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Characterization by rapid-kinetic and equilibrium methods of the interaction between N-terminally truncated forms of chicken cystatin and the cysteine proteinases papain and actinidin.

The interaction between five N-terminally truncated forms of chicken cystatin (starting at Leu-7, Leu-8, Gly-9, Ala-10 and Asp-15) and the cysteine proteinases papain and actinidin was studied by spectroscopic, kinetic and equilibrium methods. The u.v. absorption, near-u.v. c.d. and fluorescence emission difference spectra for the interactions with papain were all similar to the corresponding spectra for intact cystatin. The second-order association rate constants at 25 degrees C, pH 7.4, I 0.15, for the binding of the truncated forms to papain varied about 2-fold, from 6 x 10(6) to 1.5 x 10(7) M-1.s-1, and were comparable to the value of 9.9 x 10(6) M-1.s-1 for intact cystatin. In contrast, the rate constants for the dissociation of the complexes with papain increased markedly with increasing extent of truncation, from 7.5 x 10(-6)s-1 for Leu7 cystatin (a truncated form of cystatin having Leu-7 as its N-terminal amino acid) to 1.6s-1 for Ala10-cystatin, whereas the dissociation rate constants for the latter form and Asp15-cystatin were similar. Consequently, the binding affinities between the truncated cystatins and papain decreased in an analogous manner, as was also shown for the interaction with actinidin by equilibrium measurements. Studies of the binding of the truncated cystatins to inactivated papains indicated that small substituents on the active-site cysteine of the enzyme can be accommodated in the complex without any loss of affinity when the N-terminal segment of the inhibitor is removed. Taken together, the results suggest that in the N-terminal region of chicken cystatin only residues preceding Ala-10 participate in the interaction with proteinases. Of these residues, Leu-7 and Leu-8 together account for about two-thirds of the unitary free energy of binding contributed by the N-terminal region, the relative importance of the two residues being dependent on the target proteinase. Both Gly-9 and residues N-terminal of Leu-7 further stabilize the interaction but contribute substantially smaller binding energies than do the two leucine residues.

Amino Acid Sequence↗

Clarification of the pH-dependent kinetic behaviour of papain by using reactivity probes and analysis of alkylation and catalysed acylation reactions in terms of multihydronic state models: implications for electrostatics calculations and interpretation of the consequences of site-specific mutations such as Asp-158-Asn and Asp-158-Glu.

1. The complex behaviour of papain (EC 3.4.22.2) in acidic media has been investigated by (a) stopped-flow reactivity probe kinetics using 4,4'-dipyrimidyl disulphide (I) and 2,2'-dipyridyl disulphide (II) as thiol-specific time-dependent inhibitors with markedly different susceptibilities to activation by hydronation (protonation) and (b) using the multitasking application program SKETCHER for the rapid evaluation of pH-dependent kinetic data by means of interactive manipulation of calculated curves. 2. The substantially lower basicity of (I) (pKa 0.91) than that of (II) (pKa 2.45) combined with retention of high reactivity permitted the pKa for the formation of the (Cys-25)-S-/(His-159)-Im+H ion-pair state of papain to be determined kinetically as 3.4, a value close to that (3.3) deduced by potentiometric difference titration [Lewis, Johnson and Shafer (1976) Biochemistry 15, 5009-5017] and lower than the value (approx. 4) often reported from pH-dependent kinetic studies. The higher values are now known to arise from inadequate data analysis that does not take account of other overlapping kinetically influential ionizations. 3. Re-evaluation of the extensive sets of pH-kcat/Km data for the hydrolysis of nine substrates by papain reported by Polgár and Halász (1978) (Eur. J. Biochem. 88, 513-521) by making use of SKETCHER, the known pKa value (3.4) from the reaction with compound (I) and two additional kinetically influential pKa values deduced from the reaction with compound (II) now permits the identification of the pH-dependent events in reactions of papain with inhibitors and substrates. 4. A major conclusion is that, whereas in reactions of simple alkylating agents and compound (I) full nucleophilic character of (Cys-25)-S-/(His-159)-Im+H is provided by hydronic dissociation with pKa 3.3-3.4, in catalysis relatively little catalytic competence is produced consequent upon ion-pair formation. Substantial catalytic competence requires further hydronic dissociation with pKa approx. 4, and for cationic substrates further enhancement is produced by hydronic dissociation with pKa approx. 5. 5. The present work, together with the kinetic analysis of reactions of papain in alkaline media reported by Mellor, Thomas, Topham and Brocklehurst [Biochem. J. (1993) 290, 289-296], defines the kinetically influential ionizations of papain as 3.4, 4.0, 5.0, 8.3 and 10.0 of which 3.4 and 8.3 relate to the formation and subsequent dehydronation of the ion-pair state.(ABSTRACT TRUNCATED AT 400 WORDS)

