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钙离子和磷脂酰丝氨酸调控 PLCδ1 的结构基础。

Structural basis for calcium and phosphatidylserine regulation of phospholipase C δ1.

机构信息

Department of Pathology, Northwestern University, Chicago, Illinois 60611, United States.

出版信息

Biochemistry. 2012 Mar 20;51(11):2246-57. doi: 10.1021/bi201252f. Epub 2012 Mar 9.

Abstract

Many membrane-associated enzymes, including those of the phospholipase C (PLC) superfamily, are regulated by specific interactions with lipids. Previously, we have shown that the C2 domain of PLC δ1 is required for phosphatidylserine (PS)-dependent enzyme activation and that activation requires the presence of Ca(2+). To identify the site of interaction and the role of Ca(2+) in the activation mechanism, we mutagenized three highly conserved Ca(2+) binding residues (Asp-653, Asp-706, and Asp-708) to Gly in the C2 domain of PLC δ1. The PS-dependent Ca(2+) binding affinities of the mutant enzymes D653G, D706G, and D708G were reduced by 1 order of magnitude, and the maximal level of Ca(2+) binding was reduced to half of that of the native enzyme. The level of Ca(2+)-dependent PS binding was also reduced in the mutant enzymes. Under basal conditions, the Ca(2+) dependence and the maximal level of hydrolysis of phosphatidylinositol 4,5-bisphosphate were not altered in the mutants. However, the Ca(2+)-dependent PS stimulation was severely defective. PS reduces the K(m) of the native enzyme almost 20-fold, but far less for the mutants. Replacing Asp-653, Asp-706, and Asp-708 simultaneously with glycine in the C2 domain of PLC δ1 leads to a complete and selective loss of the stimulation and binding by PS. These results show that D653, D706, and D708 are required for Ca(2+) binding in the C2 domain and demonstrate a mechanism by which C2 domains can mediate regulation of enzyme activity by specific lipid ligands.

摘要

许多膜相关酶,包括磷脂酶 C(PLC)超家族的酶,都受到与脂质的特异性相互作用的调节。以前,我们已经表明 PLC δ1 的 C2 结构域对于磷脂酰丝氨酸(PS)依赖性酶激活是必需的,并且激活需要 Ca2+的存在。为了确定相互作用的位点和 Ca2+在激活机制中的作用,我们将 PLC δ1 的 C2 结构域中的三个高度保守的 Ca2+结合残基(Asp-653、Asp-706 和 Asp-708)突变为 Gly。突变酶 D653G、D706G 和 D708G 的 PS 依赖性 Ca2+结合亲和力降低了 1 个数量级,最大 Ca2+结合水平降低至天然酶的一半。突变酶中 Ca2+依赖性 PS 结合水平也降低了。在基础条件下,突变体中 Ca2+依赖性和磷脂酰肌醇 4,5-二磷酸的水解的最大水平没有改变。然而,Ca2+依赖性 PS 刺激严重缺陷。PS 将天然酶的 K(m)降低了近 20 倍,但对突变体的影响要小得多。在 PLC δ1 的 C2 结构域中同时将 Asp-653、Asp-706 和 Asp-708 突变为 Gly 会导致 PS 刺激和结合的完全和选择性丧失。这些结果表明 D653、D706 和 D708 是 C2 结构域中 Ca2+结合所必需的,并证明了 C2 结构域可以介导酶活性被特定脂质配体调节的机制。

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