1997
DOI: 10.1016/s0301-0104(96)00327-8
|View full text |Cite
|
Sign up to set email alerts
|

Water residence times around copper plastocyanin: a molecular dynamics simulation approach

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
1
1
1
1

Citation Types

7
69
0

Year Published

2000
2000
2016
2016

Publication Types

Select...
9
1

Relationship

0
10

Authors

Journals

citations
Cited by 57 publications
(76 citation statements)
references
References 52 publications
7
69
0
Order By: Relevance
“…In order to have sufficient data to calculate the SISF for water in the shells close to lysozyme and trehalose molecules we now consider water oxygen atoms located ≤ 4 Å and ≤ 6 Å from every trehalose or lysozyme atom (see also Refs. 48 or 49). We compare the results obtained from the system containing trehalose and lysozyme, Lyz-Tr(aq) with the ones obtained from the system containing lysozyme only, Lyz(aq).…”
Section: Resultsmentioning
confidence: 99%
“…In order to have sufficient data to calculate the SISF for water in the shells close to lysozyme and trehalose molecules we now consider water oxygen atoms located ≤ 4 Å and ≤ 6 Å from every trehalose or lysozyme atom (see also Refs. 48 or 49). We compare the results obtained from the system containing trehalose and lysozyme, Lyz-Tr(aq) with the ones obtained from the system containing lysozyme only, Lyz(aq).…”
Section: Resultsmentioning
confidence: 99%
“…5.3 known that the dynamic perturbation is essentially confined to water molecules in direct contact with the surface (Woessner, 1980;Carlström and Halle, 1988;Volke et al, 1994). That this is the case also for proteins is suggested by molecular dynamics simulations (Brunne et al, 1993;Garcia and Stiller, 1993;Lounnas and Pettitt, 1994;Abseher et al, 1996;Rocchi et al, 1997;Kovacs et al, 1997). It is therefore reasonable to estimate for a monolayer, e.g., using the solvent-accessible surface area of the protein (as computed from crystallographic data) and a molecular area of 15 per water molecule.…”
Section: High-frequency Plateaumentioning
confidence: 98%
“…We defined those water molecules within 3.5 Å from any of the groove atoms as part of the hydration shell immediately surrounding the DNA, while those beyond 10 Å are defined as bulk water. Since the water molecules can migrate from one solvation shell to another, a dynamic checking of the location of the water molecules is essential during the analysis [85,86]. We characterized the temperature dependent dynamical behavior of the above-defined water species by following the velocity autocorrelation, diffusion, residence time, and the lifetime.…”
Section: Water Distribution Within the Groovementioning
confidence: 99%