Rapid-reaction kinetic characterization of the pathway of streptokinase-plasmin catalytic complex formation

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Abstract

Binding of the fibrinolytic proteinase plasmin (Pm) to streptokinase (SK) in a tight stoichiometric complex transforms Pm into a potent proteolytic activator of plasminogen. SK binding to the catalytic domain of Pm, with a dissociation constant of 12 pM, is assisted by SK Lys414 binding to a Pm kringle, which accounts for a 11-20-fold affinity decrease when Pm lysine binding sites are blocked by 6-aminohexanoic acid (6-AHA) or benzamidine. The pathway of SK·Pm catalytic complex formation was characterized by stopped-flow kinetics of SK and the Lys414 deletion mutant (SKΔK414) binding to Pm labeled at the active site with 5-fluorescein ([5F]FFR-Pm) and the reverse reactions by competitive displacement of [5F]FFR-Pm with active site-blocked Pm. The rate constants for the biexponential fluorescence quenching caused by SK and SKΔK414 binding to [5F]FFR-Pm were saturable as a function of SK concentration, reporting encounter complex affinities of 62-110 nM in the absence of lysine analogs and 4900-6500 and 1430-2200 nM in the presence of 6-AHA and benzamidine, respectively. The encounter complex with SKΔK414 was ∼10-fold weaker in the absence of lysine analogs but indistinguishable from that of native SK in the presence of 6-AHA and benzamidine. The studies delineate for the first time the sequence of molecular events in the formation of the SK·Pm catalytic complex and its regulation by kringle ligands. Analysis of the forward and reverse reactions supports a binding mechanism in which SK Lys414 binding to a Pm kringle accompanies near-diffusion-limited encounter complex formation followed by two slower, tightening conformational changes. © 2008 by The American Society for Biochemistry and Molecular Biology, Inc.

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Verhamme, I. M., & Bock, P. E. (2008). Rapid-reaction kinetic characterization of the pathway of streptokinase-plasmin catalytic complex formation. Journal of Biological Chemistry, 283(38), 26137–26147. https://doi.org/10.1074/jbc.M804038200

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