表明,真核起始因子(eIF)-3和三元复合物(eIF-2·GTP·Met-tRNAf)均能独立结合到40S亚基上,并且这些成分中的每一种都能增强另一种的结合。eIF-2和eIF-3的所有多肽都参与这种结合。80S核糖体复合物的形成在由eIF-4C刺激的反应中需要eIF-5和60S亚基。在80S起始复合物形成过程中,eIF-2和eIF-3均从40S起始前复合物中释放。如果用不可水解的类似物如鸟苷5'-O3-(1,2-μ-亚氨基)三磷酸取代GTP,则不会发生eIF-2和eIF-3的释放,也不会形成80S核糖体复合物。尽管进行了各种尝试,但尚未能够证明eIF-4C、eIF-4D或eIF-5与40S或80S核糖体复合物的结合。

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