Goldfeder Mor, Kanteev Margarita, Adir Noam, Fishman Ayelet
Department of Biotechnology and Food Engineering, Technion-Israel Institute of Technology, Haifa 32000, Israel.
Biochim Biophys Acta. 2013 Mar;1834(3):629-33. doi: 10.1016/j.bbapap.2012.12.021. Epub 2013 Jan 8.
Tyrosinase is a type 3 copper enzyme with great potential for production of commercially valuable diphenols from monophenols. However, the use of tyrosinase is limited by its further oxidation of diphenols to quinones. We recently determined the structure of the Bacillus megaterium tyrosinase revealing a residue, V218, which we proposed to take part in positioning of substrates within the active site. In the structure of catechol oxidase from Ipomoea batatas, the lack of monophenolase activity was attributed to the presence of F261 near CuA. Consequently, we engineered two variants, V218F and V218G. V218F was expected to have a decreased monophenolase activity, due to the bulky residue extending into the active site. Surprisingly, both V218F and V218G exhibited a 9- and 4.4-fold higher monophenolase/diphenolase activity ratio, respectively. X-ray structures of variant V218F display a flexibility of the phenylalanine residue along with an adjacent histidine, which we propose to be the source of the change in activity ratio.
酪氨酸酶是一种3型铜酶,在利用单酚生产具有商业价值的二酚方面具有巨大潜力。然而,酪氨酸酶的使用受到其将二酚进一步氧化为醌的限制。我们最近确定了巨大芽孢杆菌酪氨酸酶的结构,发现了一个残基V218,我们认为它参与了底物在活性位点内的定位。在甘薯儿茶酚氧化酶的结构中,单酚酶活性的缺乏归因于CuA附近存在F261。因此,我们构建了两个变体V218F和V218G。由于庞大的残基延伸到活性位点,预计V218F的单酚酶活性会降低。令人惊讶的是,V218F和V218G的单酚酶/二酚酶活性比分别提高了9倍和4.4倍。变体V218F的X射线结构显示苯丙氨酸残基与相邻组氨酸具有灵活性,我们认为这是活性比变化的原因。