Nakagawa Yoshiaki, Takahashi Kaoru, Kishikawa Hidetoshi, Ogura Takehiko, Minakuchi Chieka, Miyagawa Hisashi
Division of Applied Life Sciences, Graduate School of Agriculture, Kyoto University, Kyoto 606-8502, Japan.
Bioorg Med Chem. 2005 Feb 15;13(4):1333-40. doi: 10.1016/j.bmc.2004.11.004.
The activity of 52 diacylhydrazine congeners was evaluated by measuring the inhibition of the incorporation of [3H]ponasterone A into intact Sf-9 cells. Eleven compounds were newly synthesized in this study. Results showed that the substitution of the 2-CH3 or 3-OCH3 moiety of methoxyfenozide with other groups or the removal of either group was unfavorable to the activity. The activity was quantitatively analyzed using both classical QSAR (Hansch-Fujita) and three-dimensional QSAR methods (comparative molecular field analysis, CoMFA). Sterically favorable fields were observed at the 3- and 4-positions of the benzene ring opposite from the t-butyl group (B-ring), and a sterically unfavorable field was evidenced at the 2-position. Another sterically unfavorable field developed surrounding the favorable field observed at the 4-position of the B-ring. Electrostatically negative fields were observed near the CO moiety, above the benzene ring, and at the 4-position of the B-ring. The optimum hydrophobicity of compounds in terms of their logP values was calculated to be approximately 4.1. Results of the three dimensional structure-activity relationship analyses were consistent with those obtained from the previously reported classical QSAR for 2-chlorobenzoyl analogs containing various para-substituents. The high activity of potent insecticides such as tebufenozide and chromafenozide were rationalized by CoMFA. Thus, this CoMFA result will be useful in the design of new compounds and in understanding the molecular mechanism of the ligand-receptor interactions.
通过测量[3H]蜕皮甾酮A掺入完整Sf-9细胞的抑制率,评估了52种二酰肼类似物的活性。本研究新合成了11种化合物。结果表明,用其他基团取代甲氧虫酰肼的2-CH3或3-OCH3部分,或去除其中任何一个基团,均不利于活性。使用经典的定量构效关系(Hansch-Fujita)和三维构效关系方法(比较分子场分析,CoMFA)对活性进行了定量分析。在与叔丁基相对的苯环的3位和4位(B环)观察到空间有利场,在2位证明存在空间不利场。在B环4位观察到的有利场周围形成了另一个空间不利场。在CO部分附近、苯环上方和B环4位观察到静电负场。计算得出化合物的最佳疏水常数logP值约为4.1。三维构效关系分析结果与先前报道的含各种对位取代基的2-氯苯甲酰类似物的经典定量构效关系结果一致。CoMFA解释了高效杀虫剂如虫酰肼和环虫酰肼的高活性。因此,该CoMFA结果将有助于新化合物的设计和理解配体-受体相互作用的分子机制。