Acylation↗

Inhibition of papain by S-nitrosothiols. Formation of mixed disulfides.

S-Nitrosylation of protein thiols is one of the cellular regulatory mechanisms induced by NO. The cysteine protease papain has a critical thiol residue (Cys(25)). It has been demonstrated that NO or NO donors such as sodium nitroprusside and N-nitrosoaniline derivatives can reversibly inhibit this enzyme by S-NO bond formation in its active site. In this study, a different regulated mechanism of inactivation was reported using S-nitrosothiols as the NO donor. Five S-nitroso compounds, S-nitroso-N-acetyl-dl-penicillamine, S-nitrosoglutathione, S-nitrosocaptopril, glucose-S-nitroso-N-acetyl-dl-penicillamine-2, and the S-nitroso tripeptide acetyl-Phe-Gly-S-nitrosopenicillamine, exhibited different inhibitory activities toward the enzyme in a time- and concentration-dependent manner with second-order rate constants (k(i)/K(I)) ranging from 8.9 to 17.2 m(-1) s(-1). The inhibition of papain by S-nitrosothiol was rapidly reversed by dithiothreitol, but not by ascorbate, which could reverse the inhibition of papain by NOBF(4). Incubation of the enzyme with a fluorescent S-nitroso probe (S-nitroso-5-dimethylaminonaphthalene-1-sulfonyl) resulted in the appearance of fluorescence of the protein, indicating the formation of a thiol adduct. Moreover, S-transnitrosylation in the incubation of S-nitroso inactivators with papain was excluded. These results suggest that inactivation of papain by S-nitrosothiols is due to a direct attack of the highly reactive thiolate (Cys(25)) in the enzyme active site on the sulfur of S-nitrosothiols to form a mixed disulfide between the inactivator and papain.

Binding Sites↗

Pulmonary disease in workers exposed to papain: clinico-physiological and immunological studies.

Of the twenty-three employees at a pharmaceutical plant manufacturing a new product containing papain, twelve had respiratory symptoms of cough, wheezing, dyspnoea, or chest paint. Most were studied with in-depth interviews by a doctor, extensive pulmonary function tests, and immunoserological tests for IgE and precipitating antibodies specific for papain, as well as total IgE antibodies to common natural allergens. There were significant correlates (all P values < 0.05) between the presence of specific IgE antibodies to papain and decreases of FEV1, FEF75--85, TLC, RV, and response to bronchodilators as percentage change from baseline for all spirographic flow rates. Atopic workers developed pulmonary symptoms and antipapain antibodies significantly sooner after papain exposure than did the others. Duration of exposure had no effect on symptomatology, pulmonary function, or immunological response. However, those judged to have the greatest amount of dust exposure per work-day had significantly more pulmonary symptoms (P < 0.005). Papain produced lung diseases by acting as an inhalant allergen rather than a proteolytic enzyme. Papain is a potent sensitizer in humans for the production of respiratory disease. The pulmonary reactions, based on physiological data, seem to involve small airways, alveolar, and interstitial lung tissue in an inflammatory rather than destructive manner, and thus resemble bronchitis and interstitial lung disease rather than pulmonary emphysema or typical bronchial asthma.

Adult↗

The effect of thiol compounds on the autolysis of papain.

