Yoon Jeong-Jun, Hattori Takefumi, Shimada Mikio
Wood Research Institute, Kyoto University, Uji, Kyoto 611-0011, Japan.
Biosci Biotechnol Biochem. 2003 Jan;67(1):114-20. doi: 10.1271/bbb.67.114.
NADP-linked isocitrate dehydrogenase (EC 1.1.1.42), a key enzyme of the tricarboxylic acid cycle, was purified 672-fold as a nearly homogeneous protein from the copper-tolerant wood-rotting basidiomycete Fomitopsis palustris. The purified enzyme, with a molecular mass of 115 kDa, consisted of two 55-kDa subunits, and had the Km of 12.7, 2.9, and 23.9 microM for isocitrate, NADP, and Mg2+, respectively, at the optimal pH of 9.0. The enzyme had maximum activity in the presence of Mg2+, which also helped to prevent enzyme inactivation during the purification procedures and storage. The enzyme activity was competitively inhibited by 2-oxoglutarate (K(i), 127.0 microM). Although adenine nucleotides and other compounds, including some of the metabolic intermediates of glyoxylate and tricarboxylic acid cycles, had no or only slight inhibition, a mixture of oxaloacetate and glyoxylate potently inhibited the enzyme activity and the inhibition pattern was a mixed type.
NADP 连接的异柠檬酸脱氢酶(EC 1.1.1.42)是三羧酸循环的关键酶,从耐铜木腐担子菌沼泽拟层孔菌中纯化得到了一种近乎纯的蛋白质,纯化倍数为 672 倍。纯化后的酶分子量为 115 kDa,由两个 55 kDa 的亚基组成,在最适 pH 9.0 时,对异柠檬酸、NADP 和 Mg2+的 Km 值分别为 12.7、2.9 和 23.9 μM。该酶在 Mg2+存在时具有最大活性,Mg2+还有助于防止酶在纯化过程和储存期间失活。该酶活性受到 2-氧代戊二酸的竞争性抑制(抑制常数 Ki 为 127.0 μM)。尽管腺嘌呤核苷酸和其他化合物,包括乙醛酸循环和三羧酸循环的一些代谢中间体,没有抑制作用或只有轻微抑制,但草酰乙酸和乙醛酸的混合物强烈抑制酶活性,且抑制模式为混合型。