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分泌型磷脂酶A2对磷脂类似物的水解作用取决于水对活性位点的可及性。

Secretory phospholipase A2 hydrolysis of phospholipid analogues is dependent on water accessibility to the active site.

作者信息

Peters Günther H, Møller Martin S, Jørgensen Kent, Rönnholm Petra, Mikkelsen Mette, Andresen Thomas L

机构信息

Department of Chemistry, MEMPHYS-Center for Biomembrane Physics, Technical University of Denmark, DK-2800 Lyngby, Denmark.

出版信息

J Am Chem Soc. 2007 May 2;129(17):5451-61. doi: 10.1021/ja067755b. Epub 2007 Apr 10.

Abstract

A new and unnatural type of phospholipids with the head group attached to the 2-position of the glycerol backbone has been synthesized and shown to be a good substrate for secretory phospholipase A2 (sPLA2). To investigate the unexpected sPLA2 activity, we have compared three different phospholipids by using fluorescence techniques and HPLC, namely: (R)-1,2-dipalmitoyl-glycero-3-phosphocholine (hereafter referred to as 1R), (R)-1-O-hexadecyl-2-palmitoyl-glycero-3-phoshocholine (2R), and (S)-1-O-hexadecyl-3-palmitoyl-glycero-2-phosphocholine (3S). Furthermore, to understand the underlying mechanisms for the observed differences, we have performed molecular dynamics simulations to clarify on a structural level the substrate specificity of sPLA2 toward phospholipid analogues with their head groups in the 2-position of the glycerol backbone. We have studied the lipids above 1R, 2R, and 3S as well as their enantiomers 1S, 2S, and 3R. In the simulations of sPLA2-1S and sPLA2-3R, structural distortion in the binding cleft induced by the phospholipids showed that these are not substrates for sPLA2. In the case of the phospholipids 1R, 2R, and 3S, our simulations revealed that the difference observed experimentally in sPLA2 activity might be caused by reduced access of water molecules to the active site. We have monitored the number of water molecules that enter the active site region for the different sPLA2-phospholipid complexes and found that the probability of a water molecule reaching the correct position such that hydrolysis can occur is reduced for the unnatural lipids. The relative water count follows 1R > 2R > 3S. This is in good agreement with experimental data that indicate the same trend for sPLA2 activity: 1R > 2R > 3S.

摘要

一种新型的、非天然的磷脂已被合成出来,其头部基团连接在甘油主链的2位上,并且已证明它是分泌型磷脂酶A2(sPLA2)的良好底物。为了研究这种意外的sPLA2活性,我们使用荧光技术和高效液相色谱法比较了三种不同的磷脂,即:(R)-1,2-二棕榈酰甘油-3-磷酸胆碱(以下简称1R)、(R)-1-O-十六烷基-2-棕榈酰甘油-3-磷酸胆碱(2R)和(S)-1-O-十六烷基-3-棕榈酰甘油-2-磷酸胆碱(3S)。此外,为了理解观察到的差异背后的潜在机制,我们进行了分子动力学模拟,以在结构层面上阐明sPLA2对头部基团位于甘油主链2位的磷脂类似物的底物特异性。我们研究了上述1R、2R和3S脂质以及它们的对映体1S、2S和3R。在sPLA2-1S和sPLA2-3R的模拟中,磷脂诱导的结合裂隙中的结构畸变表明这些不是sPLA2的底物。对于磷脂1R、2R和3S,我们的模拟表明,实验中观察到的sPLA2活性差异可能是由于水分子进入活性位点的机会减少所致。我们监测了不同sPLA2-磷脂复合物进入活性位点区域的水分子数量,发现非天然脂质中水分子到达正确位置从而发生水解的概率降低。相对水含量顺序为1R > 2R > 3S。这与表明sPLA2活性具有相同趋势的实验数据:1R > 2R > 3S非常吻合。

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