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Protein loop compaction and the origin of the effect of arginine and glutamic acid mixtures on solubility, stability and transient oligomerization of proteins
- Source :
- Dipòsit Digital de la UB, Universidad de Barcelona, Recercat. Dipósit de la Recerca de Catalunya, instname
- Publication Year :
- 2011
- Publisher :
- Springer Science and Business Media LLC, 2011.
-
Abstract
- Addition of a 50 mM mixture of L: -arginine and L: -glutamic acid (RE) is extensively used to improve protein solubility and stability, although the origin of the effect is not well understood. We present Small Angle X-ray Scattering (SAXS) and Nuclear Magnetic Resonance (NMR) results showing that RE induces protein compaction by collapsing flexible loops on the protein core. This is suggested to be a general mechanism preventing aggregation and improving resistance to proteases and to originate from the polyelectrolyte nature of RE. Molecular polyelectrolyte mixtures are expected to display long range correlation effects according to dressed interaction site theory. We hypothesize that perturbation of the RE solution by dissolved proteins is proportional to the volume occupied by the protein. As a consequence, loop collapse, minimizing the effective protein volume, is favored in the presence of RE.
- Subjects :
- Estabilitat
Proteases
Magnetic Resonance Spectroscopy
Arginine
Biophysics
Membrane biology
Glutamic Acid
Electròlits
Molecular Dynamics Simulation
Maltose-Binding Proteins
Tacrolimus Binding Proteins
Electrolytes
Biopolymers
X-Ray Diffraction
Scattering, Small Angle
Least-Squares Analysis
Solubility
Oligòmers
Macromolècules
Protein Stability
Scattering
Chemistry
Small-angle X-ray scattering
Proteins
General Medicine
Glutamic acid
Polyelectrolytes
Polyelectrolyte
Chymotrypsinogen
Crystallography
Macromolecules
Oligomers
Multivariate Analysis
Solubilitat
Polielectròlits
Proteïnes
Stability
Subjects
Details
- ISSN :
- 14321017 and 01757571
- Volume :
- 40
- Database :
- OpenAIRE
- Journal :
- European Biophysics Journal
- Accession number :
- edsair.doi.dedup.....53cfc4dc5e060c7e01d5e63c1f973770
- Full Text :
- https://doi.org/10.1007/s00249-011-0686-3