Department of Chemistry, S. K. Government College, Sikar, 332001, India.
Mol Divers. 2011 Feb;15(1):135-47. doi: 10.1007/s11030-009-9220-2. Epub 2010 Jan 13.
The apical sodium-codependent bile acid transporter (ASBT) inhibition activity of benzothiepine derivatives have been analyzed based on topological and molecular features. Analysis of the structural features in conjunction with the biological endpoints in Combinatorial Protocol in Multiple Linear Regression (CP-MLR) led to the identification of 21 descriptors for modeling the activity. The study clearly suggested that the role of Randic shape index (path/walk ratio 3) and topological charges of 2-, 5-, and 6-orders to optimize the ASBT inhibitory activity of titled compounds. The influence of atomic van der Waals volumes, masses, Sanderson electronegativities, and polarizabilities are indicated via different lags of Moran and Geary autocorrelations. Presence of tertiary aromatic amine functionality in molecular structure has also shown its relevance in rationalizing the biological actions of benzothiepines. The PLS analysis has confirmed the dominance of information content of CP-MLR identified descriptors for modeling the activity when compared to those of the leftover ones.
基于拓扑和分子特征分析了苯并噻嗪衍生物的顶端钠依赖胆汁酸转运蛋白(ASBT)抑制活性。结合组合方案中多个线性回归(CP-MLR)中的生物学终点分析结构特征,确定了 21 个描述符来对活性进行建模。该研究清楚地表明,Randic 形状指数(路径/步长比 3)和 2、5 和 6 阶拓扑电荷的作用对于优化标题化合物的 ASBT 抑制活性非常重要。原子范德华体积、质量、桑德森电负性和极化率的影响通过 Moran 和 Geary 自相关的不同滞后来表示。分子结构中存在叔芳基胺官能团也表明其与苯并噻嗪类生物作用的合理化有关。PLS 分析证实,与剩余描述符相比,CP-MLR 确定的描述符对建模活性的信息量具有优势。