Kang Ji-Hye, Kim Su Yeon, Lee Jeewoo, Marquez Victor E, Lewin Nancy E, Pearce Larry V, Blumberg Peter M
Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Shinlim-Dong, Kwanak-Ku, Seoul 151-742, Korea.
J Med Chem. 2004 Jul 29;47(16):4000-7. doi: 10.1021/jm0497747.
A series of macrocyclic diacylglycerol (DAG)-bis-lactones were investigated as extreme conformationally constrained analogues of DAG-lactones in order to seek more potent protein kinase C (PKC) ligands with higher binding affinities and less lipophilicity than previous compounds. The additional constraint achieved the desired objective as exemplified by the macrocyclic DAG-bis-lactone 57, which exhibited a 6-fold higher binding affinity for PKCalpha (K(i) = 6.07 nM) than the corresponding nonmacrocyclic 3-alkylidene DAG-lactone 6. A structure-activity relationship (SAR) analysis of the macrocyclic DAG-bis-lactones demonstrated a parabolic relationship between activity and lipophilicity, as well as a predilection for the Z-alkylidene isomers as the preferred ligands. Molecular docking studies revealed that macrocyclic DAG-bis-lactone 57 bound to the C1b domain of PKCalpha exclusively in the sn-1 binding mode in contrast to DAG-lactone 6, which showed both sn-1 and sn-2 binding modes. It is proposed that the high potency displayed by these macrocyclic DAG-bis-lactones results from a set of more favorable hydrogen bonding and hydrophobic interactions with PKCalpha as well as from a reduced entropy penalty due to conformational restriction.
研究了一系列大环二酰甘油(DAG)-双内酯,作为DAG-内酯的极端构象受限类似物,以寻找比先前化合物具有更高结合亲和力和更低亲脂性的更有效蛋白激酶C(PKC)配体。额外的限制达到了预期目标,大环DAG-双内酯57就是例证,它对PKCalpha的结合亲和力(K(i)=6.07 nM)比相应的非大环3-亚烷基DAG-内酯6高6倍。对大环DAG-双内酯的构效关系(SAR)分析表明,活性与亲脂性之间呈抛物线关系,并且倾向于Z-亚烷基异构体作为优选配体。分子对接研究表明,与显示sn-1和sn-2结合模式的DAG-内酯6相反,大环DAG-双内酯57仅以sn-1结合模式与PKCalpha的C1b结构域结合。有人提出,这些大环DAG-双内酯显示出的高效力是由于与PKCalpha有一组更有利的氢键和疏水相互作用,以及由于构象限制导致的熵罚降低。