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α 进化枝磷脂酶 D 酶对含胆碱脂质的特异性:保守芳香性口袋的作用。

Specificity of Loxosceles α clade phospholipase D enzymes for choline-containing lipids: Role of a conserved aromatic cage.

机构信息

Computational Biology Unit, Department of Informatics, University of Bergen, Bergen, Norway.

Department of Biological Sciences, University of Bergen, Bergen, Norway.

出版信息

PLoS Comput Biol. 2022 Feb 18;18(2):e1009871. doi: 10.1371/journal.pcbi.1009871. eCollection 2022 Feb.

Abstract

Spider venom GDPD-like phospholipases D (SicTox) have been identified to be one of the major toxins in recluse spider venom. They are divided into two major clades: the α clade and the β clade. Most α clade toxins present high activity against lipids with choline head groups such as sphingomyelin, while activities in β clade toxins vary and include preference for substrates containing ethanolamine headgroups (Sicarius terrosus, St_βIB1). A structural comparison of available structures of phospholipases D (PLDs) reveals a conserved aromatic cage in the α clade. To test the potential influence of the aromatic cage on membrane-lipid specificity we performed molecular dynamics (MD) simulations of the binding of several PLDs onto lipid bilayers containing choline headgroups; two SicTox from the α clade, Loxosceles intermedia αIA1 (Li_αIA) and Loxosceles laeta αIII1 (Ll_αIII1), and one from the β clade, St_βIB1. The simulation results reveal that the aromatic cage captures a choline-headgroup and suggest that the cage plays a major role in lipid specificity. We also simulated an engineered St_βIB1, where we introduced the aromatic cage, and this led to binding with choline-containing lipids. Moreover, a multiple sequence alignment revealed the conservation of the aromatic cage among the α clade PLDs. Here, we confirmed that the i-face of α and β clade PLDs is involved in their binding to choline and ethanolamine-containing bilayers, respectively. Furthermore, our results suggest a major role in choline lipid recognition of the aromatic cage of the α clade PLDs. The MD simulation results are supported by in vitro liposome binding assay experiments.

摘要

蜘蛛毒液 GDPD 样磷脂酶 D(SicTox)已被鉴定为隐居蜘蛛毒液中的主要毒素之一。它们分为两个主要分支:α 分支和 β 分支。大多数 α 分支毒素对含有胆碱头基的脂质(如神经鞘磷脂)具有高活性,而 β 分支毒素的活性则各不相同,包括对含有乙醇胺头基的底物的偏好(Sicarius terrosus,St_βIB1)。对现有磷脂酶 D(PLD)结构的结构比较揭示了 α 分支中的保守芳香笼。为了测试芳香笼对膜脂特异性的潜在影响,我们对几种 PLD 与含有胆碱头基的脂质双层的结合进行了分子动力学(MD)模拟;两种来自 α 分支的 SicTox,Loxosceles intermedia αIA1(Li_αIA)和 Loxosceles laeta αIII1(Ll_αIII1),以及一种来自 β 分支的 St_βIB1。模拟结果表明,芳香笼捕获了胆碱头基,并表明该笼在脂质特异性中起主要作用。我们还模拟了一种工程化的 St_βIB1,在其中引入了芳香笼,这导致与含有胆碱的脂质结合。此外,多重序列比对显示,芳香笼在 α 分支 PLD 中保守。在这里,我们证实了 α 和 β 分支 PLD 的 i 面分别参与了它们与含有胆碱和乙醇胺的双层的结合。此外,我们的结果表明,芳香笼在 α 分支 PLD 对胆碱脂质的识别中起主要作用。MD 模拟结果得到了体外脂质体结合实验的支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ab4/8893692/726524085d8c/pcbi.1009871.g001.jpg

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