Rathee Dharmender, Lather Viney, Dureja Harish
Department of Pharmaceutical Sciences, Maharshi Dayanand University, Rohtak.
Department of Pharmaceutical Chemistry, JCDM College of Pharmacy, Sirsa, Haryana, India.
Porto Biomed J. 2018 Jul 3;3(1):e6. doi: 10.1016/j.pbj.0000000000000006. eCollection 2018 Aug.
Matrix metalloproteinase-9 (MMP-9), also known as gelatinase B, is a MMP that is strongly associated with multiple cellular processes including proliferation, angiogenesis, and metastasis. Various studies have shown that N-hydroxy-α-phenylsulfonylacetamide (HPSAs) derivatives are promising and selective for the MMP-9 inhibition. In the present study, we have selected and reported 80 HPSAs derivatives as inhibitors of MMP-9 and performed structure-based 3-dimensional quantitative structure-activity relationship (3D-QSAR) studies to elucidate the important structural elements responsible for binding affinity. Developed pharmacophore models; QSAR model I contains 2 hydrogen-bond acceptors (A), 2 hydrogen-bond donors (D), and 1 aromatic ring (R) and QSAR model II contains 3 hydrogen-bond acceptors (A), 1 positive ionic (P), and 1 aromatic ring (R). The statistical results of QSAR models (I and II) such as good correlation coefficient (0.61 for I and 0.63 for II), good predictive power (0.84 and 0.77 for I and II, respectively) with low standard deviation (SD\0.3 for both) strongly suggest that the developed models are virtuous for the future prediction of MMP-9 inhibitory activity of HPSAs derivatives. The geometry and features of pharmacophore were expected to be useful for further design and development of selective MMP-9 inhibitors.
基质金属蛋白酶-9(MMP-9),也称为明胶酶B,是一种与包括增殖、血管生成和转移在内的多种细胞过程密切相关的基质金属蛋白酶。各种研究表明,N-羟基-α-苯基磺酰乙酰胺(HPSAs)衍生物有望成为MMP-9抑制的选择性药物。在本研究中,我们选择并报道了80种HPSAs衍生物作为MMP-9抑制剂,并进行了基于结构的三维定量构效关系(3D-QSAR)研究,以阐明负责结合亲和力的重要结构元素。开发的药效团模型;QSAR模型I包含2个氢键受体(A)、2个氢键供体(D)和1个芳香环(R),QSAR模型II包含3个氢键受体(A)、1个正离子(P)和1个芳香环(R)。QSAR模型(I和II)的统计结果,如良好的相关系数(I为0.61,II为0.63)、良好的预测能力(I和II分别为0.84和0.77)以及低标准差(两者均为SD\0.3),强烈表明所开发的模型对于未来预测HPSAs衍生物的MMP-9抑制活性是有效的。药效团的几何形状和特征有望用于选择性MMP-9抑制剂的进一步设计和开发。