Diversity of hydrodynamic radii of intrinsically disordered proteins
Intrinsically Disordered Proteins
Radius
Magnetic Resonance Spectroscopy
Protein Conformation
Hydrodynamics
Temperature
Humans
Original Article
DOI:
10.1007/s00249-023-01683-8
Publication Date:
2023-10-13T08:02:44Z
AUTHORS (6)
ABSTRACT
AbstractIntrinsically disordered proteins (IDPs) form an important class of biomolecules regulating biological processes in higher organisms. The lack of a fixed spatial structure facilitates them to perform their regulatory functions and allows the efficiency of biochemical reactions to be controlled by temperature and the cellular environment. From the biophysical point of view, IDPs are biopolymers with a broad configuration state space and their actual conformation depends on non-covalent interactions of its amino acid side chain groups at given temperature and chemical conditions. Thus, the hydrodynamic radius (Rh) of an IDP of a given polymer length (N) is a sequence- and environment-dependent variable. We have reviewed the literature values of hydrodynamic radii of IDPs determined experimentally by SEC, AUC, PFG NMR, DLS, and FCS, and complement them with our FCS results obtained for a series of protein fragments involved in the regulation of human gene expression. The data collected herein show that the values of hydrodynamic radii of IDPs can span the full space between the folded globular and denatured proteins in the Rh(N) diagram.
SUPPLEMENTAL MATERIAL
Coming soon ....
REFERENCES (124)
CITATIONS (8)
EXTERNAL LINKS
PlumX Metrics
RECOMMENDATIONS
FAIR ASSESSMENT
Coming soon ....
JUPYTER LAB
Coming soon ....