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二酰基甘油诱导蛋白激酶Cδ的膜靶向作用及激活机制。

Mechanism of diacylglycerol-induced membrane targeting and activation of protein kinase Cdelta.

作者信息

Stahelin Robert V, Digman Michelle A, Medkova Martina, Ananthanarayanan Bharath, Rafter John D, Melowic Heather R, Cho Wonhwa

机构信息

Department of Chemistry, University of Illinois, Chicago, Illinois 60607, USA.

出版信息

J Biol Chem. 2004 Jul 9;279(28):29501-12. doi: 10.1074/jbc.M403191200. Epub 2004 Apr 22.

Abstract

The regulatory domains of novel protein kinases C (PKC) contain two C1 domains (C1A and C1B), which have been identified as the interaction site for sn-1,2-diacylglycerol (DAG) and phorbol ester, and a C2 domain that may be involved in interaction with lipids and/or proteins. Although recent reports have indicated that C1A and C1B domains of conventional PKCs play different roles in their DAG-mediated membrane binding and activation, the individual roles of C1A and C1B domains in the DAG-mediated activation of novel PKCs have not been fully understood. In this study, we determined the roles of C1A and C1B domains of PKCdelta by means of in vitro lipid binding analyses and cellular protein translocation measurements. Isothermal titration calorimetry and surface plasmon resonance measurements showed that isolated C1A and C1B domains of PKCdelta have opposite affinities for DAG and phorbol ester; i.e. the C1A domain with high affinity for DAG and the C1B domain with high affinity for phorbol ester. Furthermore, in vitro activity and membrane binding analyses of PKCdelta mutants showed that the C1A domain is critical for the DAG-induced membrane binding and activation of PKCdelta. The studies also indicated that an anionic residue, Glu(177), in the C1A domain plays a key role in controlling the DAG accessibility of the conformationally restricted C1A domain in a phosphatidylserine-dependent manner. Cell studies with enhanced green fluorescent protein-tagged PKCdelta and mutants showed that because of its phosphatidylserine specificity PKCdelta preferentially translocated to the plasma membrane under the conditions in which DAG is randomly distributed among intracellular membranes of HEK293 cells. Collectively, these results provide new insight into the differential roles of C1 domains in the DAG-induced membrane activation of PKCdelta and the origin of its specific subcellular localization in response to DAG.

摘要

新型蛋白激酶C(PKC)的调节结构域包含两个C1结构域(C1A和C1B),它们已被确定为sn-1,2-二酰基甘油(DAG)和佛波酯的相互作用位点,以及一个可能参与与脂质和/或蛋白质相互作用的C2结构域。尽管最近的报道表明传统PKC的C1A和C1B结构域在其DAG介导的膜结合和激活中发挥不同作用,但C1A和C1B结构域在DAG介导的新型PKC激活中的各自作用尚未完全了解。在本研究中,我们通过体外脂质结合分析和细胞蛋白转位测量确定了PKCδ的C1A和C1B结构域的作用。等温滴定量热法和表面等离子体共振测量表明,分离的PKCδ的C1A和C1B结构域对DAG和佛波酯具有相反的亲和力;即,对DAG具有高亲和力的C1A结构域和对佛波酯具有高亲和力的C1B结构域。此外,PKCδ突变体的体外活性和膜结合分析表明,C1A结构域对于DAG诱导的PKCδ的膜结合和激活至关重要。研究还表明,C1A结构域中的阴离子残基Glu(177)以磷脂酰丝氨酸依赖性方式在控制构象受限的C1A结构域的DAG可及性方面起关键作用。用增强型绿色荧光蛋白标记的PKCδ和突变体进行的细胞研究表明,由于其磷脂酰丝氨酸特异性,PKCδ在DAG随机分布于HEK293细胞内膜的条件下优先转位至质膜。总的来说,这些结果为C1结构域在DAG诱导的PKCδ膜激活中的不同作用及其响应DAG的特定亚细胞定位的起源提供了新的见解。

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