Raychaudhuri P, Ghosh S, Maitra U
J Biol Chem. 1985 Jul 15;260(14):8306-11.
A potent guanosine diphosphatase activity that hydrolyzes GDP to 5'-GMP + Pi has been isolated and purified from the salt wash proteins of calf liver microsomes. The purified enzyme, a monomeric protein of approximate Mr 46,000, possesses nucleotide substrate specificity since, among the nucleoside diphosphates and triphosphates tested, only GDP and UDP are hydrolyzed by the enzyme. The relative affinity of the enzyme for GDP is, however, much higher than for UDP. The effect of the enzyme on the binary complex formed between eukaryotic initiation factor 2 (eIF-2) and GDP has also been investigated. The enzyme neither hydrolyzes GDP bound to eIF-2 nor catalyzes the exchange of eIF-2-bound GDP with GTP even in the presence of Met-tRNAf. The enzyme, therefore, is presumably not involved in recycling of eIF-2 in eukaryotic polypeptide chain initiation reaction. The possible biological function of the enzyme in maintaining the cellular pool of GTP-GDP is discussed.
一种能将GDP水解为5'-GMP + Pi的高效鸟苷二磷酸酶活性已从小牛肝微粒体的盐洗蛋白中分离并纯化出来。纯化后的酶是一种分子量约为46,000的单体蛋白,具有核苷酸底物特异性,因为在所测试的核苷二磷酸和三磷酸中,只有GDP和UDP能被该酶水解。然而,该酶对GDP的相对亲和力远高于UDP。还研究了该酶对真核起始因子2(eIF-2)与GDP形成的二元复合物的影响。即使在存在甲硫氨酰-tRNAf的情况下,该酶既不水解与eIF-2结合的GDP,也不催化eIF-2结合的GDP与GTP的交换。因此,该酶可能不参与真核多肽链起始反应中eIF-2的循环利用。讨论了该酶在维持细胞内GTP-GDP库中的可能生物学功能。