More Than a Pore: The Interplay of Pore-Forming Proteins and Lipid Membranes

被引:0
作者
Uris Ros
Ana J. García-Sáez
机构
[1] Center for Protein Studies,Interfaculty Institute of Biochemistry
[2] Faculty of Biology,undefined
[3] University of Tübingen,undefined
[4] Max Planck Institute for Intelligent Systems,undefined
来源
The Journal of Membrane Biology | 2015年 / 248卷
关键词
Pore-forming proteins; Protein folding in membrane; Lipid reorganization; Proteo-lipidic pore;
D O I
暂无
中图分类号
学科分类号
摘要
Pore-forming proteins (PFPs) punch holes in their target cell membrane to alter their permeability. Permeabilization of lipid membranes by PFPs has received special attention to study the basic molecular mechanisms of protein insertion into membranes and the development of biotechnological tools. PFPs act through a general multi-step mechanism that involves (i) membrane partitioning, (ii) insertion into the hydrophobic core of the bilayer, (iii) oligomerization, and (iv) pore formation. Interestingly, PFPs and membranes show a dynamic interplay. As PFPs are usually produced as soluble proteins, they require a large conformational change for membrane insertion. Moreover, membrane structure is modified upon PFPs insertion. In this context, the toroidal pore model has been proposed to describe a pore architecture in which not only protein molecules but also lipids are directly involved in the structure. Here, we discuss how PFPs and lipids cooperate and remodel each other to achieve pore formation, and explore new evidences of protein-lipid pore structures.
引用
收藏
页码:545 / 561
页数:16
相关论文
共 400 条
[1]  
Alm I(2015)Cholesterol stimulates and ceramide inhibits Sticholysin II-induced pore formation in complex bilayer membranes Biochim Biophys Acta (BBA) 1848 925-931
[2]  
García-Linares S(2000)Cholesterol-binding cytolytic protein toxins Int J Med Microbiol 290 351-356
[3]  
Gavilanes JG(2009)Sticholysins, two pore-forming toxins produced by the Caribbean Sea anemone Stichodactyla helianthus: their interaction with membranes Toxicon 54 1135-1147
[4]  
Martínez-del-Pozo Á(2008)Disparate proteins use similar architectures to damage membranes Trends Biochem Sci 33 482-490
[5]  
Slotte JP(2003)Pore formation by equinatoxin ii, a eukaryotic protein toxin, occurs by induction of nonlamellar lipid structures J Biol Chem 278 45216-45223
[6]  
Alouf JE(2004)Lipid phase coexistence favors membrane insertion of equinatoxin-ii, a pore-forming toxin from actinia equina J Biol Chem 279 34209-34216
[7]  
Álvarez C(2002)Bax-type apoptotic proteins porate pure lipid bilayers through a mechanism sensitive to intrinsic monolayer curvature J Biol Chem 277 49360-49365
[8]  
Mancheño JM(2009)Membrane-protein structure: piercing insights Nature 459 651-652
[9]  
Martínez D(2012) Pathogenic pore-forming proteins: function and host response Cell Host Microbe 12 266-275
[10]  
Tejuca M(2014) Structural model of active Bax at the membrane Mol Cell 56 496-505