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首页> 外文期刊>Science Advances >Structures of monomeric and oligomeric forms of the Toxoplasma gondii perforin-like protein 1
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Structures of monomeric and oligomeric forms of the Toxoplasma gondii perforin-like protein 1

机译:弓形虫穿孔素样蛋白1的单体和低聚形式的结构。

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摘要

Toxoplasma and Plasmodium are the parasitic agents of toxoplasmosis and malaria, respectively, and use perforin-like proteins (PLPs) to invade host organisms and complete their life cycles. The Toxoplasma gondii PLP1 ( Tg PLP1) is required for efficient exit from parasitophorous vacuoles in which proliferation occurs. We report structures of the membrane attack complex/perforin (MACPF) and Apicomplexan PLP C-terminal β-pleated sheet (APCβ) domains of Tg PLP1. The MACPF domain forms hexameric assemblies, with ring and helix geometries, and the APCβ domain has a novel β-prism fold joined to the MACPF domain by a short linker. Molecular dynamics simulations suggest that the helical MACPF oligomer preserves a biologically important interface, whereas the APCβ domain binds preferentially through a hydrophobic loop to membrane phosphatidylethanolamine, enhanced by the additional presence of inositol phosphate lipids. This mode of membrane binding is supported by site-directed mutagenesis data from a liposome-based assay. Together, these structural and biophysical findings provide insights into the molecular mechanism of membrane targeting by Tg PLP1.
机译:弓形虫和疟原虫分别是弓形虫病和疟疾的寄生虫,它们使用穿孔素样蛋白(PLP)入侵宿主生物并完成其生命周期。刚地弓形虫PLP1(Tg PLP1)是有效地从发生增殖的寄生虫液泡中离开的必需条件。我们报告膜结构的攻击复合物/穿孔素(MACPF)和Tg PLP1的Apicomplexan PLP C端β折叠表(APCβ)域。 MACPF域形成具有环和螺旋几何形状的六聚体组装体,APCβ域具有通过短连接子连接到MACPF域的新型β棱镜折叠。分子动力学模拟表明,螺旋形MACPF寡聚物保留了生物学上重要的界面,而APCβ结构域则优先通过疏水性环与膜磷脂酰乙醇胺结合,并因肌醇磷酸脂的额外存在而增强。来自基于脂质体的测定的定点诱变数据支持这种膜结合模式。这些结构和生物物理发现共同提供了对Tg PLP1靶向膜的分子机制的见解。

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