Department of Biological Science and Technology, National Chiao Tung University, 300 Hsin-Chu, Taiwan.
Biochimie. 2012 Nov;94(11):2376-81. doi: 10.1016/j.biochi.2012.06.014. Epub 2012 Jun 23.
The Cys703 to Ile or His mutation within Saccharomyces cerevisiae oxidosqualene-lanosterol cyclase ERG7 (ERG7(C703I/H)) generates an unusual truncated bicyclic rearranged intermediate, (8R,9R,10R)-polypoda-5,13E,17E,21-tetraen-3β-ol, related to iridal-skeleton triterpenoid. Numerous oxidosqualene-cyclized truncated intermediates, including tricyclic, unrearranged tetracyclic with 17α/β exocyclic hydrocarbon side chain, rearranged tetracyclic, and chair-chair-chair tricyclic intermediates (compounds 3-9), were also isolated from the ERG7(C703X) site-saturated mutations or the ERG7(F699T/C703I) double mutation, indicating the functional role of the Cys703 residue in stabilizing the bicyclic C-8 cation and the rearranged intermediate or interacting with Phe699, and opened a new avenue of engineering ERG7 for producing biological active agents.
酿酒酵母角鲨烯-羊毛甾醇环化酶 ERG7(ERG7(C703I/H))中的 Cys703 到 Ile 或 His 突变产生了一种不寻常的截断双环重排中间体,(8R,9R,10R)-多足-5,13E,17E,21-四烯-3β-醇,与艾里醇骨架三萜有关。许多角鲨烯环化截断中间体,包括三环、无重排四环,具有 17α/β 外环烃侧链、重排四环和椅式-椅式-椅式三环中间体(化合物 3-9),也从 ERG7(C703X)位点饱和突变或 ERG7(F699T/C703I)双重突变中分离出来,表明 Cys703 残基在稳定双环 C-8 阳离子和重排中间体或与 Phe699 相互作用中的功能作用,并为生产生物活性物质的 ERG7 工程开辟了新途径。