Atomic force microscopy and other scanning probe microscopy methods to study nanoscale domains in model lipid membranes

被引:7
作者
Robinson, Morgan [1 ,2 ]
Filice, Carina T. [3 ]
McRae, Danielle M. [4 ]
Leonenko, Zoya [2 ,3 ,4 ]
机构
[1] Univ Waterloo, Sch Pharm, Waterloo, ON, Canada
[2] Univ Waterloo, Waterloo Inst Nanotechnol, Waterloo, ON, Canada
[3] Univ Waterloo, Dept Biol, Waterloo, ON, Canada
[4] Univ Waterloo, Dept Phys & Astron, Waterloo, ON, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
atomic force microscopy (AFM); Kelvin probe force microscopy (KPFM); atomic force spectroscopy (AFS); model lipid membranes; nanodomains; lipid rafts; MYELIN BASIC-PROTEIN; AMYLOID-BETA AGGREGATION; ALPHA-SYNUCLEIN; A-BETA; PULMONARY SURFACTANT; ALZHEIMERS-DISEASE; PHASE-TRANSITIONS; TERNARY MIXTURES; LIGHT-SCATTERING; CELL-MEMBRANES;
D O I
10.1080/23746149.2023.2197623
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The cell membrane is a fundamental biological structure, which is only 6-10 nm thick. It is composed of hundreds of lipid types, which form small and dynamic lipid domains or rafts. These rafts are thought to be a major aspect of cell organization, to provide support for various transmembrane proteins and are central to the communication of cells with their environs. Understanding the functions of lipid rafts presents an exciting opportunity to understand the molecular mechanisms of biologically important processes, as well as to uncover fundamental molecular mechanisms of membrane-associated diseases. Due to the high complexity of cell membranes, model membranes composed of synthetic lipids have been developed and are widely used to mimic biomembranes in an effort to study the structure and dynamics of lipid domains and their role in cell function. Atomic force microscopy (AFM), Kelvin probe force microscopy (KPFM) and atomic force spectroscopy (AFS) significantly advanced the study of nanodomains in model lipid membranes and monolayers. We review applications of these methods to the study of model membranes, which are widely used to mimic eukaryotic and bacterial cells, as well as neuronal cellular membranes in Alzheimer's disease (AD).
引用
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页数:35
相关论文
共 186 条
[1]   Oxidation Promotes Distinct Huntingtin Aggregates in the Presence and Absence of Membranes [J].
Adegbuyiro, Adewale ;
Stonebraker, Alyssa R. ;
Sedighi, Faezeh ;
Fan, Caleb K. ;
Hodges, Breanna ;
Li, Peng ;
Valentine, Stephen J. ;
Legleiter, Justin .
BIOCHEMISTRY, 2022, :1517-1530
[2]   Composition and structure of mixed phospholipid supported bilayers formed by POPC and DPPC [J].
Åkesson, Anna ;
Lind, Tania ;
Ehrlich, Nicky ;
Stamou, Dimitrios ;
Wacklin, Hanna ;
Cárdenas, Marité .
Soft Matter, 2012, 8 (20) :5658-5665
[3]  
Albert W., 2019, ACS CHEM NEUROSCI, V11, P146
[4]   Thermodynamics of membrane domains [J].
Almeida, PFF ;
Pokorny, A ;
Hinderliter, A .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2005, 1720 (1-2) :1-13
[5]   A high-speed atomic force microscope for studying biological macromolecules [J].
Ando, T ;
Kodera, N ;
Takai, E ;
Maruyama, D ;
Saito, K ;
Toda, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (22) :12468-12472
[6]   Preparation of DOPC and DPPC Supported Planar Lipid Bilayers for Atomic Force Microscopy and Atomic Force Spectroscopy [J].
Attwood, Simon J. ;
Choi, Youngjik ;
Leonenko, Zoya .
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2013, 14 (02) :3514-3539
[7]   Membrane domain modulation of Aβ1-42 oligomer interactions with supported lipid bilayers: an atomic force microscopy investigation [J].
Azouz, Mehdi ;
Cullin, Christophe ;
Lecomte, Sophie ;
Lafleur, Michel .
NANOSCALE, 2019, 11 (43) :20857-20867
[8]   Nanoscale Dynamics of Amyloid β-42 Oligomers As Revealed by High-Speed Atomic Force Microscopy [J].
Banerjee, Siddhartha ;
Sun, Zhiqiang ;
Hayden, Eric Y. ;
Teplow, David B. ;
Lyubchenko, Yuri L. .
ACS NANO, 2017, 11 (12) :12202-12209
[9]   Lipids, lipid rafts and caveolae: Their importance for GPCR signaling and their centrality to the endocannabinoid system [J].
Barnett-Norris, J ;
Lynch, D ;
Reggio, PH .
LIFE SCIENCES, 2005, 77 (14) :1625-1639
[10]   ELECTROSTATIC AND HYDROPHOBIC INTERACTIONS OF SYNAPSIN-I AND SYNAPSIN-I FRAGMENTS WITH PHOSPHOLIPID-BILAYERS [J].
BENFENATI, F ;
GREENGARD, P ;
BRUNNER, J ;
BAHLER, M .
JOURNAL OF CELL BIOLOGY, 1989, 108 (05) :1851-1862