Ochiai T, Fukunaga N, Sasaki S
J Biochem. 1979 Aug;86(2):377-84. doi: 10.1093/oxfordjournals.jbchem.a132536.
Two isozymes of NADP+-specific isocitrate dehydrogenase [ICDH; EC 1.1.1.42] were confirmed to be present in an obligately psychrophilic marine bacterium, Vibrio sp., strain ABE-1, on the basis of the temperature-activity curve and electrophoretic mobilities. These isozymes were separated and purified about 170-fold for isozyme I (specific activity at 40 degrees C, 24.3 units/mg protein) and about 180-fold for isozyme II (specific activity at 20 degrees C, 59.2 units/mg protein), though the isozymes were still not homogeneous. The molecular weights of these isozymes determined by gel filtration were both about 85,000, but the properties of the isozymes were considerably different from each other. The thermostability of isozyme I resembled those of mesophiles, but isozyme II was extremely labile above 20 degrees C. NaCl affected the ICDH isozymes in different ways; the salt protected isozyme I from heat inactivation, but not isozyme II. Nevertheless it enormously enhanced the activity of isozyme II at low concentrations. Moreover, these ICDH isozymes showed different pH optima, Km values for isocitrate, susceptibilities to concerted inhibition by glyoxylate plus oxalacetate, and effects of 2-mercaptoethanol on their stabilities.
基于温度-活性曲线和电泳迁移率,证实在专性嗜冷海洋细菌弧菌属菌株ABE-1中存在两种NADP⁺特异性异柠檬酸脱氢酶[ICDH;EC 1.1.1.42]同工酶。尽管这些同工酶仍不均一,但同工酶I(40℃时的比活性为24.3单位/毫克蛋白)被分离并纯化了约170倍,同工酶II(20℃时的比活性为59.2单位/毫克蛋白)被分离并纯化了约180倍。通过凝胶过滤测定,这些同工酶的分子量均约为85,000,但它们的性质彼此有很大差异。同工酶I的热稳定性类似于嗜温菌的热稳定性,但同工酶II在20℃以上极不稳定。NaCl对ICDH同工酶有不同影响;盐可保护同工酶I免受热失活,但对同工酶II无此作用。然而,它在低浓度时极大地增强了同工酶II的活性。此外,这些ICDH同工酶表现出不同的最适pH值、对异柠檬酸的Km值、对乙醛酸加草酰乙酸协同抑制的敏感性以及2-巯基乙醇对其稳定性的影响。