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Plasminogen substrate recognition by the streptokinase-plasminogen catalytic complex is facilitated by Arg253, Lys256, and Lys257 in the streptokinase beta-domain and kringle 5 of the substrate.
- Source :
-
The Journal of biological chemistry [J Biol Chem] 2009 Jul 17; Vol. 284 (29), pp. 19511-21. Date of Electronic Publication: 2009 May 27. - Publication Year :
- 2009
-
Abstract
- Streptokinase (SK) conformationally activates the central zymogen of the fibrinolytic system, plasminogen (Pg). The SK.Pg* catalytic complex binds Pg as a specific substrate and cleaves it into plasmin (Pm), which binds SK to form the SK.Pm complex that propagates Pm generation. Catalytic complex formation is dependent on lysine-binding site (LBS) interactions between a Pg/Pm kringle and the SK COOH-terminal Lys(414). Pg substrate recognition is also LBS-dependent, but the kringle and SK structural element(s) responsible have not been identified. SK mutants lacking Lys(414) with Ala substitutions of charged residues in the SK beta-domain 250-loop were evaluated in kinetic studies that resolved conformational and proteolytic Pg activation. Activation of [Lys]Pg and mini-Pg (containing only kringle 5 of Pg) by SK with Ala substitutions of Arg(253), Lys(256), and Lys(257) showed decreases in the bimolecular rate constant for Pm generation, with nearly total inhibition for the SK Lys(256)/Lys(257) double mutant. Binding of bovine Pg (BPg) to the SK.Pm complex containing fluorescently labeled Pm demonstrated LBS-dependent assembly of a SK.labeled Pm.BPg ternary complex, whereas BPg did not bind to the complex containing the SK Lys(256)/Lys(257) mutant. BPg was activated by SK.Pm with a K(m) indistinguishable from the K(D) for BPg binding to form the ternary complex, whereas the SK Lys(256)/Lys(257) mutant did not support BPg activation. We conclude that SK residues Arg(253), Lys(256), and Lys(257) mediate Pg substrate recognition through kringle 5 of the [Lys]Pg and mini-Pg substrates. A molecular model of the SK.kringle 5 complex identifies the putative interactions involved in LBS-dependent Pg substrate recognition.
- Subjects :
- Algorithms
Animals
Arginine chemistry
Arginine genetics
Arginine metabolism
Binding Sites genetics
Catalysis
Cattle
Drug Combinations
Humans
Kinetics
Lysine chemistry
Lysine genetics
Lysine metabolism
Models, Molecular
Mutation
Plasminogen chemistry
Plasminogen genetics
Protein Conformation
Streptokinase chemistry
Streptokinase genetics
Substrate Specificity
Kringles
Plasminogen metabolism
Protein Structure, Tertiary
Streptokinase metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 0021-9258
- Volume :
- 284
- Issue :
- 29
- Database :
- MEDLINE
- Journal :
- The Journal of biological chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 19473980
- Full Text :
- https://doi.org/10.1074/jbc.M109.005512