Incubation of papain with 3--17.5 mM dithiothreitol and dithioerythritol at pH 8.5 causes inactivation owing to autolysis. Such inactivation is not observed on incubation with equivalent concentrations of mercaptoethanol, cysteine or 2,3-dimercaptopropanol. The inactivation rate is independent of papain concentration within the range of 0.5--2% and is proportional to dithiothreitol concentration. This is in agreement with a sequence of two reactions: (Formula: see text) the first reaction being rate-limiting. S-Carboxymethyl-papain (I) and S-carboxamidomethyl-papain (II) were incubated with 18 mM dithiothreitol at pH 8.5 and, after stopping the reaction with iodoacetic acid, were subjected to gel electrophoresis. Electrophoretograms of both I and II exhibited a small new band attributable to a species with one disulphide bond reduced and carboxymethylated. The new band on II was more pronounced than that of I. It is argued that (Formula: see text) is a papain species with one reduced disulphide bond, sensitive to proteolytic attack by native papain.

Dithioerythritol↗

Requirement of the 20-kDa light chain for the papain-resistant conformation of gizzard myosin.

The limited chymotryptic digestion of unphosphorylated gizzard myosin in 0.15 M NaCl converted a papain-insensitive myosin in ATP to a papain-sensitive one. This conversion without phosphorylation of its 20-kDa light chain was accompanied with truncation of a 200-kDa heavy chain to a 195-kDa fragment and with the degradation of a 20-kDa light chain. Papain also yielded the 195-kDa fragment from the heavy chain, irrespective of the presence or absence of ATP. However, the ATP-induced protection of unphosphorylated myosin from the papain-digestion disappeared concurrently with degradation of the 20-kDa light chain by papain rather than the truncation of heavy chain. Papers from two laboratories [Onishi, H. & Watanabe, S. (1984) J. Biochem. (Tokyo) 95, 903-905; Kumon, A., Yasuda, S., Murakami, N., and Matsumura, S. (1984) Eur. J. Biochem. 140, 265-271] have reported that the ATP-protection of unphosphorylated myosin against papain is not observed after the 20-kDa light chain has been phosphorylated. The present results might indicate that the ATP-induced protection is also abolished through the chymotryptic degradation of the 20-kDa light chain.

Adenosine Triphosphate↗

Occupational asthma after inhalation of dust of the proteolytic enzyme, papain.

Papain is a proteolytic enzyme widely used by biochemists. In experiments on animals papain has been shown to cause emphysema either when they inhaled a single small dose or after intratracheal inhalation. Four food technologists were occupationally exposed to heavy concentrations of papain dust in air. Subjects 1 and 2 developed an immediate acute asthmatic reaction, and symptoms of obstructive airways disease persisted for some months while each remained in the same working area, presumably exposed to small gradually diminishing amounts of residual papain dust. Tests of respiratory function were carried out on all four subjects 1 1/2 years later and showed in subjects 1 and 3 minimal abnormality of bronchial reactivity and of ventilation distribution. Review of the literature reveals only two reports of asthma resulting from papain inhalation, although its antigenic and skin sensitizing qualities have been known and described for many years. It seems remarkable that a substance such as papain, shown to be a potent cause of lung damage in experimental animals, should have produced so little evidence of abnormality in our subjects after considerable exposure. Follow-up ventilatory function tests may cast further light on this but we postulate that the asthmatic response may be biologically protective and those lacking this reaction could later develop emphysema as a long-term outcome.

Adult↗

Effects of exercise training on papain-induced pulmonary emphysema in Wistar rats.

The purpose of the present study was to evaluate the role of exercise training on the development of papain-induced emphysema in rats. Our hypothesis was that the increase in pulmonary tissue stretching associated with exercise could increase the severity of a protease-induced emphysema. Wistar rats were randomly assigned to four groups (n = 10 for each group) that received, respectively, intratracheal infusion of papain (6 mg in 1 ml of 0.9% NaCl) or vehicle and were submitted or not to a protocol of exercise on a treadmill. Rats exercised at 13.3 m/min, 6 days/wk, for 9 wk (increasing exercise time, from 10 to 35 min). We measured respiratory system elastance and resistance, the size and weight of the heart, and pulmonary mean linear intercept (Lm). After 9 wk of exercise training, there were no differences in respiratory system resistance and elastance values among the four experimental groups. Volume of the heart was significantly greater in rats submitted to exercise training (P = 0.007) compared with sedentary rats due to increases in volumes of both right and left cardiac chambers. Lm was significantly greater in rats that received papain compared with saline-infused rats (P = 0.025). Surprisingly, this was true, even though there was no significant decrease in elastance, possibly due to connective tissue remodeling. However, Lm was significantly greater in papain + exercise rats compared with rats that received papain and were not submitted to exercise. We conclude that exercise training can increase alveolar damage induced by papain infusion.

