Kornblatt Mary Judith
Enzyme Research Group, Department of Chemistry and Biochemistry, Concordia University, Montreal, Quebec, Canada H4B 1R6.
Biochim Biophys Acta. 2005 Apr 15;1748(1):20-5. doi: 10.1016/j.bbapap.2004.11.020. Epub 2004 Dec 31.
During the reaction catalyzed by enolase, a mobile loop, residues 36-45, closes over the active site. In order to probe the role of this loop movement in catalysis, the glycines at positions 37 and 41 of rabbit muscle enolase (beta beta) have been mutated to alanines. The mutant forms-G37A and G41A-of enolase are both active, but have altered selectivity for divalent cations. G37A, when assayed with Mg(2+), has 12% the activity of the wild type. However, it is twice as active as wild type when assayed with Mn(2+), Zn(2+), or Co(2+). G41A has 4% the activity of the wild type with Mg(2+), is more active than wild type with Co(2+), and slightly less active than wild type with Mn(2+) and Zn(2+). The kinetic isotope effect for both mutants is greater than that of the wild type with all 4 divalent cations. These results indicate that the flexibility of this loop has subtle effects on catalytic activity.
在烯醇酶催化的反应过程中,一个位于36 - 45位残基的可移动环会闭合覆盖活性位点。为了探究该环移动在催化过程中的作用,兔肌肉烯醇酶(ββ)37位和41位的甘氨酸已被突变为丙氨酸。烯醇酶的突变形式——G37A和G41A——均具有活性,但对二价阳离子的选择性发生了改变。用Mg(2+)进行测定时,G37A的活性为野生型的12%。然而,用Mn(2+)、Zn(2+)或Co(2+)进行测定时,其活性是野生型的两倍。用Mg(2+)进行测定时,G41A的活性为野生型的4%,用Co(2+)进行测定时比野生型更具活性,用Mn(2+)和Zn(2+)进行测定时比野生型活性略低。对于这两种突变体,在所有4种二价阳离子存在的情况下,动力学同位素效应均大于野生型。这些结果表明该环的灵活性对催化活性有微妙的影响。