Yang L, Glaser M
Department of Biochemistry, University of Illinois, Urbana 61801, USA.
Biochemistry. 1996 Nov 5;35(44):13966-74. doi: 10.1021/bi9610008.
The lateral membrane organization of phosphatidylserine, diacylglycerol, substrate, and Ca(2+)-dependent protein kinase C in large unilamellar vesicles was investigated by using fluorescence digital imaging microscopy. The formation of phosphatidylserine domains could be induced by either Ca2+, the MARCKS peptide, or protein kinase C. However, only Ca2+ could induce diacylglycerol to partition into the phosphatidylserine domains. In the complete protein kinase C assay mixture, two separate triple-labeling experiments demonstrated the colocalization of phosphatidylserine, protein kinase C, diacylglycerol, and the MARCKS peptide in domains. The amounts of all the labeled components in whole vesicles and in domains were measured at various concentrations of either phosphatidylserine, Ca2+, diacylglycerol, or the MARCKS peptide or with the addition of polylysine. The role of each component in forming membrane domains and in mediating the enzyme activity was analyzed. The results indicated that the inclusion of the MARCKS peptide in the domains, not just the binding of the substrate to vesicles, was especially important for PKC activity. The formation of PKC domains required the presence of DAG and Ca2+ at physiological ionic strength. The PKC activity was proportional to the amounts of PKC and substrate in the domains. The results also showed that the MARCKS peptide left the domains after being phosphorylated. A model for the activation of protein kinase C involving sequestering of the reaction components into membrane domains is proposed. The efficiency of the reaction was greatly increased by concentrating the activators, the enzyme, and the substrate into domains.
利用荧光数字成像显微镜研究了大单层囊泡中磷脂酰丝氨酸、二酰基甘油、底物和Ca(2+)依赖性蛋白激酶C的侧向膜组织。磷脂酰丝氨酸结构域的形成可由Ca2+、MARCKS肽或蛋白激酶C诱导。然而,只有Ca2+能诱导二酰基甘油分配到磷脂酰丝氨酸结构域中。在完整的蛋白激酶C检测混合物中,两项独立的三重标记实验证明了磷脂酰丝氨酸、蛋白激酶C、二酰基甘油和MARCKS肽在结构域中的共定位。在磷脂酰丝氨酸、Ca2+、二酰基甘油或MARCKS肽的各种浓度下,或添加聚赖氨酸后,测量了整个囊泡和结构域中所有标记成分的含量。分析了每种成分在形成膜结构域和介导酶活性中的作用。结果表明,结构域中包含MARCKS肽,而不仅仅是底物与囊泡的结合,对PKC活性尤为重要。PKC结构域的形成需要在生理离子强度下存在二酰甘油和Ca2+。PKC活性与结构域中PKC和底物的量成正比。结果还表明,MARCKS肽在磷酸化后离开结构域。提出了一种涉及将反应成分隔离到膜结构域中的蛋白激酶C激活模型。通过将激活剂、酶和底物浓缩到结构域中,大大提高了反应效率。