Blum-Scientific Services, Ledererstrasse 23, 80331 Munich, Germany.
Chem Biol Interact. 2010 Sep 6;187(1-3):373-9. doi: 10.1016/j.cbi.2010.02.043. Epub 2010 Mar 3.
The calcium-dependent phosphotriesterase diisopropyl fluorophosphatase (DFPase) from the squid Loligo vulgaris efficiently hydrolyzes a wide range of organophosphorus nerve agents. The two calcium ions within DFPase play essential roles for its function. The lower affinity calcium ion located at the bottom of the active site participates in the reaction mechanism, while the high affinity calcium in the center of the protein maintains structural integrity of the enzyme. The activity and structures of three DFPase variants targeting the catalytic calcium-binding site are reported (D121E, N120D/N175D/D229N, and E21Q/N120D/N175D/D229N), and the effect of these mutations on the overall structural dynamics of DFPase is examined using molecular dynamics simulations. While D229 is crucial for enzymatic activity, E21 is essential for calcium binding. Although at least two negatively charged side chains are required for calcium binding, the addition of a third charge significantly lowers the activity. Furthermore, the arrangement of these charges in the binding site is important for enzymatic activity. These results, together with earlier mutational, structural, and kinetic studies, show a highly evolved calcium-binding environment, with a specific electrostatic topology crucial for activity. A number of structural homologues of DFPase have been recently identified, including a chimeric variant of Paraoxonase 1 (PON1), drug resistance protein 35 (Drp35) from Staphylococcus aureus and the gluconolactonase XC5397 from Xanthomonas campestris. Surprisingly, despite low sequence identity, these proteins share remarkably similar calcium-binding environments to DFPase.
鱿鱼 Loligo vulgaris 中的钙依赖性磷酸三酯酶二异丙基氟膦酶 (DFPase) 能够高效水解广泛的有机磷神经毒剂。DFPase 中的两个钙离子对于其功能至关重要。位于活性位点底部的低亲和力钙离子参与反应机制,而位于蛋白质中心的高亲和力钙离子则维持酶的结构完整性。本文报道了三种靶向催化钙结合位点的 DFPase 变体 (D121E、N120D/N175D/D229N 和 E21Q/N120D/N175D/D229N) 的活性和结构,并通过分子动力学模拟研究了这些突变对 DFPase 整体结构动力学的影响。虽然 D229 对于酶活性至关重要,但 E21 对于钙结合是必需的。尽管钙结合至少需要两个带负电荷的侧链,但添加第三个电荷会显著降低活性。此外,结合位点中这些电荷的排列对于酶活性也很重要。这些结果与早期的突变、结构和动力学研究一起表明,钙结合环境高度进化,特定的静电拓扑结构对于活性至关重要。最近已经鉴定出许多 DFPase 的结构同源物,包括 Paraoxonase 1 (PON1) 的嵌合变体、金黄色葡萄球菌的耐药蛋白 35 (Drp35) 和黄单胞菌的葡萄糖酸内酯酶 XC5397。令人惊讶的是,尽管这些蛋白质的序列同一性较低,但它们与 DFPase 共享非常相似的钙结合环境。