Rabon E C, Gunther R D, Bassilian S, Kempner E S
Center for Ulcer Research and Education, Veterans Administration Center, Wadsworth Division, Los Angeles, California 90073.
J Biol Chem. 1988 Nov 5;263(31):16189-94.
The oligomeric size of the H,K-ATPase was determined in frozen gastric microsomal vesicles irradiated with high energy electrons. Target sizes of various catalytic activities associated with H,K-ATPase function fell into two distinct groups. The lower group of target sizes described the radiation-induced loss of steady-state phosphoenzyme and structural monomer: the MgATP-dependent formation of a beta-aspartyl phosphate exhibited a size range of 133-147 kDa; the size range for the structural measurement (i.e. loss of H,K-ATPase monomer on sodium dodecyl sulfate-polyacrylamide gels) was 92-143 kDa. In contrast, a larger group of target sizes described the loss of full cycle catalytic activities (i.e. K+-dependent stimulation of p-nitrophenyl phosphate and ATP hydrolysis). The K+-phosphatase and K+-stimulated ATPase exhibited target sizes fo 200 +/- 13 and 232 +/- 23 kDa, respectively. The lower target size group represents the first evidence that a monomer of the catalytic subunit maintains partial enzyme function. The larger group of target sizes describing K+-phosphatase and ATPase activities suggest that subunit interactions contribute to full cycle catalytic activity. Subunit interactions appear to be involved in all ion transport activities. Passive Rb+ exchange and active H+ transport in reconstituted proteoliposomes exhibited target sizes of 233n = 2 and 388 +/- 48 kDa, respectively. H+ transport appears to require a subunit arrangement more complex than that associated with catalytic activity or passive ion transport.
通过用高能电子照射冷冻的胃微粒体囊泡,测定了H,K - ATP酶的寡聚体大小。与H,K - ATP酶功能相关的各种催化活性的靶标大小分为两个不同的组。较低的靶标大小组描述了辐射诱导的稳态磷酸酶和结构单体的损失:MgATP依赖性β-天冬氨酰磷酸的形成表现出133 - 147 kDa的大小范围;结构测量的大小范围(即十二烷基硫酸钠 - 聚丙烯酰胺凝胶上H,K - ATP酶单体的损失)为92 - 143 kDa。相比之下,较大的靶标大小组描述了全周期催化活性的损失(即K + 依赖性对磷酸对硝基苯酯和ATP水解的刺激)。K + - 磷酸酶和K + 刺激的ATP酶的靶标大小分别为200±13和232±23 kDa。较低的靶标大小组是催化亚基单体维持部分酶功能的首个证据。描述K + - 磷酸酶和ATP酶活性的较大靶标大小组表明亚基相互作用有助于全周期催化活性。亚基相互作用似乎参与所有离子转运活动。重组蛋白脂质体中的被动Rb + 交换和主动H + 转运的靶标大小分别为233n = 2和388±48 kDa。H + 转运似乎需要比与催化活性或被动离子转运相关的亚基排列更复杂的亚基排列。