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辅助因子钙在外膜磷脂酶A激活中的作用。

Role of the cofactor calcium in the activation of outer membrane phospholipase A.

作者信息

Ubarretxena-Belandia I, Boots J W, Verheij H M, Dekker N

机构信息

Department of Enzymology and Protein Engineering, Center for Biomembranes and Lipid Enzymology, Institute of Biomembranes, Utrecht University, The Netherlands.

出版信息

Biochemistry. 1998 Nov 10;37(45):16011-8. doi: 10.1021/bi9814181.

Abstract

The enzymatic activity of the outer membrane phospholipase A (OMPLA), an integral membrane protein of Escherichia coli, is regulated by dimerization for which the cofactor Ca2+ is required. In this study, the interaction of Ca2+ with OMPLA was characterized, with an emphasis on the role of the cofactor in the activation process and dimerization. Kinetic experiments were done in which the enzyme was solubilized in mixed micelles of substrate and different detergents. It appeared that the affinity of OMPLA for Ca2+ was high (12 microM) if alkylphosphocholines were used as detergent, moderate (62 microM) if sulfobetaines were used, and very low (24 mM) if alkylpolyoxyethylene glycols were used. These results show that there is a strong modulation of the calcium binding properties of OMPLA by the lipid environment. In the presence of hexadecylphosphocholine micelles, the affinity of OMPLA for Ca2+ was determined by three direct binding techniques. Using gel filtration, it appeared that OMPLA has one high-affinity site (Kd approximately 36 microM) and a second site with moderate affinity (Kd approximately 358 microM). Sulfonylated-OMPLA, in which the active site serine had been covalently modified with hexadecanesulfonylfluoride, was used as a mimic for the acyl-enzyme intermediate. In gel filtration experiments, this sulfonylated-OMPLA displayed binding of two Ca2+ per enzyme monomer both with similar high affinity (Kd approximately 48 microM), indicative of a strong synergistic effect of active site occupation and the affinity of the second Ca2+ binding site. Isothermal titration calorimetric measurements confirmed only the presence of a high-affinity Ca2+ binding site, whereas in fluorescence experiments only the binding of the second Ca2+ could be observed. Chemical cross-linking was applied to investigate which of the two Ca2+ sites is involved in dimerization. OMPLA was monomeric in the absence of Ca2+, whereas already at low Ca2+ concentrations the enzyme was converted to its dimeric form. Therefore, we suggest that the first Ca2+ plays a role in the stabilization of the dimeric state of the enzyme. The role of the second Ca2+ and the observed synergy between active site occupancy and Ca2+ affinity are discussed.

摘要

外膜磷脂酶A(OMPLA)是大肠杆菌的一种整合膜蛋白,其酶活性受二聚化调节,而二聚化需要辅因子Ca2+。在本研究中,对Ca2+与OMPLA的相互作用进行了表征,重点研究了辅因子在激活过程和二聚化中的作用。进行了动力学实验,其中酶溶解在底物和不同去污剂的混合胶束中。结果表明,如果使用烷基磷酰胆碱作为去污剂,OMPLA对Ca2+的亲和力较高(12μM);如果使用磺基甜菜碱,亲和力适中(62μM);如果使用烷基聚氧乙烯二醇,亲和力则非常低(24 mM)。这些结果表明,脂质环境对OMPLA的钙结合特性有很强的调节作用。在十六烷基磷酰胆碱胶束存在下,通过三种直接结合技术测定了OMPLA对Ca2+的亲和力。使用凝胶过滤法,发现OMPLA有一个高亲和力位点(Kd约为36μM)和一个中等亲和力位点(Kd约为358μM)。磺酰化-OMPLA是将活性位点丝氨酸用十六烷磺酰氟共价修饰而成,用作酰基酶中间体的模拟物。在凝胶过滤实验中,这种磺酰化-OMPLA每个酶单体显示结合两个Ca2+,且亲和力相似(Kd约为48μM),表明活性位点占据和第二个Ca2+结合位点的亲和力具有很强的协同效应。等温滴定量热法测量仅证实存在一个高亲和力Ca2+结合位点,而在荧光实验中只能观察到第二个Ca2+的结合。应用化学交联来研究两个Ca2+位点中的哪一个参与二聚化。在没有Ca2+的情况下,OMPLA是单体形式,而在低Ca2+浓度下,该酶就已转化为二聚体形式。因此,我们认为第一个Ca2+在稳定酶的二聚体状态中起作用。讨论了第二个Ca2+的作用以及观察到的活性位点占据和Ca2+亲和力之间的协同作用。

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