<p>Table showing the calculated values for hydrodynamic radius, radius of gyration, and frictional ratios for protein fragments PF17-1 and PF17-1 WMS. Values from experimental results (exp) were calculated from SAXS data (using Guinier approximation) and analytical ultracentrifugation data (AUC) (using Sednterp). Theoretical (theo) values for the hydrodynamic radius and radius of gyration were calculated from rigid-body models generated from SAXS data using SASREF, using the programs CRYSOL, HYDROPRO and SOMO. Theoretical frictional ratio values were also calculated from rigid –body models using HYDROPRO.</p
a<p>Determined from the equation: log (R<sub>s</sub><sup>N</sup>) = (0.8054±0.031)+(0.3949±0.016)×lo...
<p>Radii of gyration and Dmax were calculated with Crysol for structural models, for which termini w...
The hydrodynamic parameters measured in an AUC experiment, s(20w) and Dt(20,w)0, can be used to gain...
The translational friction coefficients and intrinsic viscosities of four globular proteins (ribonuc...
The translational friction coefficients and intrinsic viscosities of four proteins (ribonuclease A, ...
a<p>Assuming a globular shape, the R<sub>S</sub> of the native state of a given protein may be calcu...
AbstractHere we extend the ability to predict hydrodynamic coefficients and other solution propertie...
a<p>Sedimentation coefficients (S<sub>20, w</sub>) and frictional ratios (f/f<sub>0</sub>) were calc...
ABSTRACT Here we extend the ability to predict hydrodynamic coefficients and other solution properti...
<p>A) Rigid Body models were generated from experimental scattering data for PF17-1 and PF17-1 WMS u...
SummaryReduced numbers of frictional/scattering centers are essential for tractable hydrodynamic and...
(a)<p>Notations: <i>R</i><sub>g</sub>, radius of gyration; <i>D</i><sub>max</sub>, maximum size of t...
Mathematica notebooks for calculating (and re-calculating) hydrodynamic properties of mixed globular...
Abstract: A procedure is devised for the calculation of hydrodynamic properties of rigid macro-molec...
<p>Root-mean-squared-deviation (RMSD) from the starting conformation, radius of gyration (RadGyr), T...
a<p>Determined from the equation: log (R<sub>s</sub><sup>N</sup>) = (0.8054±0.031)+(0.3949±0.016)×lo...
<p>Radii of gyration and Dmax were calculated with Crysol for structural models, for which termini w...
The hydrodynamic parameters measured in an AUC experiment, s(20w) and Dt(20,w)0, can be used to gain...
The translational friction coefficients and intrinsic viscosities of four globular proteins (ribonuc...
The translational friction coefficients and intrinsic viscosities of four proteins (ribonuclease A, ...
a<p>Assuming a globular shape, the R<sub>S</sub> of the native state of a given protein may be calcu...
AbstractHere we extend the ability to predict hydrodynamic coefficients and other solution propertie...
a<p>Sedimentation coefficients (S<sub>20, w</sub>) and frictional ratios (f/f<sub>0</sub>) were calc...
ABSTRACT Here we extend the ability to predict hydrodynamic coefficients and other solution properti...
<p>A) Rigid Body models were generated from experimental scattering data for PF17-1 and PF17-1 WMS u...
SummaryReduced numbers of frictional/scattering centers are essential for tractable hydrodynamic and...
(a)<p>Notations: <i>R</i><sub>g</sub>, radius of gyration; <i>D</i><sub>max</sub>, maximum size of t...
Mathematica notebooks for calculating (and re-calculating) hydrodynamic properties of mixed globular...
Abstract: A procedure is devised for the calculation of hydrodynamic properties of rigid macro-molec...
<p>Root-mean-squared-deviation (RMSD) from the starting conformation, radius of gyration (RadGyr), T...
a<p>Determined from the equation: log (R<sub>s</sub><sup>N</sup>) = (0.8054±0.031)+(0.3949±0.016)×lo...
<p>Radii of gyration and Dmax were calculated with Crysol for structural models, for which termini w...
The hydrodynamic parameters measured in an AUC experiment, s(20w) and Dt(20,w)0, can be used to gain...