Hoshino Tsutomu, Yonemura Yukie, Abe Takamasa, Sugino Yumi
Department of Applied Biological Chemistry, Faculty of Agriculture, and Graduate School of Science and Technology, Niigata University, Ikarashi, Niigata 950-2181, Japan.
Org Biomol Chem. 2007 Mar 7;5(5):792-801. doi: 10.1039/b615897h. Epub 2007 Jan 19.
The enzymatic cyclizations of (3R)- and (3S)-2,3-squalene diols by squalene cyclase afforded bicyclic compounds and epoxydamamranes in a ca. 3 : 2 ratio. Formation of the epoxydammarane scaffold indicates that a 6/6/6/5-fused tetracyclic cation is involved as the intermediate in the polycyclization reaction. 2,3:22,23-Dioxidosqualenes also afforded an epoxydammarane skeleton, i.e., 3alpha- or 3beta-hydroxyepoxydammaranes, but the amount of bicyclic compounds produced was markedly lower than that of the squalene diols, indicating that the larger steric bulk of the diols had a more significant influence on the polycyclization pathway than the smaller bulk of the expoxide. All the epoxydammaranes had 17R,20R stereochemistry except for one product, demonstrating that these analogs were folded into an all-chair conformation in the reaction cavity. The mechanistic insight into the observed stereochemical specificities indicated that the organized all-chair conformation is rigidly constricted by squalene cyclase and, thus, free conformational change is not allowed inside the reaction cavity; a small rotation of the hydroxyl group or the epoxide toward the intermediary cation gave a high yield of the enzymatic products, while a large rotation led to a low yield of the product. The stereochemistries of the generated epoxydammaranes are opposite to those from natural sources, and thus almost all of the enzymatic products described here are novel.
角鲨烯环化酶对(3R)-和(3S)-2,3-角鲨烯二醇进行酶促环化反应,生成双环化合物和环氧达玛烷,二者比例约为3:2。环氧达玛烷骨架的形成表明,在多环化反应中,一个6/6/6/5稠合四环阳离子作为中间体参与反应。2,3:22,23-二氧化角鲨烯也生成了环氧达玛烷骨架,即3α-或3β-羟基环氧达玛烷,但生成的双环化合物的量明显低于角鲨烯二醇,这表明二醇较大的空间体积对多环化途径的影响比环氧化物较小的空间体积更为显著。除一种产物外,所有环氧达玛烷均具有17R,20R立体化学结构,这表明这些类似物在反应腔中折叠成全椅式构象。对观察到的立体化学特异性的机理分析表明,有组织的全椅式构象受到角鲨烯环化酶的严格限制,因此反应腔内不允许自由的构象变化;羟基或环氧化物向中间阳离子的小旋转会产生高产率的酶促产物,而大旋转则导致产物产率较低。生成的环氧达玛烷的立体化学结构与天然来源的相反,因此这里描述的几乎所有酶促产物都是新的。