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磷脂结合与IA族分泌型磷脂酶A2的激活

Phospholipid binding and the activation of group IA secreted phospholipase A2.

作者信息

Boegeman Scott C, Deems Raymond A, Dennis Edward A

机构信息

Department of Chemistry, University of Dallas, Irving, Texas 75062-4736, USA.

出版信息

Biochemistry. 2004 Apr 6;43(13):3907-16. doi: 10.1021/bi035921b.

Abstract

Equilibrium dialysis was used to study the binding of two nonhydrolyzable, short chain phospholipid analogues to the secreted group IA phospholipase A(2) (PLA(2)), which has been shown to contain several phospholipid binding sites that dramatically affect activity. This study provides new insight into how these activations occur. One analogue contained a phosphorylethanolamine (DiC(6)SNPE) headgroup, while the other contained a phosphorylcholine (DiC(6)SNPC) headgroup. Using phospholipase D, we incorporated tritium into each analogue. No binding of DiC(6)SNPE to PLA(2) was observed under submicellar conditions. Addition of submicellar amounts of Triton X-100 resulted in a linear nonsaturating response to lipid concentration, suggestive of premicellar aggregation of the DiC(6)SNPE with Triton X-100 and PLA(2). Binding of DiC(6)SNPE when presented as Triton X-100 mixed micelles saturated at 0.93 binding sites per PLA(2) with a K(D) of 38 microM. Addition of sphingomyelin, a potent activator of PLA(2) hydrolysis of phosphorylethanolamine containing compounds, resulted in a 13-fold decrease in the K(D), to 2.8 microM. This suggests that changes in the catalytic site binding affinity contribute to "phosphatidylcholine activation". Binding of DiC(6)SNPC with 2.0 mM Triton X-100 showed positive cooperativity (Hill coefficient of 1.7), which saturated at 2.0 binding sites per PLA(2). No binding of either analogue was observed when the catalytic site was alkylated with p-bromophenacyl bromide. Since p-bromophenacyl bromide does not physically block the phosphatidylcholine activator site, this indicates that the two phosphatidylcholine binding sites interact. The binding studies show that DiC(6)SNPC binds cooperatively to two sites on group IA PLA(2), while DiC(6)SNPE binds to only one site.

摘要

采用平衡透析法研究了两种不可水解的短链磷脂类似物与分泌型IA族磷脂酶A2(PLA2)的结合情况,该磷脂酶已被证明含有多个对活性有显著影响的磷脂结合位点。这项研究为这些激活过程的发生方式提供了新的见解。一种类似物含有磷酸乙醇胺(DiC6SNPE)头部基团,另一种含有磷酸胆碱(DiC6SNPC)头部基团。我们使用磷脂酶D将氚掺入每种类似物中。在亚胶束条件下未观察到DiC6SNPE与PLA2的结合。添加亚胶束量的 Triton X-100导致对脂质浓度呈线性非饱和响应,这表明DiC6SNPE与Triton X-100和PLA2发生了前胶束聚集。当以Triton X-100混合胶束形式存在时,DiC6SNPE的结合在每个PLA2有0.93个结合位点处达到饱和,解离常数(KD)为38 μM。添加鞘磷脂(一种含磷酸乙醇胺化合物的PLA2水解的有效激活剂)导致KD降低13倍,降至2.8 μM。这表明催化位点结合亲和力的变化有助于“磷脂酰胆碱激活”。DiC6SNPC与2.0 mM Triton X-100的结合显示出正协同性(希尔系数为1.7),在每个PLA2有2.0个结合位点处达到饱和。当催化位点用对溴苯甲酰溴烷基化时,未观察到任何一种类似物的结合。由于对溴苯甲酰溴不会物理性地阻断磷脂酰胆碱激活位点,这表明两个磷脂酰胆碱结合位点相互作用。结合研究表明,DiC6SNPC与IA族PLA2上的两个位点协同结合,而DiC6SNPE仅与一个位点结合。

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