Mafu S, Potter K C, Hillwig M L, Schulte S, Criswell J, Peters R J
Roy J. Carver Department of Biochemistry, Biophysics & Molecular Biology, Iowa State University, Ames, IA 50011, USA.
Chem Commun (Camb). 2015 Sep 11;51(70):13485-13487. doi: 10.1039/c5cc05754j.
While cyclic ether forming terpene synthases are known, the basis for such heterocyclisation is unclear. Here it is reported that numerous (di)terpene synthases, particularly including the ancestral ent-kaurene synthase, efficiently produce isomers of manoyl oxide from the stereochemically appropriate substrate. Accordingly, such heterocyclisation is easily accomplished by terpene synthases. Indeed, the use of single residue changes to induce production of the appropriate substrate in the upstream active site leads to efficient bifunctional enzymes producing isomers of manoyl oxide, representing novel enzymatic activity.
虽然已知有形成环醚的萜类合酶,但这种杂环化的基础尚不清楚。本文报道,许多(二)萜类合酶,特别是包括祖先的贝壳杉烯合酶,能从立体化学合适的底物高效地产生氧化玫瑰呋喃的异构体。因此,这种杂环化很容易由萜类合酶完成。事实上,通过单个残基变化来诱导上游活性位点产生合适的底物,会产生能高效产生氧化玫瑰呋喃异构体的双功能酶,代表了新的酶活性。