Airway Resistance↗

Alterations in stress distributions around interalveolar pores after exposure to papain in dogs.

Electron microscopic examination of dog lungs after exposure to papain for as little as 30 min showed removal of surfactant material from the pores of Kohn, and significant enlargement of the pores. We analyzed these early events in terms of structural mechanics, and concluded that: (1) The approximate doubling of the average diameter indicates a lowering of the effective modulus of elasticity in the vicinity of the pores to less than 50% of its original value, which is consistent with the destruction of elastin. (2) The removal of the surfactant material, which normally occludes the pores, results in the loss of the force caused by surface tension, which normally acts at the rim of the pore, and alleviates maximal tissue stress. This lost force can result in a stress increase on the elastin by as much as 20 to 30% of its strength. (3) The whole lung volume pressure deflation curves obtained in hamsters after exposure to papain show a significant increase in compliance associated with papain treatment. Degradation in the elastic modulus of the tissue, caused by the papain, contributes to such an increase. On the other hand, surface tension measurements from canine lung extracts after exposure to papain yield results that should contribute to a decrease in compliance. Because papain treatment destroys the continuity of the lining layer, this contribution is minimized, and the effect on the tissue dominates, resulting in a net increase in compliance.

Animals↗

Lung structure and function with age in normal rats and rats with papain emphysema.

Intrapulmonary deposition of the proteolytic enzyme papain produces a lesion resembling emphysema in experimental animals. The natural history of this lesion has not been well defined. The present study was performed to evaluate changes in lung structure and function with aging in normal rats and rats exposed to an aerosol of papain at 2 mo of age. Groups of control and papain-exposed animals were studied at 4, 8, and 18 mo of age. The parameters of lung function studied were specific airways' conductance (G(aw)/TGV), diffusing capacity per unit of alveolar volume (D(Lco)/V(A)), diffusing capacity (D(Lco)), and functional residual capacity (FRC). Morphometric parameters were the postfixation lung volume (V(L)) and mean chord length (L(M)); internal surface area (ISA) and ISA extrapolated to both the mean V(L) of the corresponding papain group and a V(L) of 10 ml (ISA(10)) were calculated. At 4 mo of age L(M) and FRC were significantly increased and ISA, D(Lco)/V(A), and D(Lco) were significantly reduced in the papain group. At 8 mo of age L(M) was significantly increased and ISA was significantly decreased in the papain group: physiologic studies were not performed in this group. At 18 mo of age L(M) was significantly increased and D(Lco)/V(A), D(Lco), and ISA were significantly decreased. Neither progression nor healing of the lesion was observed despite similar lung growth in both groups. This study demonstrates that a single proteolytic lung injury produces a fixed deficit of lung parenchyma. Progressive lung destruction may require repeated or continuous lung injury.

Aerosols↗

Molecular dynamics simulation of papain-E-64 (N-[N-(L-3-trans-carboxyoxirane-2-carbonyl)-L-leucyl]agmatine) complex.

To investigate the possible binding mode of E-64 (N-[N-(L-3-trans-carboxyoxirane-2-carbonyl)-L-leucyl]agmatine), a potent cysteine protease inhibitor, to papain active site, molecular dynamics simulations were applied to two complex forms: R- and S- configurational forms of E-64 C2 atom for the covalent bond formation with the papain Cys-25 SH group. The tertiary structures of the papain-E-64 complexes were built by visual interactive modelling and the energy minimization technique, and were subjected to the dynamics simulations of 10 ps. Although no significant difference was observed between the potential energies of energy-minimized R- and S-complex forms, the molecular dynamics simulations suggested that the hydrogen bonding mode of the former form is more advantageous than that of the latter one. Comparing with the hydrogen bonds observed in the papain-E-64 complex crystal, it could be concluded that the present molecular dynamics simulation reflects well the three-dimensional structure concerning the interaction of E-64 with the papain active site. The conformational characteristics of E-64 and its possible interaction mode with papain were also discussed.

