Characterization of the papain active centre by using two-protonic-state electrophiles as reactivity probes. Evidence for nucleophilic reactivity in the un-interrupted cysteine-25-histidine-159 interactive system
- 1 May 1978
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 171 (2) , 385-401
- https://doi.org/10.1042/bj1710385
Abstract
1.2,2′-Dipyridyl disulphide (2-Py-S-S-2-Py) and n-propyl 2-pyridyl disulphide (propyl-S-S-2-Py) were used as two-protonic-state reactivity probes to investigate the active centre of papain (EC 3.4.22.2).2. The existence of a striking rate optimum at pH approx. 4 in the reaction of papain not only with the symmetrical probe but also with the unsymmetrical probe is shown to constitute compelling evidence that the thiolate ion component of the cysteine-25-histidine-159 interactive system of papain possesses appreciable nucleophilic character. It is not a necessary requirement that the probe reagent should engage the imidazolium ion of histidine-159 in hydrogen-bonding for the sulphur atom of the interactive system to display nucleophilic character. The single proton-binding site of propyl-S-S-2-Py cannot simultaneously interrupt the active-centre ion pair and provide for rate enhancement as the pH is lowered towards 4. The possible implication of this for the mechanism of papain-catalysed hydrolysis is discussed. 3. The suspected difference in the active centres of papain and ficin (EC 3.4.22.3), which could be a lack in ficin of a carboxy group conformationally equivalent to that of aspartic acid-158 of papain is confirmed. The reactivity of the papain thiol group towards both probe reagents is controlled by two ionizations with pKa close to 4 that are positively co-operative. 4. In the reaction of papain with 2-Py-S-S-2-Py. the reactivity appears to be controlled also by an addition ionization with pKa approx. 5. Possible origins of this additional ionization are discussed. K. The spectral and ionization characteristics of propyl-S-S-2-Py are reported. 6. The reagent reacts rapidly with thiol groups at the sulphur atom distal from the pyridyl ring to provide, at pH values below 9, stoicheiometric release of 2-thiopyridone. This property, together with the ability of the reagent markedly to increase its electrophilicity consequent on protonation, suggests alkyl-2-pyridyl disulphides in general as valuable two-protonic-state reactivity probes with exceptional specificity for thiol groups.This publication has 32 references indexed in Scilit:
- Benzofuroxan as a thiol-specific reactivity probe. Kinetics of its reactions with papain, ficin, bromelain and low-molecular-weight thiolsBiochemical Journal, 1977
- PH-dependence of the steady-state rate of a two-step enzymic reactionBiochemical Journal, 1976
- Specificity of induced conformational changes. Case of yeast glyceraldehyde-3-phosphate dehydrogenaseBiochemistry, 1975
- Covalent chromatography. Preparation of fully active papain from dried papaya latexBiochemical Journal, 1973
- Reactions of papain and of low-molecular-weight thiols with some aromatic disulphides. 2,2′-Dipyridyl disulphide as a convenient active-site titrant for papain even in the presence of other thiolsBiochemical Journal, 1973
- On the Mode of Activation of the Catalytically Essential Sulfhydryl Group of PapainEuropean Journal of Biochemistry, 1973
- The reaction of papain with Ellman's reagent [5,5′-dithiobis-(2-nitrobenzoate) dianion]Biochemical Journal, 1972
- A novel reactivity of papain and a convenient active site titration in the presence of other thiolsFEBS Letters, 1970
- The amino acid sequence around the active-site cysteine and histidine residues, and the buried cysteine residues in ficinBiochemical Journal, 1970
- SPECIFICITY OF PAPAIN-CATALYZED TRANSAMIDATION REACTIONSJournal of Biological Chemistry, 1957