Malolanarasimhan Krishnan, Kedei Noemi, Sigano Dina M, Kelley James A, Lai Christopher C, Lewin Nancy E, Surawski Robert J, Pavlyukovets Vladimir A, Garfield Susan H, Wincovitch Stephen, Blumberg Peter M, Marquez Victor E
Laboratory of Medicinal Chemistry, Center for Cancer Research, National Cancer Institute-Frederick, National Institutes of Health, Frederick, Maryland 21702, USA.
J Med Chem. 2007 Mar 8;50(5):962-78. doi: 10.1021/jm061289j. Epub 2007 Feb 7.
Highly rigid and geometrically well-defined rods composed of ethynylene-substituted aromatic spacers [oligo(p-phenyleneethynylene), OPE] were incorporated as acyl moieties on diacylglycerol lactones (DAG-lactones) and investigated for their ability to bind to protein kinase C (PKC) and translocate PKC alpha and delta isoforms to plasma and internal membranes. The kinetics of PKC translocation were correlated with biological responses, viz. ERK phosphorylation, induction of IL-6 secretion, inhibition of cell proliferation, and induction of cellular attachment, that display very different time courses. Because OPE rods assemble through noncovalent forces and form stable films, they may influence the microdomain environment around the DAG-lactone membrane-binding site. A comparison of two DAG-lactones (1 and 10), one with two PE units (1) and the other with an equivalent flexible acyl chain (10) of matching lipophilicity, clearly demonstrated the effect of the rigid OPE chain in substantially prolonging the translocated state of both PKC alpha and delta.
由乙炔基取代的芳香族间隔基(聚对苯撑乙炔,OPE)组成的高度刚性且几何形状明确的棒状分子被引入二酰基甘油内酯(DAG-内酯)作为酰基部分,并研究了它们与蛋白激酶C(PKC)结合以及将PKCα和δ亚型转运至质膜和内膜的能力。PKC转位的动力学与生物学反应相关,即ERK磷酸化、IL-6分泌的诱导、细胞增殖的抑制以及细胞附着的诱导,这些反应呈现出非常不同的时间进程。由于OPE棒通过非共价力组装并形成稳定的膜,它们可能会影响DAG-内酯膜结合位点周围的微区环境。比较两种DAG-内酯(1和10),一种带有两个PE单元(1),另一种带有具有匹配亲脂性的等效柔性酰基链(10),清楚地证明了刚性OPE链在显著延长PKCα和δ的转位状态方面的作用。