Kidd R D, Sears P, Huang D H, Witte K, Wong C H, Farber G K
Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park 16802-4500, USA.
Protein Sci. 1999 Feb;8(2):410-7. doi: 10.1110/ps.8.2.410.
The serine protease subtilisin BPN' is a useful catalyst for peptide synthesis when dissolved in high concentrations of a water-miscible organic co-solvent such as N,N-dimethylformamide (DMF). However, in 50% DMF, the k(cat) for amide hydrolysis is two orders of magnitude lower than in aqueous solution. Surprisingly, the k(cat) for ester hydrolysis is unchanged in 50% DMF. To explain this alteration in activity, the structure of subtilisin 8397+1 was determined in 20, 35, and 50% (v/v) DMF to 1.8 A resolution. In 50% DMF, the imidazole ring of His64, the central residue of the catalytic triad, has rotated approximately 180 degrees around the Cbeta-Cgamma bond. Two new water molecules in the active site stabilize the rotated conformation. This rotation places His64 in an unfavorable geometry to interact with the other members of the catalytic triad, Ser221 and Asp32. NMR experiments confirm that the characteristic resonance due to the low barrier hydrogen bond between the His64 and Asp32 is absent in 50% DMF. These experiments provide a clear structural basis for the change in activity of serine proteases in organic co-solvents.
丝氨酸蛋白酶枯草杆菌蛋白酶BPN'溶解于高浓度的与水混溶的有机共溶剂(如N,N - 二甲基甲酰胺(DMF))时,是肽合成的一种有用催化剂。然而,在50% DMF中,酰胺水解的催化常数k(cat)比在水溶液中低两个数量级。令人惊讶的是,酯水解的k(cat)在50% DMF中不变。为了解释这种活性变化,测定了枯草杆菌蛋白酶8397 + 1在20%、35%和50%(v/v)DMF中的结构,分辨率达到1.8 Å。在50% DMF中,催化三联体中心残基His64的咪唑环围绕Cβ - Cγ键旋转了约180度。活性位点中的两个新水分子稳定了这种旋转构象。这种旋转使His64处于不利于与催化三联体的其他成员Ser221和Asp32相互作用的几何构型。核磁共振实验证实,在50% DMF中不存在His64和Asp32之间低势垒氢键引起的特征共振。这些实验为有机共溶剂中丝氨酸蛋白酶活性变化提供了明确的结构基础。