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Cis-transisomerization is rate-determining in the reactivation of denatured human carbonic anhydrase II as evidenced by proline isomerase

Authors :
Fransson, Cecilia
Freskgård, Per-Ola
Herbertsson, Helena
Johansson, Åsa
Jonasson, Per
Mårtensson, Lars-Göran
Svensson, Magdalena
Jonsson, Bengt-Harald
Carlsson, Uno
Source :
FEBS Letters; January 1992, Vol. 296 Issue: 1 p90-94, 5p
Publication Year :
1992

Abstract

The refolding of human carbonic anhydrase II is a sequential process. The slowest step involved is the recovery of enzymic activity ( t12=9 min). Kinetic data from ‘double-jump’ measurements indicate that proline isomerization might be rate determining, in the reactivation of the denatured enzyme. Proof of this is provided by the effect of proline isomerase on the reactivation kinetics; the presence of isomerase during reactivation lowers the half-time or the reaction to 4 min, and inhibition of proline isomerase completely abolishes this kinetic effect. A similar acceleration of the refolding process by proline isomerase is also observed for bovine carbonic anhydrase II, in contrast to what has previously been reported. In human carbonic anhydrase II there are two cis-peptidyl-Pro bonds at Pro 30and Pro 202. Two asparagine single mutants (P30N and P202N) and a glycine double mutant (P30G/P202G) wore constructed to investigate the role of these prolines in the rate limitation of the reactivation process. Both in the presence and absence of PPlase the P202N mutant behaved exactly like the unmutaled enzyme, Thus, cis-transisomerization of the Pro 202cis-peptidyl bond is not rate determining in the reactivation process, The mutations at position 30 led to such extensive destabilization of the protein that the refolding reaction could not be studied.

Details

Language :
English
ISSN :
00145793
Volume :
296
Issue :
1
Database :
Supplemental Index
Journal :
FEBS Letters
Publication Type :
Periodical
Accession number :
ejs66322991
Full Text :
https://doi.org/10.1016/0014-5793(92)80410-I