Jönsson S, Hansson B S, Liljefors T
Department of Organic Chemistry, Chemical Center, Lund University, Sweden.
Bioorg Med Chem. 1996 Mar;4(3):499-504. doi: 10.1016/0968-0896(96)00032-6.
Conformationally constrained analogues of (Z)-5-decenyl acetate (1), a pheromone component of the turnip moth, Agrotis segetum, have been synthesized and tested by using electrophysiological single-cell recordings. In the constrained analogues the terminal alkyl chain in 1 has been incorporated in a six-membered (3 and 4) or five-membered (6) ring system. These cycli compounds are also conformationally constrained analogues of the previously deduced bioactive conformations of the corresponding chain-elongated analogues 2 and 5. The electrophysiological activities of the constrained analogues are found to be significantly lower than that of the natural pheromone component 1, most probably due to steric repulsive interactions between the analogue and the receptor, and also lower than the activities of the corresponding chain-elongated analogues of 1. It is concluded that the flexibility of the terminal chains in 2 and 5 is essential for the possibility of the receptor to accommodate these parts of the chain-elongated analogues in their bioactive conformations.
(Z)-5-癸烯基乙酸酯(1)是黄地老虎(Agrotis segetum)的一种信息素成分,其构象受限类似物已被合成,并通过电生理单细胞记录进行了测试。在这些受限类似物中,1中的末端烷基链被纳入六元环(3和4)或五元环(6)体系中。这些环状化合物也是相应链延长类似物2和5先前推导的生物活性构象的构象受限类似物。发现受限类似物的电生理活性明显低于天然信息素成分1,这很可能是由于类似物与受体之间的空间排斥相互作用,并且也低于1的相应链延长类似物的活性。得出的结论是,2和5中末端链的灵活性对于受体以其生物活性构象容纳链延长类似物的这些链部分的可能性至关重要。