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刺胞动物孔蛋白(来自海葵的溶细胞素)形成孔道。

Pore formation by actinoporins, cytolysins from sea anemones.

作者信息

Rojko Nejc, Dalla Serra Mauro, Maček Peter, Anderluh Gregor

机构信息

Laboratory for Molecular Biology and Nanobiotechnology, National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana, Slovenia.

Istituto di Biofisica, Consiglio Nazionale delle Ricerche & Fondazione Bruno Kessler, via alla Cascata 56/C, 38123 Trento, Italy.

出版信息

Biochim Biophys Acta. 2016 Mar;1858(3):446-56. doi: 10.1016/j.bbamem.2015.09.007. Epub 2015 Sep 6.

Abstract

Actinoporins (APs) from sea anemones are ~20 kDa pore forming toxins with a β-sandwich structure flanked by two α-helices. The molecular mechanism of APs pore formation is composed of several well-defined steps. APs bind to membrane by interfacial binding site composed of several aromatic amino acid residues that allow binding to phosphatidylcholine and specific recognition of sphingomyelin. Subsequently, the N-terminal α-helix from the β-sandwich has to be inserted into the lipid/water interphase in order to form a functional pore. Functional studies and single molecule imaging revealed that only several monomers, 3-4, oligomerise to form a functional pore. In this model the α-helices and surrounding lipid molecules build toroidal pore. In agreement, AP pores are transient and electrically heterogeneous. On the contrary, crystallized oligomers of actinoporin fragaceatoxin C were found to be composed of eight monomers with no lipids present between the adjacent α-helices. This article is part of a Special Issue entitled: Pore-Forming Toxins edited by Maur Dalla Serra and Franco Gambale.

摘要

来自海葵的孔蛋白(APs)是约20 kDa的成孔毒素,具有由两个α螺旋侧翼包围的β折叠结构。APs形成孔的分子机制由几个明确的步骤组成。APs通过由几个芳香族氨基酸残基组成的界面结合位点与膜结合,这些残基允许与磷脂酰胆碱结合并特异性识别鞘磷脂。随后,β折叠中的N端α螺旋必须插入脂质/水界面以形成功能性孔。功能研究和单分子成像表明,只有几个单体(3 - 4个)寡聚形成功能性孔。在这个模型中,α螺旋和周围的脂质分子形成环形孔。与此一致的是,AP孔是短暂的且电性质不均一。相反,发现孔蛋白脆弱毒素C的结晶寡聚体由八个单体组成,相邻α螺旋之间不存在脂质。本文是由Maur Dalla Serra和Franco Gambale编辑的名为《成孔毒素》的特刊的一部分。

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