Structural Information, Resolution, and Noise in High-Resolution Atomic Force Microscopy Topographs

被引:43
作者
Fechner, Peter [1 ]
Boudier, Thomas [4 ]
Mangenot, Stephanie [1 ,3 ]
Jaroslawski, Szymon [1 ]
Sturgis, James N. [2 ]
Scheuring, Simon [1 ]
机构
[1] Equipe Inst Natl Sante & Rech Med Avenir, Inst Curie, F-75248 Paris, France
[2] Aix Marseille Univ, CNRS, Inst Microbiol Mediterranee, Lab Ingn Syst Macromol,UPR 9027, F-13402 Marseille, France
[3] Univ Paris Sud, F-91405 Orsay, France
[4] Univ Paris 06, Inst Fed Rech 83, Inst Biol Integrat, Paris, France
关键词
ELECTRON-MICROSCOPY; NATIVE MEMBRANES; AFM TOPOGRAPHS; BACTERIORHODOPSIN; ARCHITECTURE; CRITERION; COMPLEX; SURFACE; MODELS;
D O I
10.1016/j.bpj.2009.02.011
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
AFM has developed into a powerful tool in structural biology, providing topographs of proteins under close-to-native conditions and featuring an outstanding signal/noise ratio. However, the imaging mechanism exhibits particularities: fast and slow scan axis represent two independent image acquisition axes. Additionally, unknown tip geometry and tip-sample interaction render the contrast transfer function nondefinable. Hence, the interpretation of AFM topographs remained difficult. How can noise and distortions present in AFM images be quantified? How does the number of molecule topographs merged influence the structural information provided by averages? What is the resolution of topographs? Here, we find that in high-resolution AFM topographs, many molecule images are only slightly disturbed by noise, distortions, and tip-sample interactions. To identify these high-quality particles, we propose a selection criterion based on the internal symmetry of the imaged protein. We introduce a novel feature-based resolution analysis and show that AFM topographs of different proteins contain structural information beginning at different resolution thresholds: 10 angstrom (AqpZ), 12 angstrom (AQPO), 13 angstrom (AQP2), and 20 angstrom (light-harvesting-complex-2). Importantly, we highlight that the best single-molecule images are more accurate molecular representations than ensemble averages, because averaging downsizes the z-dimension and "blurs" structural details.
引用
收藏
页码:3822 / 3831
页数:10
相关论文
共 41 条
[1]   ATOMIC FORCE MICROSCOPE [J].
BINNIG, G ;
QUATE, CF ;
GERBER, C .
PHYSICAL REVIEW LETTERS, 1986, 56 (09) :930-933
[2]   Human cataract lens membrane at subnanometer resolution [J].
Buzhynskyy, Nikolay. ;
Girmens, Jean-Francois ;
Faigle, Wolfgang ;
Scheuring, Simon .
JOURNAL OF MOLECULAR BIOLOGY, 2007, 374 (01) :162-169
[3]   The supramolecular architecture of junctional microdomains in native lens membranes [J].
Buzhynskyy, Nikolay ;
Hite, Richard K. ;
Walz, Thomas ;
Scheuring, Simon .
EMBO REPORTS, 2007, 8 (01) :51-55
[4]   Direct observation of Cα-Hα•••O=C hydrogen bonds in proteins by interresidue h3JCαC′ scalar couplings [J].
Cordier, F ;
Barfield, M ;
Grzesiek, S .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2003, 125 (51) :15750-15751
[5]  
EINGLER P, 1999, J MOL BIOL, V291, P1181
[7]   Surface tongue-and-groove contours on lens MIP facilitate cell-to-cell adherence [J].
Fotiadis, D ;
Hasler, L ;
Müller, DJ ;
Stahlberg, H ;
Kistler, J ;
Engel, A .
JOURNAL OF MOLECULAR BIOLOGY, 2000, 300 (04) :779-789
[8]   Atomic-force microscopy: Rhodopsin dimers in native disc membranes [J].
Fotiadis, D ;
Liang, Y ;
Filipek, S ;
Saperstein, DA ;
Engel, A ;
Palczewski, K .
NATURE, 2003, 421 (6919) :127-128
[9]  
Fotiadis Dimitrios, 2004, Methods Mol Biol, V242, P291
[10]   Electron microscopy of functional ribosome complexes [J].
Frank, J .
BIOPOLYMERS, 2003, 68 (02) :223-233