Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.
Phys Chem Chem Phys. 2020 Jul 22;22(28):16013-16022. doi: 10.1039/d0cp02351e.
Lipoxygenases are non-heme iron containing enzymes that catalyze oxygenation of poly-unsaturated fatty acids in different animal and plant species with extremely high regio- and stereospecificity. Nature employs 8-lipoxygenase to produce 8R-hydroperoxide from the oxygenation of arachidonic acid. A single-point L434F mutation of 8-lipoxygenase alters the regio- and stereospecificity of the final products, with a product ratio of 66 : 34 for 8R- and 12S-hydroperoxide, respectively. A molecular level explanation of this flipped regiospecificity is presented in this work on the basis of molecular dynamics simulations and transition network analysis of oxygen migration in the protein matrix. Phe434 is shown to exist in two conformations, the so-called open and closed conformations. In the closed conformation, the phenyl group of Phe434 shields the C8 site of the substrate, thereby preventing access of the oxygen molecule to this site, which leads to a quenching of the 8R-product. On the other hand, both closed and open conformations of Phe434 allow the oxygen molecule to approach the pro-S face of the C12 site of the substrate, which enhances the propensity of the 12S-hydroperoxide.
脂氧合酶是一类非血红素铁酶,能够在不同的动物和植物物种中以极高的区域和立体选择性催化多不饱和脂肪酸的氧化。自然界利用 8-脂氧合酶将花生四烯酸氧化生成 8R-氢过氧化物。8-脂氧合酶的单点 L434F 突变改变了终产物的区域和立体选择性,产物中 8R-和 12S-氢过氧化物的比例分别为 66:34。本工作基于蛋白质基质中氧迁移的分子动力学模拟和过渡网络分析,对这种翻转的区域特异性进行了分子水平的解释。结果表明,Phe434 存在两种构象,即所谓的开放和关闭构象。在封闭构象中,Phe434 的苯环基团遮蔽了底物的 C8 位,从而阻止氧分子进入该位,导致 8R-产物失活。另一方面,Phe434 的封闭和开放构象都允许氧分子接近底物 C12 位的 pro-S 面,从而增强了 12S-氢过氧化物的生成倾向。