Gorbacheva Marina, Morozova Olga, Shumakovich Galina, Streltsov Alexander, Shleev Sergey, Yaropolov Alexander
A.N. Bach Institute of Biochemistry RAS, Moscow, Russia.
Bioorg Chem. 2009 Feb;37(1):1-5. doi: 10.1016/j.bioorg.2008.09.002. Epub 2008 Oct 30.
The principal possibility of enzymatic oxidation of manganese ions by fungal Trametes hirsuta laccase in the presence of oxalate and tartrate ions, whereas not for plant Rhus vernicifera laccase, was demonstrated. Detailed kinetic studies of the oxidation of different enzyme substrates along with oxygen reduction by the enzymes show that in air-saturated solutions the rate of oxygen reduction by the T2/T3 cluster of laccases is fast enough not to be a readily noticeable contribution to the overall turnover rate. Indeed, the limiting step of the oxidation of high-redox potential compounds, such as chelated manganese ions, is the electron transfer from the electron donor to the T1 site of the fungal laccase.
已证明,在草酸盐和酒石酸盐离子存在的情况下,真菌毛栓菌漆酶可对锰离子进行酶促氧化,而植物漆树漆酶则不能。对不同酶底物氧化以及酶还原氧的详细动力学研究表明,在空气饱和溶液中,漆酶的T2/T3簇还原氧的速率足够快,以至于对总周转率的贡献不太明显。实际上,高氧化还原电位化合物(如螯合锰离子)氧化的限速步骤是电子从电子供体转移到真菌漆酶的T1位点。