Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA 16802, USA.
Arch Biochem Biophys. 2013 Jan 1;529(1):11-7. doi: 10.1016/j.abb.2012.10.010. Epub 2012 Oct 27.
Although widely distributed in Nature, only two γ class carbonic anhydrases are reported besides the founding member (Cam). Although roles for active-site residues important for catalysis have been identified in Cam, second shell residues have not been investigated. Two residues (Trp19 and Tyr200), positioned distant from the catalytic metal, were investigated by structural and kinetic analyses of replacement variants. Steady-state k(cat)/K(m) and k(cat) values decreased 3- to 10-fold for the Trp19 variants whereas the Y200 variants showed up to a 5-fold increase in k(cat). Rate constants for proton transfer decreased up to 10-fold for the Trp19 variants, and an increase of ~2-fold for Y200F. The pK(a) values for the proton donor decreased 1-2 pH units for Trp19 and Y200 variants. The variant structures revealed a loop composed of residues 62-64 that occupies a different conformation than previously reported. The results show that, although Trp19 and Y200 are non-essential, they contribute to an extended active-site structure distant from the catalytic metal that fine tunes catalysis. Trp19 is important for both CO(2)/bicarbonate interconversion, and the proton transfer step of catalysis.
虽然在自然界中广泛分布,但除了创始成员(Cam)外,仅报道了两种γ类碳酸酐酶。虽然已经确定了 Cam 中对于催化至关重要的活性位点残基的作用,但尚未研究第二壳层残基。通过对取代变体的结构和动力学分析,研究了两个远离催化金属的位置的残基(Trp19 和 Tyr200)。Trp19 变体的稳态 k(cat)/K(m)和 k(cat)值降低了 3-10 倍,而 Y200 变体的 k(cat)增加了 5 倍。对于 Trp19 变体,质子转移的速率常数降低了 10 倍,而 Y200F 增加了约 2 倍。对于 Trp19 和 Y200 变体,质子供体的 pK(a)值降低了 1-2 个 pH 单位。变体结构揭示了一个由残基 62-64 组成的环,其构象与先前报道的不同。结果表明,尽管 Trp19 和 Y200 不是必需的,但它们有助于形成远离催化金属的扩展活性位点结构,从而精细调节催化。Trp19 对于 CO(2)/碳酸氢盐的相互转化以及催化的质子转移步骤都很重要。