with coupling to an external bath J. Chem. Phys., 1984,
81: 3684–3690.
Case, D. A., Babin, V., Berriman, J. T., et al., 2014. AMBER
14, University of California, San Francisco.
Darden, T., York, D., Pedersen, L., 1993. Particle mesh
Ewald: an Nlog(N) method for Ewald sums in large
systems, J. Chem. Phys., 98: 10089–10092.
Forbes, S. A., Bindal, N., Bamford, S., Cole, C., Kok Chai
Yin, Beare, D., Jia, M., Shepherd, R., Leung, K.,
Menzies, A., Teague, J. W., Campbell, P. J., Stratton,
M. R., Futreal, P. A., 2011. COSMIC: mining complete
cancer genomes in the Catalogue of Somatic Mutations
in Cancer, Nucleic Acids Res. (England), 39 (Database
issue): D945–D9450.
Götz, A. W., Williamson, M. J., Xu, D., Poole, D., Le
Grand, S., Walker, R. C., 2012. Routine microsecond
molecular dynamics simulations with AMBER on
GPUs. 1. Generalized Born, J. Chem. Theory Comput.,
8: 1542–1555.
Hartmann, G., Naldini, L., Weidner, K. M., Sachs, M.,
Vigna, E., Comoglio, P. M., Birchmeier, W., 1992. A
functional domain in the heavy chain of scatter
factor/hepatocyte growth factor binds the c-Met
receptor and induces cell dissociation but not
mitogenesis, Proc Natl Acad Sci USA, 89: 11574–
11578.
Huff, J. L., Jelinek, M. A., Borgman, C. A., Lansing T. J.,
Parsons JT, 1993. The protooncogene c-sea encodes a
transmembrane proteintyrosine kinase related to the
Met/hepatocyte growth factor/scatter factor receptor,
Proc Natl Acad Sci USA, 90: 6140–6144.
Joung, I. S., Cheatham, T. E., III, 2008. Determination of
alkali and halide monovalent ion parameters for use in
explicitly solvated biomolecular simulations, J. Phys.
Chem. B, 112: 9020–9041.
Levy, Y., Cho, S. S., Onuchic, J. N., Wolynes, P. G., 2005.
A survey of flexible protein binding mechanisms and
their transition states using native topology based
energy landscapes, 346: 1121–1145.
Loncharich, R. J., Brooks, B. R., Pastor, R. W., 1992.
Langevin dynamics of peptides: the frictional
dependence of isomerization rates of N-acetylalanyl-
N'-methylamide, Biopolymers, 32: 523–535.
Montesano, R., Matsumoto, K., Nakamura, T., Orci, L.,
1991. Identification of a fibroblast-derived epithelial
morphogen as hepatocyte growth factor, Cell, 67: 901–
908.
Roe, D. R., Cheatham, T. E., III, 2013. PTRAJ and
CPPTRAJ: software for processing and analysis of
molecular dynamics trajectory data, J. Chem. Theory
Comput., 9: 3084–3095.
Ronsin, C., Muscatelli, F., Mattei, M. G., Breathnach, R.,
1993. A novel putative receptor protein tyrosine kinase
of the met family. Oncogene, 8: 1195–1202.
Ryckaert, J.-P., Ciccotti, G., Berendsen, H. J. C., 1977.
Numerical integration of the Cartesian equations of
motion of a system with constraints: molecular
dynamics of n-alkanes, J. Comput. Phys., 23: 327–341.
Salomon-Ferrer, R., Case, D. A., Walker, R. C., 2013. An
overview of the Amber biomolecular simulation
package, WIREs Comput. Mol. Sci., 3: 198–210.
Salomon-Ferrer, R., Götz, A. W., Poole, D., Le Grand, S.,
Walker, R. C., 2013. Routine microsecond molecular
dynamics simulations with AMBER on GPUs. 2.
Explicit solvent particle mesh Ewald, J. Chem. Theory
Comput., 9: 3878–3888.
Stamos, J., Lazarus R. A., Yao, X., Kirchhofer, D.,
Wiesmann, C., 2004. Crystal structure of the HGF b-
chain in complex with the Sema domain of the Met
receptor, EMBO, 23: 2325–2335.
Tsigelny, I. F., Wheler, J. J., Greenberg, J. P., Kouznetsova,
V. L., Stewart, D. J., Bazhenova, L., Kurzrock, R. 2015.
Molecular determinants of drug-specific sensitivity for
epidermal growth factor receptor (EGFR) exon 19 and
20 mutants in non-small cell lung cancer, Oncotarget,
6: 6029–6039.