Suardíaz Reynier, Masgrau Laura, Lluch José M, González-Lafont Angels
Departament de Química, Universitat Autònoma de Barcelona, Bellaterra 08193, Barcelona (Spain); Institut de Biotecnologia I de Biomedicina (IBB), Universitat Autònoma de Barcelona, Bellaterra 08193, Barcelona (Spain).
Chemphyschem. 2013 Nov 11;14(16):3777-87. doi: 10.1002/cphc.201300629. Epub 2013 Sep 23.
15-Lipoxygenases (15-LOs) catalyse the peroxidation reaction of arachidonic acid (AA) in mammals with remarkable regio- and stereospecificity. This positional-specific peroxidation is of paramount importance because it determines the nature and biological functions of the final metabolites generated by each LO as a result of the oxidative metabolism of AA. Although several hypotheses have been formulated concerning the regio- and stereospecificity of LOs, the molecular basis of such behaviour is still unclear. Herein, we combined quantum mechanics/molecular mechanics calculations with molecular dynamics simulations of the complete rabbit 15-LO/AA solvated model to examine the most accepted hypotheses for the regio- and stereospecificity of LOs. We have found that the clue to explain this specificity is the oxygen-targeting hypothesis through steric shielding of specific residues (mainly Leu597, Gln548 and Phe175, as well as the AA tail itself). Our deductions are based primarily on the analysis of the energy barrier heights from the oxygen addition reaction profiles.
15-脂氧合酶(15-LOs)以显著的区域和立体特异性催化哺乳动物体内花生四烯酸(AA)的过氧化反应。这种位置特异性过氧化至关重要,因为它决定了每种脂氧合酶在花生四烯酸氧化代谢过程中产生的最终代谢产物的性质和生物学功能。尽管已经提出了几种关于脂氧合酶区域和立体特异性的假说,但这种行为的分子基础仍不清楚。在此,我们将量子力学/分子力学计算与完整兔15-LO/AA溶剂化模型的分子动力学模拟相结合,以检验关于脂氧合酶区域和立体特异性的最被认可的假说。我们发现,解释这种特异性的线索是通过特定残基(主要是Leu597、Gln548和Phe175,以及花生四烯酸尾部本身)的空间屏蔽实现的氧靶向假说。我们的推断主要基于对氧加成反应曲线的能垒高度的分析。