Computer Simulation↗

Cell dissociation with papain reduces the density of cGMP-activated channels of the retinal rod.

A proteolytic enzyme, papain, is the enzyme commonly used for dissociation of retinal neurons. To ask whether papain modifies the activity of ion channels, cGMP-activated channels were recorded in inside-out membrane patches excised from the bullfrog rod outer segment, and the activity was compared between cells dissociated using papain and cells dissociated mechanically. While the affinity to cGMP, I-V relation, channel kinetics, and single-channel current amplitude were almost the same in both papain-treated and the control preparations, the total current flowing through the patch membrane of the papain-treated cells was reduced to about 20% of the control, suggesting that papain reduced the density of cGMP-activated channels.

Animals↗

[Contact urticaria, rhinoconjunctivitis and bronchial asthma from occupational use of papain].

Papain is a plant protein with a wide pharmacological, domestic and industrial use. It leads a high sensitisation, being the most common rotue of entry the inhalation. The occupational allergy to papain in exposed workers was described some years ago, being presented with bronchial asthma, rhinitis or both. In most of the cases, the specific IgE was positive. We present a case contact urticaria, rhinoconjunctivitis and bronchial asthma per papain of occupational origin. Papain prick test, specific IgE and nasal challenge were positive. The peak flow record showed diary decreases during the working week and the basal spirometry showed obstruction to the airflow. The patient was moved away the place where papain was handled and this resolved the clinical symptoms and the spirometry returns to the normal values. We present a case of IgE-mediated allergy, vehicled by tow routes: contact and airborne. The latest produced clinical manifestations later. Papain was used as Cephalopoda softening, because of that it worth emphasising its seasonal use.

Adult↗

Influence of metal ions on structure and catalytic activity of papain.

Papain is an endoprotease belonging to cysteine protease family. The catalytic activity of papain in presence of two different metal ions namely zinc and cadmium has been investigated. Both the metal ions are potent inhibitors of the enzyme activity in a concentration dependent manner. The enzyme loses 50% of its activity at 2 x 10(-4) M of CdCl2 and 4 x 10(-4) M of ZnCl2. It is completely inactivated above 1 x 10(-3) M concentration of either ZnCl2 or CdCl2. Of the two metal ions zinc with a ki value of 5 x 10(-5) M is a more potent inhibitor than cadmium which has a ki value of 8 x 10(-5) M. Both the metal ions have higher affinity for active site than the substrate. At concentrations above 1 x 10(-2) M of metal ions the inhibition is not reversible. Calorimetric studies showed decreased thermal stability of papain upon binding of these metal ions. Far UV circular dichroic spectral data showed only small changes in the beta-structure content upon binding of these metal ions. These data are also supported by decrease in the apparent thermal transition temperature of papain by 5 degrees C upon binding of metal ions indicating destabilization of the papain molecule. The mechanism of both partial and complete inactivation of papain in presence of these two metal ions both at lower and higher concentration has been explained.

Cadmium↗

Comparison of the size and physical properties of gamma-glutamyltranspeptidase purified from rat kidney following solubilization with papain or with Triton X-100.

gamma-Glutamyltranspeptidase is associated with the brush border membrane of kidney proximal straight tubule cells. It can be solubilized qualitatively by treatment with papain or Triton X-100. Neither procedure affects its catalytic activity but the two resulting forms of the enzyme differ considerably in their physical properties. The papain-solubilized transpeptidase is soluble in aqueous buffers and was purified 430-fold. It has an s20,w of 4.9 S, a Stokes radius of 36 A, and a calculated molecular weight of 69,000. It appears homogeneous by sedimentation equilibrium centrifugation (Mr=66,700). In contrast, the Triton-solubilized transpeptidase is soluble only in the presence of detergents and was purifed 300-fold. This form of the enzyme has a Stokes radius of 70 A but an s20,w of only 4.15 S. Aggregation of the enzyme just below the critical micelle concentration of Triton X-100 and its ability to bind 1.16 mg of Triton X-100-protein complex was calculated to be 169,000, but the glycoprotein portion of the complex is 52% of the total mass (87,000). The mass of Triton X-100 (82,000) is consistent with its reported micelle molecular weight. Treatment of the Triton-purified transpeptidase with papain or bromelain results in a form of the enzyme identical in all respects with the papain-purified enzyme. Both the Triton- and papain-purified transpeptidase exhibit two protein bands on sodium lauryl sulfate-polyacrylamide gel electrophoresis. The smaller subunits of the two forms appear identical (Mr=27,000), while the larger subunits of the Triton- and papain-purified enzyme have apparent molecular weights of 54,000 and 51,000, respectively. These data suggest that a peptide (3,000 to 19,000) in the larger subunit of gamma-glutamyltranspeptidase is responsible for its binding to Triton micelles and probably for holding the enzyme in the brush border membrane.

