Li R, Farmer P S, Wang J, Boyd R J, Cameron T S, Quilliam M A, Walter J A, Howlett S E
College of Pharmacy, Dalhousie University, Halifax, Nova Scotia, Canada.
Drug Des Discov. 1995 Apr;12(4):337-58.
A number of dibenzothiazepinones and dibenzoxazepinones have been designed, synthesized and evaluated as calcium antagonists. Molecular geometries of these dibenzotricyclic calcium antagonists have been studied using X-ray crystallography, molecular modeling and two-dimensional NMR spectroscopy. X-Ray diffraction reveals dibenzothiazepinone 1 and dibenzoxazepinone 2 to have, respectively, flexure angles of 108 degrees and 116.9 degrees between the two benzene rings. The molecular mechanics-optimized geometry of dibenzothiazepinone 1 shows a 7 degrees smaller flexure angle than the X-ray crystallographic result, while that of dibenzoxazepinone 2 has an angle only 2 degrees smaller than the X-ray result. AM1 and ab initio calculations show that the side chains can affect the geometry of the tricyclic nucleus and both 1 and 2 have negative electrostatic potentials around the bridged portion of the tricyclics. Two-dimensional NOESY NMR spectroscopy supports the extended geometry of the 6 carbon spacer as obtained from X-ray crystallography and molecular mechanics calculations. Vasorelaxation properties among these compounds appear to be relatively insensitive to the flexure angle and to chain length. Vasorelaxation is profoundly influenced by the nature of the basic terminal moiety.
已设计、合成并评估了多种二苯并噻氮杂䓬酮和二苯并恶氮杂䓬酮作为钙拮抗剂。使用X射线晶体学、分子建模和二维核磁共振光谱研究了这些二苯并三环钙拮抗剂的分子几何结构。X射线衍射显示二苯并噻氮杂䓬酮1和二苯并恶氮杂䓬酮2的两个苯环之间的挠曲角分别为108度和116.9度。二苯并噻氮杂䓬酮1经分子力学优化后的几何结构显示其挠曲角比X射线晶体学结果小7度,而二苯并恶氮杂䓬酮2的挠曲角仅比X射线结果小2度。AM1和从头算计算表明,侧链会影响三环核的几何结构,并且1和2在三环的桥接部分周围都具有负静电势。二维NOESY核磁共振光谱支持了从X射线晶体学和分子力学计算得出的6碳间隔基的伸展几何结构。这些化合物之间的血管舒张特性似乎对挠曲角和链长相对不敏感。血管舒张受到碱性末端部分性质的深刻影响。