Aschi Massimiliano, Besker Neva, Re Nazzareno, Pochetti Giorgio, Coletti Cecilia, Gallina Carlo, Mazza Fernando
Dipartimento di Chimica, Ingegneria Chimica e Materiali, Università di L'Aquila, Italia.
J Med Chem. 2007 Jan 25;50(2):211-8. doi: 10.1021/jm0608457.
Molecular Dynamics simulations in aqueous solution were performed for the matrix metalloproteinase-8 (MMP-8) free catalytic domain and for its complexes with the (R)- and (S)-[1-(4'-methoxybiphenyl-4-sulfonylamino)-2-methylpropyl] phosphonate. The 144-155 loop of the enzyme undergoes a drastic decrease of mobility once complexed with both enantiomers. The two enantiomers induce a different decrease of conformational entropy upon complexation. The higher affinity of the R-enantiomer can be related to the lower loss of conformational entropy accompanying its binding. The differences in the dynamical behavior of the protein induced by the two enantiomers are discussed at molecular level and the mode of binding of the simulated complexes is compared with that previously determined by X-ray crystallography.
在水溶液中对基质金属蛋白酶-8(MMP-8)的游离催化结构域及其与(R)-和(S)-[1-(4'-甲氧基联苯-4-磺酰氨基)-2-甲基丙基]膦酸酯的复合物进行了分子动力学模拟。一旦与两种对映体络合,酶的144-155环的流动性会急剧下降。两种对映体在络合时引起构象熵的不同降低。R-对映体较高的亲和力可能与其结合时较低的构象熵损失有关。在分子水平上讨论了两种对映体诱导的蛋白质动力学行为的差异,并将模拟复合物的结合模式与先前通过X射线晶体学确定的模式进行了比较。