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猪肝和肌肉烯醇化酶的纯化及性质

Purification and properties of pig liver and muscle enolases.

作者信息

Farrar W W, Deal W C

机构信息

Department of Biochemistry, Michigan State University, East Lansing, USA.

出版信息

J Protein Chem. 1995 Aug;14(6):487-97. doi: 10.1007/BF01888143.

Abstract

Enolases (2-phospho-D-glycerate hydrolase, EC 4.2.1.11) were purified from both pig liver and muscle. Graphs of 1n C vs. r2 from sedimentation equilibrium experiments are linear, which suggests homogeneous preparations of liver and muscle enolases. From these data the molecular weight of liver enolase is calculated to be approximately 92,000 D and that of muscle enolase to be approximately 85,000 D. SDS-PAGE experiments give a molecular weight value of 46,000 D for liver enolase and a value of 44,000 D for muscle enolase. These molecular weight values for liver and muscle enzymes are within the range for other enolases and show that both of these pig enolases are dimers. Amino acid composition data support the sedimentation equilibrium data and also give a smaller molecule weight (84,968 D) for muscle enolase compared to that of the liver enzyme (89,021 D). The two enzymes differ in their content of lysine [liver enolase (L) = 94 residues, muscle enolase (M) = 68 residues], histidine (L = 13, M = 21), serine (L = 53, M = 36), proline (L = 52, M = 34), and cysteine (L = 4, M = 21). Partial specific volumes of 0.737 ml/g for liver enolase and 0.735 ml/g for muscle enolase were calculated from the amino acid composition data. Pig liver and muscle enolases differ radically in their isoelectric points (pI = 6.4-6.5 for liver enolase, and pI = 8.8-9.0 for muscle enolase), and in their degree of inactivation by 740 mM LiCl (liver enolase is inactivated to a greater degree than the muscle enolase). Despite these physical and chemical differences, the kinetic constants [KM values for Mg2+, 2-phosphoglyceric acid, and phospho(enol)pyruvate] appear not to be significantly different for these two forms of enolase. The physical, chemical, and kinetic data for pig liver and muscle enolases are compared to similar data for pig kidney enolase.

摘要

烯醇化酶(2-磷酸-D-甘油酸水解酶,EC 4.2.1.11)是从猪肝和猪肌肉中纯化得到的。沉降平衡实验中1n C对r2作图得到的曲线呈线性,这表明猪肝和猪肌肉烯醇化酶的制剂是均一的。根据这些数据计算得出,猪肝烯醇化酶的分子量约为92,000 D,猪肌肉烯醇化酶的分子量约为85,000 D。SDS-PAGE实验得出猪肝烯醇化酶的分子量值为46,000 D,猪肌肉烯醇化酶的分子量值为44,000 D。猪肝和猪肌肉中这些酶的分子量值在其他烯醇化酶的分子量范围内,表明这两种猪烯醇化酶均为二聚体。氨基酸组成数据支持沉降平衡数据,并且与猪肝烯醇化酶相比,猪肌肉烯醇化酶的分子量更小(84,968 D)。这两种酶在赖氨酸含量上有所不同[猪肝烯醇化酶(L)= 94个残基,猪肌肉烯醇化酶(M)= 68个残基],组氨酸(L = 13,M = 21),丝氨酸(L = 53,M = 36),脯氨酸(L = 52,M = 34)和半胱氨酸(L = 4,M = 21)。根据氨基酸组成数据计算得出猪肝烯醇化酶的偏比容为0.737 ml/g,猪肌肉烯醇化酶的偏比容为0.735 ml/g。猪肝和猪肌肉烯醇化酶的等电点差异很大(猪肝烯醇化酶的pI = 6.4 - 6.5,猪肌肉烯醇化酶的pI = 8.8 - 9.0),并且它们被740 mM LiCl灭活的程度也不同(猪肝烯醇化酶比猪肌肉烯醇化酶的灭活程度更大)。尽管存在这些物理和化学差异,但这两种形式的烯醇化酶的动力学常数[Mg2+、2-磷酸甘油酸和磷酸烯醇丙酮酸的KM值]似乎没有显著差异。将猪肝和猪肌肉烯醇化酶的物理、化学和动力学数据与猪肾烯醇化酶的类似数据进行了比较。

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