Reference-Free Alignment and Sorting of Single-Molecule Force Spectroscopy Data

被引:21
|
作者
Bosshart, Patrick D. [2 ]
Frederix, Patrick L. T. M. [3 ]
Engel, Andreas [1 ]
机构
[1] Case Western Reserve Univ, Dept Pharmacol, Cleveland, OH 44106 USA
[2] ETH, Dept Biosyst Sci & Engn, Basel, Switzerland
[3] Nanosurf AG, Liestal, Switzerland
关键词
PATTERN-RECOGNITION; UNFOLDING PATHWAYS; TITIN; IMMUNOGLOBULIN; MICROSCOPY; STABILITY; PROTEINS; DOMAINS; AFM;
D O I
10.1016/j.bpj.2012.03.027
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Single-molecule force spectroscopy has become a versatile tool for investigating the (un)folding of proteins and other polymeric molecules. Like other single-molecule techniques, single-molecule force spectroscopy requires recording and analysis of large data sets to extract statistically meaningful conclusions. Here, we present a data analysis tool that provides efficient filtering of heterogeneous data sets, brings spectra into register based on a reference-free alignment algorithm, and determines automatically the location of unfolding barriers. Furthermore, it groups spectra according to the number of unfolding events, subclassifies the spectra using cross correlation-based sorting, and extracts unfolding pathways by principal component analysis and clustering methods to extracted peak positions. Our approach has been tested on a data set obtained through mechanical unfolding of bacteriorhodopsin (bR), which contained a significant number of spectra that did not show the well-known bR fingerprint. In addition, we have tested the performance of the data analysis tool on unfolding data of the soluble multidomain (Ig27)(8) protein.
引用
收藏
页码:2202 / 2211
页数:10
相关论文
共 50 条
  • [21] Multiplexed single-molecule force spectroscopy using a centrifuge
    Yang, Darren
    Ward, Andrew
    Halvorsen, Ken
    Wong, Wesley P.
    NATURE COMMUNICATIONS, 2016, 7
  • [22] Single-molecule force spectroscopy: Heterogeneity of chemical bonds
    Raible, M
    Reimann, P
    EUROPHYSICS LETTERS, 2006, 73 (04): : 628 - 634
  • [23] Probing DNA clamps with single-molecule force spectroscopy
    Wang, Lin
    Xu, Xiaojun
    Kumar, Ravindra
    Maiti, Buddhadev
    Liu, C. Tony
    Ivanov, Ivaylo
    Lee, Tae-Hee
    Benkovic, Stephen J.
    NUCLEIC ACIDS RESEARCH, 2013, 41 (16) : 7804 - 7814
  • [24] Pulling the springs of a cell by single-molecule force spectroscopy
    Mukherjee, Chandrayee
    Bera, Manindra
    Ainavarapu, Sri Rama Koti
    Sengupta, Kaushik
    EMERGING TOPICS IN LIFE SCIENCES, 2021, 5 (01) : 77 - 87
  • [25] Multiplexed single-molecule force spectroscopy using a centrifuge
    Darren Yang
    Andrew Ward
    Ken Halvorsen
    Wesley P. Wong
    Nature Communications, 7
  • [26] Optimal evaluation of single-molecule force spectroscopy experiments
    Getfert, Sebastian
    Reimann, Peter
    PHYSICAL REVIEW E, 2007, 76 (05):
  • [27] Cysteine engineering of polyproteins for single-molecule force spectroscopy
    Hendrik Dietz
    Morten Bertz
    Michael Schlierf
    Felix Berkemeier
    Thomas Bornschlögl
    Jan Philipp Junker
    Matthias Rief
    Nature Protocols, 2006, 1 : 80 - 84
  • [28] Single-molecule Force Spectroscopy Approach to Enzyme Catalysis
    Alegre-Cebollada, Jorge
    Perez-Jimenez, Raul
    Kosuri, Pallav
    Fernandez, Julio M.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (25) : 18961 - 18966
  • [29] Cysteine engineering of polyproteins for single-molecule force spectroscopy
    Dietz, Hendrik
    Bertz, Morten
    Schlierf, Michael
    Berkemeier, Felix
    Bornschloegl, Thomas
    Junker, Jan Philipp
    Rief, Matthias
    NATURE PROTOCOLS, 2006, 1 (01) : 80 - 84
  • [30] An RNA toolbox for single-molecule force spectroscopy studies
    Vilfan, Igor D.
    Kamping, Wiecher
    van den Hout, Michiel
    Candelli, Andrea
    Hage, Susanne
    Dekker, Nynke H.
    NUCLEIC ACIDS RESEARCH, 2007, 35 (19) : 6625 - 6639