Puchkaev Andrei V, Wakagi Takayoshi, Ortiz de Montellano Paul R
Department of Pharmaceutical Chemistry, University of California, San Francisco 94143-0446, USA.
J Am Chem Soc. 2002 Oct 30;124(43):12682-3. doi: 10.1021/ja0282036.
The cytochrome P450 superfamily of enzymes catalyzes a broad range of oxidative processes involved in the metabolism of fatty acids, biosynthesis of sterols, and elimination of drugs and xenobiotics. Application of the unique properties of P450 enzymes as fine biocatalysts in biotechnology is limited due to their thermal instability and the requirement for auxiliary electron-donor proteins and cofactors. CYP119, a thermophilic P450 enzyme from Sulfolobus solfataricus, was characterized some time ago, but no high-temperature redox partners have been available for it. Here we report reconstitution of CYP119 with a novel high-temperature electron-donor system consisting of a ferredoxin and 2-oxoacid:ferredoxin oxidoreductase from Sulfolobus tokodaii strain 7 that, unlike all other known P450 electron-donor partners, utilizes coenzyme-A and pyruvic acid rather than NADH or NADPH as the source of electrons. The oxidation of lauric acid by the reconstituted system increased 16-fold as the temperature increased from 25 to 70 degrees C and was functional for more than 30 min at the higher temperature. This first in vitro high-temperature P450 catalytic system is a key step in the development of practical high-temperature monooxygenase systems.
细胞色素P450酶超家族催化脂肪酸代谢、甾醇生物合成以及药物和异生素消除等广泛的氧化过程。由于P450酶的热不稳定性以及对辅助电子供体蛋白和辅因子的需求,其作为精细生物催化剂在生物技术中的应用受到限制。CYP119是一种来自嗜热栖热菌的嗜热P450酶,此前已被鉴定,但尚未有适用于它的高温氧化还原伙伴。在此,我们报道了用一种新型高温电子供体系统对CYP119进行重组,该系统由来自7号德氏硫化叶菌的铁氧化还原蛋白和2-氧代酸:铁氧化还原蛋白氧化还原酶组成,与所有其他已知的P450电子供体伙伴不同,它利用辅酶A和丙酮酸而非NADH或NADPH作为电子来源。随着温度从25℃升高到70℃,重组系统对月桂酸的氧化作用增加了16倍,并且在较高温度下能保持功能超过30分钟。这个首个体外高温P450催化系统是实用高温单加氧酶系统开发中的关键一步。