Biochimica et Biophysica Acta 1988-04-14

Inactivation of chymotrypsin and human skin chymase: kinetics of time-dependent inhibition in the presence of substrate.

L A Johnson, K E Moon, M Eisenberg

Index: Biochim. Biophys. Acta 953(3) , 269-79, (1988)

Full Text: HTML

Abstract

The reaction of chymase, a chymotryptic proteinase from human skin, and bovine pancreatic chymotrypsin with a number of time-dependent inhibitors has been studied. An integrated equation, relating product formation with time, has been derived for the reaction of enzymes with time-dependent inhibitors in the presence of substrate. This is based on a two-step model in which a rapidly reversible, non-covalent complex (EI) is formed prior to a tighter, less readily reversible complex (EI)*). The equation depends on the simplifying assumption [I] much greater than [E], but is applicable to reversible and irreversible slow-binding and tight-binding inhibitors whether or not they show saturation kinetics. The method has been applied to the reaction of chymase and chymotrypsin with the tetrapeptide aldehyde, chymostatin, basic pancreatic trypsin inhibitor and Ala-Ala-Phe-chloromethylketone (AAPCK). The irreversible inhibitor, AAPCK, showed the expected saturation kinetics for both enzymes and the apparent first-order rate constants (k2) and dissociation constants (Ki) for the non-covalent complexes were determined. Chymostatin was a much more potent inhibitor which failed to show a saturation effect. The second-order rate constant of inactivation (k2/Ki), the first-order reactivation rate constant (k-2), and the dissociation constant of the covalent complex (Ki*) were determined. Basic pancreatic trypsin inhibitor, a potent inhibitor of chymotrypsin, had similar kinetics to chymostatin but failed to inhibit chymase. The applicability of the two-step model and the integrated equation to slow- and tight-binding inhibitors is discussed in relation to a number of examples from the literature.


Related Compounds

Related Articles:

High-content positional biosensor screening assay for compounds to prevent or disrupt androgen receptor and transcriptional intermediary factor 2 protein-protein interactions.

2014-09-01

[Assay Drug Dev. Technol. 12(7) , 395-418, (2014)]

Inhibition of carboxypeptidase Y by chloromethyl ketone derivatives of benzyloxycarbonyl-L-phenylalanine.

1974-12-01

[J. Biochem. (Tokyo) 76 , 1355, (1974)]

A chemical-genetic interaction map of small molecules using high-throughput imaging in cancer cells.

2015-12-01

[Mol. Syst. Biol. 11 , 846, (2015)]

Effect of protease inhibitors and substrates on 3,5,3'-triiodothyronine binding to rat liver nuclear receptors.

1992-09-01

[Endocr. Regul. 26 , 127-131, (1992)]

Identification of the catalytic histidine residue participating in the charge-relay system of carboxypeptidase Y.

1995-11-01

[Protein Sci. 4(11) , 2433-5, (1995)]

More Articles...