Andjelković N, Zolnierowicz S, Van Hoof C, Goris J, Hemmings B A
Friedrich Miescher-Institut, Basel, Switzerland.
EMBO J. 1996 Dec 16;15(24):7156-67.
By a number of criteria, we have demonstrated that the translation termination factor eRF1 (eukaryotic release factor 1) associates with protein phosphatase 2A (PP2A). Trimeric PP2A1 was purified from rabbit skeletal muscle using an affinity purification step. In addition to the 36 kDa catalytic subunit (PP2Ac) and established regulatory subunits of 65 kDa (PR65) and 55 kDa (PR55), purified preparations contained two proteins with apparent Mrs of 54 and 55 kDa. Protein microsequencing revealed that the 55 kDa component is a novel protein, whereas the 54 kDa protein was identified as eRF1, a protein that functions in translational termination as a polypeptide chain release factor. Using the yeast two-hybrid system, human eRF1 was shown to interact specifically with PP2Ac, but not with the PR65 or PR55 subunits. By deletion analysis, the binding domains were found to be located within the 50 N-terminal amino acids of PP2Ac, and between amino acid residues 338 and 381 in the C-terminal part of human eRF1. This association also occurs in vivo, since PP2A can be co-immunoprecipitated with eRF1 from mammalian cells. We observed a significant increase in the amount of PP2A associated with the polysomes when eRF1 was transiently expressed in COS1 cells, and eRF1 immunoprecipitated from those fractions contained associated PP2A. Since we did not observe any dramatic effects of PP2A on the polypeptide chain release activity of eRF1 (or vice versa), we postulate that eRF1 also functions to recruit PP2A into polysomes, thus bringing the phosphatase into contact with putative targets among the components of the translational apparatus.
基于多项标准,我们已证明翻译终止因子eRF1(真核释放因子1)与蛋白磷酸酶2A(PP2A)相关联。使用亲和纯化步骤从兔骨骼肌中纯化出三聚体PP2A1。除了36 kDa的催化亚基(PP2Ac)以及已确定的65 kDa调节亚基(PR65)和55 kDa调节亚基(PR55)外,纯化制剂中还包含两种表观分子量分别为54 kDa和55 kDa的蛋白质。蛋白质微量测序表明,55 kDa的成分是一种新蛋白质,而54 kDa的蛋白质被鉴定为eRF1,一种作为多肽链释放因子在翻译终止中起作用的蛋白质。使用酵母双杂交系统,已证明人eRF1与PP2Ac特异性相互作用,但不与PR65或PR55亚基相互作用。通过缺失分析,发现结合域位于PP2Ac的50个N端氨基酸内,以及人eRF1 C端部分的氨基酸残基338和381之间。这种关联在体内也会发生,因为PP2A可以与来自哺乳动物细胞的eRF1进行共免疫沉淀。当eRF1在COS1细胞中瞬时表达时,我们观察到与多核糖体相关的PP2A量显著增加,并且从这些组分中免疫沉淀的eRF1含有相关的PP2A。由于我们未观察到PP2A对eRF1的多肽链释放活性有任何显著影响(反之亦然),我们推测eRF1还起到将PP2A募集到多核糖体中的作用,从而使磷酸酶与翻译装置各组分中的假定靶标接触。