Animals↗

Purification and separation of subsets of human Ia molecules by papain digestion.

Papain digestion of human Ia(-like) molecules was performed under various conditions using 125I-labelled preparation of non-ionic-detergent-solubilized Ia antigens of Daudi cells. The products were examined for their allospecificities by a direct binding reaction with human Ia alloantisera. The Daudi Ia preparation is known to contain Ia molecules of DRw6 specificity, an HLA-DR specificity and also Ia molecules of DC1 specificity, a putative non-HLA-DR specificity. Limited papain digestion cleaved off the hydrophobic portion of human Ia molecules and gave smaller sized Ia products. The cleavage did not affect the Ia alloantigenic determinants and occurred much more readily with molecules of DC1 specificity than with molecules of DRw6 specificity. As a consequence, limited papain digestion of the Daudi Ia pool yielded an Ia preparation with DRw6 specificity but lacking DC1 specificity and another Ia preparation which was enriched in DC1 specificity. The limited papain digestion of the Daudi Ia pool followed by gel filtration and LcH affinity chromatography also produced Ia REPARATIONS OF HIGH PURITY. Extensive papain digestion damaged the Ia alloantigenic determinants but the DC1 determinant was much more resistant than the DRw6 determinant. Thus extensive papain digestion yielded an Ia preparation which was relatively rich in DC1 specificity and essentially devoid of DRw6 specificity.

Antigen-Antibody Reactions↗

Papain reduces gastric acid secretion induced by histamine and other secretagogues in anesthetized rats.

We studied the effect of papain on rats' gastric acid secretion and found that: 1. Feeding of latex of unripe papaya fruit significantly reduced gastric acid secretion induced by methacholine; 2. Feeding of crystalline papain in doses of 3.2 mg/kg reduced gastric acid secretion induced by histamine, methacholine and tetragastrin; 3. The reduction of gastric acid secretion was observed as early as 2 hours after papain feeding, lasted up to 48 hours, and waned within 96 hours; 4. Intraperitoneal injection of papain had no effect on acid secretion. These results led us to believe tha the effect of papain on gastric acid secretion is a local one acting directly on the gastric mucosa, and this local effect of a single dose of papain is reversible, causing no permanent damage to the mucosa.

Administration, Oral↗

Blocking of CTL-mediated killing by monoclonal antibodies to LFA-1 and LYT-2,3. I. Increased susceptibility to blocking after papain treatment of target cells.

It is now established that monoclonal antibodies (MAb) against LFA-1 and Lyt-2,3 antigens on cytolytic T lymphocytes (CTL) block killing function in the absence of C. It has been suggested that the blocking is inversely related to CTL-target affinity. In this report, we studied the effect of papain pretreatment of target cells, because papain is known to remove H-2 and to render target cells more resistant to allospecific CTL. CTL-target conjugate formation was weaker with papain-treated target cells (based on reduced post-dispersion lysis in dextran-containing medium). The concentration of MAb required to produce 40 to 60% inhibition of 51Cr release (2-hr assay) was reduced four to 29-fold for alpha LFA-1 and 64 to 114-fold for alpha Lyt-2,3. Papain, however, did not induce blocking by MAb to other CTL antigens such as Thy-1, H-2, and T200. Flow cytometric analysis confirmed that papain selectively removed more than 95% of H-2. In kinetic studies of removal and recovery, H-2 density and conjugate formation correlated well with each other. Sensitivity to blocking was not as well correlated, raising the possibility that an unidentified papain-sensitive target cell molecule other than H-2 plays an important role in CTL-target interaction.

Animals↗