Hokin L E
J Exp Zool. 1975 Oct;194(1):197-205. doi: 10.1002/jez.1401940113.
Recent work in our laboratory on the purification and characterization of the (sodium + potassium)-activated adenosinetriphosphatase (NaK ATPase) has been reviewed. Two enzymes have been purified, that from the rectal salt gland of the spiny dogfish, Squalus acanthias and that from the electric organ of the electric eel, Electrophorus electricus. The enzyme appears to consist of two catalytic subunits of molecular weight of about 95,000 and one glycoprotein with a molecular weight of about 50,000. The amino acid composition, N-terminal amino acids, and the carbohydrate composition of these subunits have been determined. The phospholipid composition of the holoenzyme has also been determined. The protein component shows very little variation with evolution, but the carbohydrate and phospholipid components show considerable variation. It has been possible to form vesicles from the purified enzyme from Squalus acanthias and to demonstrate the ATP-dependent, ouabain inhibitable, coupled uphill transports of Na+ and K+. The properties of these transports are very similar to those observed previously in intact erythrocytes or resealed erythrocyte ghosts with respect to asymmetries of binding sites, stoichiometries of Na+ and K+ transported, Na+-Na+ exchange, and K+-K+ exchange. It is concluded that the NaK ATPase is the molecular machine for effecting Na+ and K+ transport in the intact cell membrane.
本文综述了我们实验室近期关于(钠+钾)激活的三磷酸腺苷酶(NaK ATPase)的纯化及特性研究工作。已纯化出两种酶,一种来自棘鲨(Squalus acanthias)的直肠盐腺,另一种来自电鳗(Electrophorus electricus)的电器官。该酶似乎由两个分子量约为95,000的催化亚基和一个分子量约为50,000的糖蛋白组成。已确定了这些亚基的氨基酸组成、N端氨基酸以及碳水化合物组成。还确定了全酶的磷脂组成。蛋白质成分在进化过程中变化很小,但碳水化合物和磷脂成分变化较大。已能用来自棘鲨的纯化酶形成囊泡,并证明了依赖ATP、哇巴因可抑制的Na⁺和K⁺的偶联上坡转运。这些转运特性在结合位点的不对称性、转运的Na⁺和K⁺化学计量、Na⁺-Na⁺交换以及K⁺-K⁺交换方面与先前在完整红细胞或重新封闭的红细胞血影中观察到的非常相似。结论是,NaK ATPase是完整细胞膜中实现Na⁺和K⁺转运的分子机器。