Automated macromolecular model building for X-ray crystallography using ARP/wARP version 7

被引:1392
作者
Langer, Gerrit [2 ]
Cohen, Serge X. [1 ]
Lamzin, Victor S. [2 ]
Perrakis, Anastassis [1 ]
机构
[1] Netherlands Canc Inst, Dept Mol Carcinogenesis, NL-1066 CX Amsterdam, Netherlands
[2] DESY, European Mol Biol Lab, D-22607 Hamburg, Germany
关键词
D O I
10.1038/nprot.2008.91
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
ARP/wARP is a software suite to build macromolecular models in X-ray crystallography electron density maps. Structural genomics initiatives and the study of complex macromolecular assemblies and membrane proteins all rely on advanced methods for 3D structure determination. ARP/wARP meets these needs by providing the tools to obtain a macromolecular model automatically, with a reproducible computational procedure. ARP/wARP 7.0 tackles several tasks: iterative protein model building including a high-level decision-making control module; fast construction of the secondary structure of a protein; building flexible loops in alternate conformations; fully automated placement of ligands, including a choice of the best-fitting ligand from a 'cocktail'; and finding ordered water molecules. All protocols are easy to handle by a nonexpert user through a graphical user interface or a command line. The time required is typically a few minutes although iterative model building may take a few hours.
引用
收藏
页码:1171 / 1179
页数:9
相关论文
共 50 条
[1]   Automated macromolecular model building for X-ray crystallography using ARP/wARP version 7 [J].
Gerrit Langer ;
Serge X Cohen ;
Victor S Lamzin ;
Anastassis Perrakis .
Nature Protocols, 2008, 3 :1171-1179
[2]   Automated multiconformer model building for X-ray crystallography and cryo-EM [J].
Wankowicz, Stephanie A. ;
Ravikumar, Ashraya ;
Sharma, Shivani ;
Riley, Blake ;
Raju, Akshay ;
Hogan, Daniel W. ;
Flowers, Jessica ;
van den Bedem, Henry ;
Keedy, Daniel A. ;
Fraser, James S. .
ELIFE, 2024, 12
[3]   X-ray detectors for macromolecular crystallography [J].
Ealick, SE .
METHODS IN MACROMOLECULAR CRYSTALLOGRAPHY, 2001, 325 :43-54
[4]   ARP/wARP: Procedures for automated model building and refinement. [J].
Perrakis, A. ;
Morris, R. ;
Lamzin, V. .
ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2000, 56 :S28-S28
[5]   New developments in X-ray optics for macromolecular crystallography using laboratory X-ray sources [J].
Arndt, UW ;
Bloomer, AC .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 1999, 9 (05) :609-614
[6]   New trends in macromolecular X-ray crystallography [J].
Wery, JP ;
Schevitz, RW .
CURRENT OPINION IN CHEMICAL BIOLOGY, 1997, 1 (03) :365-369
[7]   Macromolecular crystallography: Introduction to X-ray diffraction [J].
Fourme, R .
BIOMEDICAL APPLICATIONS OF SYNCHROTRON RADIATION, 1996, 128 :77-88
[8]   Macromolecular X-ray Crystallography in the Undergraduate Curriculum [J].
McLaughlin, K. .
ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2020, 76 :A13-A13
[9]   Polycapillary x-ray optics for macromolecular crystallography [J].
Owens, SM ;
Ullrich, JB ;
Ponomarev, IY ;
Carter, DC ;
Sisk, RC ;
Ho, JX ;
Gibson, WM .
HARD X-RAY/GAMMA-RAY AND NEUTRON OPTICS, SENSORS, AND APPLICATIONS, 1996, 2859 :200-209
[10]   A compact x-ray system for macromolecular crystallography [J].
Gubarev, M ;
Ciszak, E ;
Ponomarev, I ;
Gibson, W ;
Joy, M .
REVIEW OF SCIENTIFIC INSTRUMENTS, 2000, 71 (10) :3900-3904