Benne R, Amesz H, Hershey J W, Voorma H O
J Biol Chem. 1979 May 10;254(9):3201-5.
Ternary complex formation between [3H]Met-tRNAf, [14C]H3-eIF-2, and GTP was measured on nitrocellulose filters. It is shown that [3H]Met-tRNAf and [14C]H3-eIF-2 are present on the filter in equimolar amounts when ATP, creatine phosphate, and creatine kinase are included in the reaction mixture. Under these conditions the factor is 100% active. With small amounts of factor significant losses occur due to adsorption to the wall of the reaction vessels, resulting in seemingly low activities of eIF-2. These losses can be prevented by the presence of "stimulatory" proteins, which enhance the recovery of both [3H]Met-tRNAf and [14C]H3-eIF-2 on the filter but do not alter their ratio.
在硝酸纤维素滤膜上测定了[3H]甲硫氨酰 - tRNAf、[14C]H3 - eIF - 2和GTP之间三元复合物的形成。结果表明,当反应混合物中包含ATP、磷酸肌酸和肌酸激酶时,[3H]甲硫氨酰 - tRNAf和[14C]H3 - eIF - 2以等摩尔量存在于滤膜上。在这些条件下,该因子具有100%的活性。当因子量较少时,由于吸附到反应容器壁上会导致显著损失,从而使eIF - 2的活性看似较低。“刺激”蛋白的存在可以防止这些损失,这些蛋白可提高[3H]甲硫氨酰 - tRNAf和[14C]H3 - eIF - 2在滤膜上的回收率,但不会改变它们的比例。