Taylor Richard E, Chen Yue, Galvin Gabriel M, Pabba Praveen K
Department of Chemistry & Biochemistry and the Walther Cancer Research Center, 251 Nieuwland Science Hall, University of Notre Dame, Notre Dame, IN, 46556-5670, USA.
Org Biomol Chem. 2004 Jan 7;2(1):127-32. doi: 10.1039/b312213c. Epub 2003 Nov 20.
The conformation-activity relationships for the biologically active polyketide, epothilone, have been determined. Computer-based molecular modeling and high field NMR techniques have provided the solution preferences for epothilones and. For the C1-C8 polypropionate region, two conformational families, conformers 1 and 2, have been identified as having significant populations in polar and non-polar solvents. In the C11-C15 region, additional flexibility was observed and two local conformations have been identified as important, conformers 3 and 4. Epothilone analogues with altered conformational profiles have been designed and synthesized. Conformational analysis and the results of biological assays have been correlated to provide increased understanding of the biologically active conformation for the epothilone class of natural product. Conformation-activity relationships have been shown to be an important complement to structure-activity data.
已确定具有生物活性的聚酮化合物埃坡霉素的构效关系。基于计算机的分子建模和高场核磁共振技术已给出了埃坡霉素的溶液偏好。对于C1 - C8聚丙酸酯区域,已鉴定出两种构象族,即构象异构体1和2,在极性和非极性溶剂中均有显著的丰度。在C11 - C15区域,观察到了额外的灵活性,并确定了两种局部构象很重要,即构象异构体3和4。已设计并合成了具有改变的构象特征的埃坡霉素类似物。构象分析与生物测定结果相关联,以增进对这类天然产物埃坡霉素的生物活性构象的理解。构效关系已被证明是对构效数据的重要补充。