Norin M, Haeffner F, Achour A, Norin T, Hult K
Department of Biochemistry and Biotechnology, Royal Institute of Technology, Stockholm, Sweden.
Protein Sci. 1994 Sep;3(9):1493-503. doi: 10.1002/pro.5560030915.
The substrate-binding sites of the triacyl glyceride lipases from Rhizomucor miehei, Humicola lanuginosa, and Candida rugosa were studied by means of computer modeling methods. The space around the active site was mapped by different probes. These calculations suggested 2 separate regions within the binding site. One region showed high affinity for aliphatic groups, whereas the other region was hydrophilic. The aliphatic site should be a binding cavity for fatty acid chains. Water molecules are required for the hydrolysis of the acyl enzyme, but are probably not readily accessible in the hydrophobic interface, in which lipases are acting. Therefore, the hydrophilic site should be important for the hydrolytic activity of the enzyme. Lipases from R. miehei and H. lanuginosa are excellent catalysts for enantioselective resolutions of many secondary alcohols. We used molecular mechanics and dynamics calculations of enzyme-substrate transition-state complexes, which provided information about molecular interactions important for the enantioselectivities of these reactions.
采用计算机建模方法研究了米黑根毛霉、嗜热栖热放线菌和皱褶假丝酵母的三酰甘油脂肪酶的底物结合位点。用不同的探针绘制了活性位点周围的空间。这些计算表明结合位点内有两个独立的区域。一个区域对脂肪族基团具有高亲和力,而另一个区域是亲水性的。脂肪族位点应该是脂肪酸链的结合腔。水分子是酰基酶水解所必需的,但在脂肪酶作用的疏水界面中可能不易获得。因此,亲水性位点对酶的水解活性应该很重要。米黑根毛霉和嗜热栖热放线菌的脂肪酶是许多仲醇对映体选择性拆分的优良催化剂。我们使用了酶-底物过渡态复合物的分子力学和动力学计算,这些计算提供了有关这些反应对映体选择性重要的分子相互作用的信息。