Automated structure modeling of large protein assemblies using crosslinks as distance restraints
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cell Biology,Molecular Biology,Biochemistry,Biotechnology
Link
http://www.nature.com/articles/nmeth.3838.pdf
Reference46 articles.
1. Merkley, E.D., Cort, J.R. & Adkins, J.N. Crosslinking and mass spectrometry methodologies to facilitate structural biology: finding a path through the maze. J. Struct. Funct. Genomics 14, 77–90 (2013).
2. Rappsilber, J. The beginning of a beautiful friendship: crosslinking/mass spectrometry and modelling of proteins and multi-protein complexes. J. Struct. Biol. 173, 530–540 (2011).
3. Wu, C.-C., Lin, Y.-C. & Chen, H.-T. The TFIIF-like Rpc37/53 dimer lies at the center of a protein network to connect TFIIIC, Bdp1, and the RNA polymerase III active center. Mol. Cell. Biol. 31, 2715–2728 (2011).
4. Wu, C.-C. et al. RNA polymerase III subunit architecture and implications for open promoter complex formation. Proc. Natl. Acad. Sci. USA 109, 19232–19237 (2012).
5. Forné, I., Ludwigsen, J., Imhof, A., Becker, P.B. & Mueller-Planitz, F. Probing the conformation of the ISWI ATPase domain with genetically encoded photoreactive crosslinkers and mass spectrometry. Mol. Cell. Proteomics 11, M111.012088 (2012).
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