AN INVESTIGATION INTO THE STABILITY OF ALPHA-CRYSTALLIN BY NMR-SPECTROSCOPY, EVIDENCE FOR A 2-DOMAIN STRUCTURE

Citation
Ja. Carver et al., AN INVESTIGATION INTO THE STABILITY OF ALPHA-CRYSTALLIN BY NMR-SPECTROSCOPY, EVIDENCE FOR A 2-DOMAIN STRUCTURE, Biochimica et biophysica acta, 1164(1), 1993, pp. 22-28
Citations number
27
Categorie Soggetti
Biophysics,Biology
ISSN journal
00063002
Volume
1164
Issue
1
Year of publication
1993
Pages
22 - 28
Database
ISI
SICI code
0006-3002(1993)1164:1<22:AIITSO>2.0.ZU;2-0
Abstract
The stability of bovine lens a-crystallin with respect to temperature, pH and urea has been investigated by H-1 and P-31-NMR spectroscopy. T he H-1 and P-31-NMR spectra of alpha-crystallin show little change wit h temperature up to 75-degrees-C, indicating that alpha-crystallin has great thermal stability and does not undergo any major change in stru cture with temperature. H-1 spectral studies of alpha-crystallin and i ts isolated alpha(A) and alpha(B) subunits reveal a marked difference in the stability of these species. It is found that, at pH 2.5, alpha( A)-crystallin adopts a native conformation whereas alpha(B)-crystallin is denatured. On the other hand, the two subunits when part of the to tal alpha-crystallin aggregate adopt a native conformation at pH 2.5, but in the presence of 0.1 M glycine the alpha(B) subunits become dena tured. Thus, alpha(A)-crystallin and total a-crystallin are more stabl e species than alpha(B)-crystallin and, in total alpha-crystallin, the re is an interaction between the compact domains of the alpha(A) and a lpha(B) subunits that leads to enhanced stability. Finally, changes in the H-1 and P-31-NMR spectra of alpha(A)-Crystallin and alpha(B)-cryS tallin in the presence of varying concentrations of urea are consisten t with a two-domain model for alpha-crystallin subunits with the C-ter minal domain being less stable and unfolding first in the presence of urea.