Perisic O, Paterson H F, Mosedale G, Lara-González S, Williams R L
Medical Research Council Laboratory of Molecular Biology, Hills Road, Cambridge CB2 2QH, United Kingdom.
J Biol Chem. 1999 May 21;274(21):14979-87. doi: 10.1074/jbc.274.21.14979.
Cytosolic phospholipase A2 (cPLA2) plays a key role in the generation of arachidonic acid, a precursor of potent inflammatory mediators. Intact cPLA2 is known to translocate in a calcium-dependent manner from the cytosol to the nuclear envelope and endoplasmic reticulum. We show here that the C2 domain of cPLA2 alone is sufficient for this calcium-dependent translocation in living cells. We have identified sets of exposed hydrophobic residues in loops known as calcium-binding region (CBR) 1 and CBR3, which surround the C2 domain calcium-binding sites, whose mutation dramatically decreased phospholipid binding in vitro without significantly affecting calcium binding. Mutation of a residue that binds calcium ions (D43N) also eliminated phospholipid binding. The same mutations that prevent phospholipid binding of the isolated C2 domain in vitro abolished the calcium-dependent translocation of cPLA2 to internal membranes in vivo, suggesting that the membrane targeting is driven largely by direct interactions with the phospholipid bilayer. Using fluorescence quenching by spin-labeled phospholipids for a series of mutants containing a single tryptophan residue at various positions in the cPLA2 C2 domain, we show that two of the calcium-binding loops, CBR1 and CBR3, penetrate in a calcium-dependent manner into the hydrophobic core of the phospholipid bilayer, establishing an anchor for docking the domain onto the membrane.
胞质型磷脂酶A2(cPLA2)在花生四烯酸的生成过程中起关键作用,花生四烯酸是强效炎症介质的前体。已知完整的cPLA2会以钙依赖的方式从胞质溶胶转运至核膜和内质网。我们在此表明,仅cPLA2的C2结构域就足以在活细胞中实现这种钙依赖的转运。我们已在被称为钙结合区域(CBR)1和CBR3的环中鉴定出一组暴露的疏水残基,它们围绕着C2结构域的钙结合位点,其突变在体外显著降低了磷脂结合,而对钙结合没有显著影响。结合钙离子的残基(D43N)的突变也消除了磷脂结合。在体外阻止分离的C2结构域磷脂结合的相同突变,在体内消除了cPLA2向内膜的钙依赖转运,这表明膜靶向主要是由与磷脂双层的直接相互作用驱动的。利用自旋标记磷脂对cPLA2 C2结构域中不同位置含有单个色氨酸残基的一系列突变体进行荧光猝灭,我们表明两个钙结合环,即CBR1和CBR3,以钙依赖的方式穿透磷脂双层的疏水核心,为将该结构域对接至膜上建立了一个锚定。