Thomas N S, Matts R L, Levin D H, London I M
J Biol Chem. 1985 Aug 15;260(17):9860-6.
Studies on the recycling of eukaryotic initiation factor 2 (eIF-2) during protein synthesis in normal and heme-deficient reticulocyte lysates indicate that eIF-2 binds physiologically to the 60 S ribosomal subunit. Several findings suggest that the 60 S subunit serves as a carrier for eIF-2 during protein synthesis. The addition of purified eIF-2 (beta-32P) to normal hemin-supplemented lysates results in its binding to polyribosomal 60 S subunits; the binding is temperature-dependent. In lysates inhibited by heme deficiency, phosphorylated eIF-2 alpha can be detected on polyribosomal 60 S subunits early in the initial linear phase of protein synthesis; after polyribosomal disaggregation and shut-off of protein synthesis, phosphorylated eIF-2 alpha accumulates on free 60 S ribosome subunits and on the 60 S subunits of 80 S ribosome couples. The phosphorylated eIF-2 alpha associated with the 60 S subunits in heme-deficient lysates appears to be present as the binary complex [eIF-2 (alpha P) X GDP]; the binding of this complex to the 60 S subunit is tight and is not affected by treatment with 25 mM EDTA or by sedimentation in sucrose gradients. Reversal of the inhibition of protein synthesis in heme-deficient lysates by the addition of reversing factor results in a rapid binding of reversing factor to the 60 S subunits and a concomitant dissociation of [eIF-2(alpha P) X GDP]. These findings suggest that the [eIF-2 X GDP] binary complex formed during the assembly of the 80 S initiation complex binds to the 60 S subunit of polyribosomes and is subsequently released by the action of reversing factor.
对正常和血红素缺乏的网织红细胞裂解物中蛋白质合成过程中真核起始因子2(eIF-2)循环利用的研究表明,eIF-2在生理条件下与60S核糖体亚基结合。多项研究结果表明,在蛋白质合成过程中,60S亚基充当eIF-2的载体。向补充了正常血红素的裂解物中添加纯化的eIF-2(β-32P)会导致其与多核糖体60S亚基结合;这种结合是温度依赖性的。在因血红素缺乏而受到抑制的裂解物中,在蛋白质合成初始线性阶段早期,可在多核糖体60S亚基上检测到磷酸化的eIF-2α;在多核糖体解聚和蛋白质合成停止后,磷酸化的eIF-2α会在游离的60S核糖体亚基和80S核糖体偶联体的60S亚基上积累。与血红素缺乏的裂解物中60S亚基相关联的磷酸化eIF-2α似乎以二元复合物[eIF-2(αP)×GDP]的形式存在;该复合物与60S亚基的结合紧密,不受25 mM EDTA处理或蔗糖梯度沉降的影响。通过添加逆转因子来逆转血红素缺乏的裂解物中蛋白质合成的抑制作用,会导致逆转因子迅速与60S亚基结合,并伴随[eIF-2(αP)×GDP]的解离。这些研究结果表明,在80S起始复合物组装过程中形成的[eIF-2×GDP]二元复合物与多核糖体的60S亚基结合,随后通过逆转因子的作用而释放。