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Sodium Dodecyl Sulfate-stable Complexes between Serpins and Active or Inactive Proteinases Contain the Region COOH-terminal to the Reactive Site Loop (∗)

Authors :
Christensen, S
Valnickova, Zuzana
Th, Ida B.
Pizzo, Salvatore V.
Nielsen, Henrik R.
Roepstorff, Peter
Enghild, Jan J.
Source :
Journal of Biological Chemistry; June 1995, Vol. 270 Issue: 25 p14859-14862, 4p
Publication Year :
1995

Abstract

Recently inhibitors of the serpin family were shown to form complexes with dichloroisocoumarine (DCI)-inactivated proteinases under native conditions (Enghild, J. J., Valnickova, Z., ThI., and Pizzo, S. V.(1994) J. Biol. Chem.269, 20159-20166). This study demonstrates that serpin-DCI/proteinase complexes resist dissociation when analyzed in reduced SDS-polyacrylamide gel electrophoresis. Previously, SDS-stable serpin-proteinase complexes have been observed only between serpins and catalytically active proteinases. The stability of these complexes is believed to result from an acyl-ester bond between the active site Ser195of the proteinase and the α-carbonyl group of the scissile bond in the reactive site loop. We have further analyzed the structure of the SDS-stable serpin-proteinase and serpin-DCI/proteinase complexes. The results of these studies demonstrate the presence of the COOH-terminal region of the serpin in both complexes. Since (i) modification of Ser195does not prevent formation of SDS-stable complexes and (ii) COOH-terminal peptides are present in both complexes, the previously described mechanism does not sufficiently explain the formation of SDS-stable complexes.

Details

Language :
English
ISSN :
00219258 and 1083351X
Volume :
270
Issue :
25
Database :
Supplemental Index
Journal :
Journal of Biological Chemistry
Publication Type :
Periodical
Accession number :
ejs55834287
Full Text :
https://doi.org/10.1074/jbc.270.25.14859