Protein motions at zero-total angular momentum: The importance of long-range correlations

Citation
Yq. Zhou et al., Protein motions at zero-total angular momentum: The importance of long-range correlations, BIOPHYS J, 79(6), 2000, pp. 2902-2908
Citations number
16
Categorie Soggetti
Biochemistry & Biophysics
Journal title
BIOPHYSICAL JOURNAL
ISSN journal
00063495 → ACNP
Volume
79
Issue
6
Year of publication
2000
Pages
2902 - 2908
Database
ISI
SICI code
0006-3495(200012)79:6<2902:PMAZAM>2.0.ZU;2-Q
Abstract
A constant-energy molecular dynamics simulation is used to monitor protein motion at zero-total angular momentum. With a simple protein model, it is s hown that overall rotation is possible at zero-total angular momentum as a result of flexibility. Since the rotational motion is negligible on a time scale of 1000 reduced time units, the essentially rotation-free portion of the trajectory provides an unbiased test of the common approximate methods for separating overall rotation from internal motions by optimal superposit ion. Removing rotation by minimizing the root-mean-square deviation (RMSD) for the entire system is found to be more appropriate than using the RMSD f or only the more rigid part of the system. The results verify the existence of positive cross-correlation in the motions of atoms separated by large d istances.