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Homology modeling and molecular dynamics studies on the tomato methyl jasmonate esterase

机译:番茄茉莉酸甲酯酯酶的同源性建模和分子动力学研究

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Jasmonic acid (JA) is a plant volatile that acts as an important cellular regulator mediating diverse developmental processes and defense responses. Not only the attacked plant but also neighboring plants are affected, becoming more attractive to herbivore predators and less susceptible to invaders. The three-dimensional (3D) model of methyl jasmonate esterase (MJE), which is only responsible for methyl jasmonate (MeJA)-cleaving activity, is constructed based on the crystal structure of salicylic acid-binding protein 2 (SABP2, PDB code 1XKL) by using InsightⅡ/Homology module, and further refined using unrestrained dynamics simulations. With the aid of understanding the molecular interactions between (he natural substrate: MeJA and MJE, a 3D model of the complex MeJA-MJE is developed by molecular docking program, and the result may be helpful to explain the experimental realization and the new mutant designs as well. The results indicate that the general 3D organization of MJE is a typical α/β hydrolase superfamily and comprises a central, parallel or mixes β sheet surrounded by α helices. The catalytic residues always constitute a highly conserved triad: Ser83, Asp211, His240, which is consistent with experimental observation. In addition, the key binding-site residues of Thr107 and Leu214 play an important role in the catalysis of MJE. One important finding is that the identification of the key binding site residues of Ser83, which plays an important role in the catalysis of MJE and this is in consistent with experimental observation. The inhibitor phenylmethanesulfonyl fluoride is docked to MJE. Our results also show that His240 and His82 are important in inhibition and it may be helpful for the future inhibitor study.
机译:茉莉酸(JA)是一种植物挥发物,可作为重要的细胞调节剂,介导各种发育过程和防御反应。不仅受害植物受到影响,而且邻近植物也受到影响,对食草动物捕食者变得更具吸引力,对入侵者的抵抗力也较小。基于水杨酸结合蛋白2(SABP2,PDB代码1XKL)的晶体结构构建了仅负责茉莉酸甲酯(MeJA)裂解活性的茉莉酸甲酯酯酶(MJE)的三维(3D)模型),使用InsightⅡ/ Homology模块,并使用不受约束的动力学仿真进一步完善。在了解天然底物MeJA和MJE之间的分子相互作用的基础上,通过分子对接程序开发了复杂的MeJA-MJE的3D模型,其结果可能有助于解释实验实现和新的突变体设计结果表明,MJE的一般3D组织是一个典型的α/β水解酶超家族,由中心,平行或混合的β折叠(由α螺旋包围)组成,催化残基始终构成高度保守的三单元组:Ser83,Asp211, His240与实验观察结果相吻合,此外,Thr107和Leu214的关键结合位点残基在MJE的催化中起重要作用,一个重要的发现是对Ser83关键结合位点残基的鉴定。 MJE在催化MJE中起重要作用,这与实验观察结果一致,抑制剂苯基甲烷磺酰氟与MJE对接,我们的结果也证实了这一点。由于His240和His82在抑制方面很重要,可能对将来的抑制剂研究很有帮助。

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