Law G H Erica, Gandelman Olga A, Tisi Laurence C, Lowe Christopher R, Murray James A H
Institute of Biotechnology, University of Cambridge, Tennis Court Road, Cambridge CB2 1QT, UK.
Biochem J. 2006 Jul 15;397(2):305-12. doi: 10.1042/BJ20051847.
Firefly luciferase catalyses a two-step reaction, using ATP-Mg2+, firefly luciferin and molecular oxygen as substrates, leading to the efficient emission of yellow-green light. We report the identification of novel luciferase mutants which combine improved pH-tolerance and thermostability and that retain the specific activity of the wild-type enzyme. These were identified by the mutagenesis of solvent-exposed non-conserved hydrophobic amino acids to hydrophilic residues in Photinus pyralis firefly luciferase followed by in vivo activity screening. Mutants F14R, L35Q, V182K, I232K and F465R were found to be the preferred substitutions at the respective positions. The effects of these amino acid replacements are additive, since combination of the five substitutions produced an enzyme with greatly improved pH-tolerance and stability up to 45 degrees C. All mutants, including the mutant with all five substitutions, showed neither a decrease in specific activity relative to the recombinant wild-type enzyme, nor any substantial differences in kinetic constants. It is envisaged that the combined mutant will be superior to wild-type luciferase for many in vitro and in vivo applications.
萤火虫荧光素酶催化一个两步反应,以ATP-Mg2+、萤火虫荧光素和分子氧作为底物,高效发出黄绿色光。我们报告了新型荧光素酶突变体的鉴定结果,这些突变体兼具提高的耐pH值能力和热稳定性,并保留了野生型酶的比活性。这些突变体是通过将萤火虫荧光素酶中暴露于溶剂中的非保守疏水氨基酸突变为亲水残基,然后进行体内活性筛选而鉴定出来的。发现突变体F14R、L35Q、V182K、I232K和F465R是各自位置上的优选替代。这些氨基酸替换的效果是累加的,因为五个替换的组合产生了一种酶,其耐pH值能力和在高达45摄氏度时的稳定性大大提高。所有突变体,包括具有所有五个替换的突变体,相对于重组野生型酶而言,比活性既没有降低,动力学常数也没有任何实质性差异。预计这种组合突变体在许多体外和体内应用中将优于野生型荧光素酶。