El Kazzouli Saïd, Lewin Nancy E, Blumberg Peter M, Marquez Victor E
Laboratory of Medicinal Chemistry, Center for Cancer Research, National Cancer Institute at Frederick, National Institutes of Health, 376 Boyles Street, Frederick, Maryland 21702, USA.
J Med Chem. 2008 Sep 11;51(17):5371-86. doi: 10.1021/jm800380b. Epub 2008 Aug 16.
Using a diacylglycerol-lactone (DAG-lactone) template previously developed in our laboratory as a scaffold with high binding affinity for C1 domains, we describe herein a series of novel DAG-lactones containing heterocyclic moieties (pyridines, quinolines, and indoles) as alpha-arylidene fragments. Some of the DAG-lactones obtained show selective binding to RasGRP3 as compared to PKCalpha by more than 2 orders of magnitude and possess subnanomolar affinities. Because activated C1 domains bound to their ligands (DAG or DAG-lactones) insert into membranes, the lipid composition of membranes (cellular, nuclear, and those of internal organelles) is an important determinant for specificity. Therefore, reaching a proper hydrophilic/lipophilic balance for these molecules is critical. This was achieved by carefully selecting partnering acyl fragments for the DAG-lactones with the appropriate lipophilicity. The results clearly show that the combination of chemical and physical properties in these molecules needs to be perfectly balanced to achieve the desired specificity.
我们使用先前在我们实验室开发的二酰基甘油内酯(DAG-内酯)模板作为对C1结构域具有高结合亲和力的支架,在此描述了一系列含有杂环部分(吡啶、喹啉和吲哚)作为α-亚芳基片段的新型DAG-内酯。与PKCalpha相比,获得的一些DAG-内酯显示出对RasGRP3的选择性结合超过2个数量级,并且具有亚纳摩尔亲和力。由于与配体(DAG或DAG-内酯)结合的活化C1结构域插入膜中,膜(细胞、核和内部细胞器的膜)的脂质组成是特异性的重要决定因素。因此,为这些分子达到适当的亲水/亲脂平衡至关重要。这是通过为DAG-内酯精心选择具有适当亲脂性的配对酰基片段来实现的。结果清楚地表明,这些分子中的化学和物理性质的组合需要完美平衡以实现所需的特异性。