Gorsich S W, Barrows V, Halbert J, Farrar W W
Department of Biological Sciences, Eastern Kentucky University, Richmond, Kentucky, 40475, USA.
J Protein Chem. 1999 Jan;18(1):103-15. doi: 10.1023/a:1020659802760.
Isoelectric focusing revealed three enolase isoforms in pig brain, which were designated as alphaalpha-(pI = 6.5), alphagamma- (pI = 5.6), and gammagamma-enolase (pI = 5.2). The pI of purified gammagamma-enolase was also 5.2. The gammagamma-enolase isoform of enolase was purified from pig brain by a purification protocol involving heating to 55 degrees C for 3 min, acetone precipitation, ammonium sulfate precipitation (40%-80%), DEAE Sephadex ion-exchange chromatography (pH 6.2), and Sephadex G200 gel filtration. The final specific activity was 82 units/mg protein. As with other vertebrate enolases, gammagamma-enolase from pig proved to be a dimer with a native mass of 85 kDa and a subunit mass of 45 kDa. The pH optimum for the reaction in the glycolytic direction is 7.2. The Km values for 2-PGA, PEP, and Mg2+ were determined to be 0.05, 0.25, and 0.50 mM, respectively, similar to Km values of other vertebrate enolases. The amino acid composition of pig gammagamma-enolase, as determined by amino acid analysis, shows strong similarity to the compositions of gammagamma-enolases from rat, human, and mouse, as determined from their amino acid sequences. Despite the differences seen with some residues, and considering the ways that the compositions were obtained, it is assumed that pig gammagamma-enolase is more similar than the composition data would indicate. Moreover, it is likely that the sequences of pig gammagamma-enolase and the other gammagamma-enolases are almost identical. Li+ proved to be a noncompetitive inhibitor with either 2-PGA or Mg2+ as the variable substrate. This enolase crystallized in the monoclinic space group P2, or P2(1). An Rsymm <5% was obtained for data between 50 and 3.65 A, but was a disappointing 30% for data between 3.65 and 3.10 A, indicating crystal disorder.
等电聚焦显示猪脑中存在三种烯醇化酶同工型,分别命名为αα-(pI = 6.5)、αγ-(pI = 5.6)和γγ-烯醇化酶(pI = 5.2)。纯化后的γγ-烯醇化酶的pI也为5.2。通过包括在55℃加热3分钟、丙酮沉淀、硫酸铵沉淀(40%-80%)、DEAE Sephadex离子交换色谱(pH 6.2)和Sephadex G200凝胶过滤的纯化方案,从猪脑中纯化出烯醇化酶的γγ-烯醇化酶同工型。最终的比活性为82单位/毫克蛋白质。与其他脊椎动物的烯醇化酶一样,猪的γγ-烯醇化酶被证明是一种二聚体,天然质量为85 kDa,亚基质量为45 kDa。糖酵解方向反应的最适pH为7.2。2-磷酸甘油酸(2-PGA)、磷酸烯醇式丙酮酸(PEP)和Mg2+的米氏常数(Km)分别测定为0.05、0.25和0.50 mM,与其他脊椎动物烯醇化酶的Km值相似。通过氨基酸分析测定的猪γγ-烯醇化酶的氨基酸组成,与根据大鼠、人类和小鼠的氨基酸序列测定的它们的γγ-烯醇化酶的组成显示出很强的相似性。尽管在一些残基上存在差异,并且考虑到组成的获得方式,但可以认为猪γγ-烯醇化酶比组成数据所显示的更相似。此外,猪γγ-烯醇化酶和其他γγ-烯醇化酶的序列很可能几乎相同。Li+被证明是以2-PGA或Mg2+作为可变底物时的非竞争性抑制剂。这种烯醇化酶在单斜空间群P2或P2(1)中结晶。对于50至3.65 Å之间的数据,Rsymm<5%,但对于3.65至3.10 Å之间的数据,令人失望地为30%,表明晶体无序。