Kobayashi T, Ishida T, Horiike K, Takahara Y, Numao N, Nakazawa A, Nakazawa T, Nozaki M
Department of Biochemistry, Shiga University of Medical Science.
J Biochem. 1995 Mar;117(3):614-22. doi: 10.1093/oxfordjournals.jbchem.a124753.
The cloned xylE gene encoding catechol 2,3-dioxygenase (metapyrocatechase) from TOL plasmid in Pseudomonas putida mt-2 has been expressed in Escherichia coli W3110 to a level of approximately 15% of the total soluble protein. Of the total iron in the crude extract, 45% was on the enzyme. The crystallized enzyme from E. coli had higher iron content (3.7 mol/mol enzyme) and specific activity (536 U/mg) than the enzyme from P. putida mt-2. However, no differences were observed in physicochemical, protein-chemical, and kinetic properties between the two enzymes. The enzyme was a homotetramer, and no changes were observed in the values of M(r) (136,000 +/- 5,000) and Stokes radius (4.26 nm) in the concentration range from 0.36 nM to 2.8 microM, indicating that the native enzyme neither dissociated into subunits nor polymerized in this range. The catalytic center activity and the Km values for catechol and dioxygen were 278 s-1, 1.87 and 7.45 microM, respectively, at pH 7.5 and 25 degrees C. The enzyme showed a broad substrate specificity. Among substrates, 4-methylcatechol and 4-chlorocatechol showed specificity constants (approximately 200 microM-1.s-1) higher than that for catechol. Acetone and phenol derivatives competitively inhibited the activity against catechol. The relationship between specific activity and iron content was not linear, suggesting some conformational changes in the partially iron-depleted enzyme.
从恶臭假单胞菌mt-2的TOL质粒中克隆得到的编码儿茶酚2,3-双加氧酶(间苯二酚酶)的xylE基因已在大肠杆菌W3110中表达,表达水平约占总可溶性蛋白的15%。粗提物中的总铁含量有45%存在于该酶上。大肠杆菌中结晶的酶比恶臭假单胞菌mt-2中的酶具有更高的铁含量(3.7摩尔/摩尔酶)和比活性(536 U/mg)。然而,两种酶在物理化学、蛋白质化学和动力学性质方面未观察到差异。该酶是同四聚体,在0.36 nM至2.8 μM的浓度范围内,M(r)(136,000 ± 5,000)和斯托克斯半径(4.26 nm)的值未发生变化,这表明天然酶在此范围内既不会解离成亚基也不会聚合。在pH 7.5和25℃条件下,儿茶酚和双加氧的催化中心活性以及Km值分别为278 s-1、1.87和7.45 μM。该酶表现出广泛的底物特异性。在底物中,4-甲基儿茶酚和4-氯儿茶酚的特异性常数(约200 μM-1·s-1)高于儿茶酚。丙酮和酚类衍生物竞争性抑制针对儿茶酚的活性。比活性与铁含量之间的关系不是线性的,这表明部分缺铁的酶存在一些构象变化。