Lacapère J J, Robert J C, Thomas-Soumarmon A
Section de Recherche, UMR-168 CNRS, LCR-8 CEA, Institut Curie, 11 rue P. et M. Curie, 75231 Paris, France.
Biochem J. 2000 Jan 15;345 Pt 2(Pt 2):239-45.
When gastric H(+),K(+)-ATPase-containing microsomes are solubilized by detergents, a rapid loss of ATPase activity is generally observed. In this article, SDS/PAGE of octa(ethylene glycol)dodecyl monoether (C(12)E(8))- and n-dodecyl beta-d-maltoside-solubilized microsomes and their purifications by affinity chromatography on Reactive Red column reveal that inactivation is due to two main effects. (i) Solubilization activates an aspartic protease that cleaves down the alpha-subunit of the H(+),K(+)-ATPase. Addition of pepstatin A at slightly acidic pH and at low temperature prevents the proteolysis. (ii) A too-harsh delipidation inactivates the ATPase. When n-dodecyl-beta-d-maltoside is the detergent, the soluble H(+), K(+)-ATPase is highly active (2.5 micromol/mg per h at pH 6.0 and 5 degrees C) as long as ATP is added. When C(12)E(8) is used, the detergent induces an inactivation due to delipidation, since addition of lipids restores activity. The two subunits of the H(+), K(+)-ATPase are present in equimolar ratio in the n-dodecyl beta-d-maltoside-purified complex. Moreover, two main types of complex (330 and 660 kDa) were resolved in non-denaturing gels and should be the dimeric (alphabeta)(2) and tetrameric (alphabeta)(4) heterodimers respectively. In conclusion, purification of active, stable, soluble complexes of H(+),K(+)-ATPase with few lipids (a lipid/protein ratio of 0.25, w/w) has been achieved. This material should be useful for further structural studies.
当含胃H⁺,K⁺-ATP酶的微粒体用去污剂溶解时,通常会观察到ATP酶活性迅速丧失。在本文中,用八聚乙二醇十二烷基单醚(C₁₂E₈)和正十二烷基-β-D-麦芽糖苷溶解的微粒体进行SDS/PAGE,并通过在活性红柱上进行亲和层析对其进行纯化,结果表明失活是由两个主要效应引起的。(i)溶解激活了一种天冬氨酸蛋白酶,该酶会切割H⁺,K⁺-ATP酶的α亚基。在微酸性pH和低温下添加胃蛋白酶抑制剂A可防止蛋白水解。(ii)过于剧烈的脱脂会使ATP酶失活。当正十二烷基-β-D-麦芽糖苷作为去污剂时,只要添加ATP,可溶性H⁺,K⁺-ATP酶就具有高活性(在pH 6.0和5℃时为2.5微摩尔/毫克·小时)。当使用C₁₂E₈时,去污剂会因脱脂而导致失活,因为添加脂质可恢复活性。H⁺,K⁺-ATP酶的两个亚基在正十二烷基-β-D-麦芽糖苷纯化的复合物中以等摩尔比存在。此外,在非变性凝胶中解析出两种主要类型的复合物(330和660 kDa),它们应该分别是二聚体(αβ)₂和四聚体(αβ)₄异二聚体。总之,已实现了对含少量脂质(脂质/蛋白质比为0.25,w/w)的活性、稳定、可溶性H⁺,K⁺-ATP酶复合物的纯化。该材料应有助于进一步的结构研究。