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Effect of papain digestion on polypeptide subunits and electron-transfer pathways in mitochondrial b-c1 complex.

Papain digestion of subunits of mitochondrial b-c1 complex (ubiquinol-cytochrome-c reductase) isolated from bovine heart and its impact on redox and proton-motive activity of the whole complex were investigated. A 5-min incubation of the oxidized enzyme with papain resulted in digestion of core protein II and the 14-kDa subunit, and limited digestion of the iron-sulfur protein. This was accompanied by a small inhibition of the rate of electron flow and a marked inhibition of proton translocation with decrease of the H+/e- ratio for proton pumping. When papain treatment was performed on the b-c1 complex pre-reduced with ascorbate, partial proteolysis of the iron-sulfur protein and the 14-kDa subunit was greatly accelerated and the electron transfer activity was more markedly inhibited. In all the conditions tested, digestion of the Rieske iron-sulfur protein paralleled the inhibition of reductase activity. Under ascorbate-reduced conditions, papain digestion of the complex gave rise to an alteration of the EPR line shape of the iron-sulfur cluster, namely a broadening and shift of the gx negative peak and destabilization of the protein-bound antimycin-sensitive semiquinone. The latter paralleled the decrease in electron transfer activity and inhibition of antimycin-sensitive cytochrome-b reduction. The results obtained indicate the following. 1. Core protein II and the 14-kDa protein may contribute to the proton-conducting pathway(s) from the matrix aqueous phase to the primary protolytic redox center (protein-bound semiquinone/quinone couple). 2. The iron-sulfur protein contributes, together with other protein(s) (the 14-kDa subunit), to the stabilization of the protein-bound antimycin-sensitive semiquinone species in a protein pocket in the complex. 3. Reduction of the high-potential redox centers induces a change in the quaternary structure of the complex which results in an enhanced surface exposure of segments of the 14-kDa protein and the iron-sulfur protein.

Animals↗

Papain membrane on a collodion matrix: preparation and enzymic behavior.

A stable papain membrane has been prepared on a collodion matrix by absorbing papain in a collodion membrane and then cross-linking the papain with bisdiazobenzidine 3,3'-disulfonic acid. The pH-dependence of the activity of the enzyme membrane on the low-molecular-weight substrate, benzoylarginine ethyl ester, was found to differ from that of crystalline papain; the activity was low in the neutral pH range where the native enzyme has its optimum and high at alkaline pH. This anomalous behavior is due to a lowering of the local pH within the membrane as a result of the release of acid by the enzymic hydrolysis of the ester substrate.

Amides↗

Immunosuppressive activity of the 3a-1 fraction of papain.

The maximal nonlethal dose of the 3a-1 fraction of papain, determined by use of 9-week-old white albino rabbits, was 10 mg per injection, administered intravenously. The immunosuppressive activity of the 3a-1 fraction of papain was studied by its inhibition of sheep red blood cell hemolysin, bacterial agglutinin, and horse serum precipitin. Immune suppression was observed when papain injections preceded antigen injections by 12 to 18 hr. The enzyme preparation was analyzed by use of cellulose acetate and starch-gel electrophoresis and by the micro-Kjeldahl method. Starch-gel electrophoresis of serum samples revealed qualitative alterations in the alpha(-1) region 7 hr after papain administration. Changes were also observed in the urinary aminopolysaccharide content.

Animals↗

A comparative study of chromosome G-banding using trypsin, papain, and pretreatment with emulphogene.

G-banding of chromosome metaphase preparations derived from haemic cells of healthy individuals and from patients with acute myeloid leukaemia was performed with the aid of trypsin, papain, and pretreatment of the chromosome spreads with emulphogene before proteolytic digestion. Papain digestion revealed more distinguishable bands than did trypsin digestion. Pretreatment of the chromosome spreads with emulphogene greatly enhanced the number of distinguishable bands for both enzymes. The combination of pretreatment with emulphogene and digestion with papain revealed optimal numbers of bands for individual chromosomes essentially identical with those agreed at the Paris Conference 1971. The use of the emulphogene-papain technique appears also to offer an advantage in the banding of chromosomes from leukaemic cells.

Azure Stains↗

Forced oscillatory respiratory parameters following papain exposure in dogs.

Respiratory mechanics were studied in nine intubated dogs before and after exposure to aerosolized papain under conditions known to produce emphysemalike lesions. Forced oscillatory resistance (RFO), compliance (CFO), and inertance (IFO) were computed from impedance data obtained at transrespiratory pressures of -10, 0 (FRC), +10, and +20 cmHWO. Dynamic compliance during tidal breathing (CTB) was also measured at FRC. After papain exposure CTB and CFO increased by 25% (P less than 0.05) at FRC and at +10 cmH2O. There were no consistent changes in RFO or IFO at FRC. However, RFO showed a greater dependency on transrespiratory pressure, which suggests that the elastic properties of airways may also have been affected by papain. Measurements made in open-chested papain-exposed animals showed that about 17% of total RFO and 20% of total elastance were attributable to the chest wall. Forced oscillatory impedance data are sensitive to experimental changes in lung mechanics and provide useful estimates of standard respiratory parameters.

Airway Resistance↗

Intravenous papain-induced cartilage softening decreases preload of tracheal smooth muscle.

To study the interaction between tracheal cartilage and the trachealis muscle we measured trachealis muscle contraction in response to electrical field stimulation and methacholine in excised tracheal segments from control and papain-treated rabbits. Papain treatment softened the tracheal cartilage and altered the passive pressure volume curve of the tracheal segments at transmural pressures below 5 cmH2O. The transmural pressure required for maximal active changes in volume (isobaric contraction) with electrical field stimulation was increased in papain-treated animals. We conclude that tracheal cartilage provides a preload which stretches the trachealis muscle toward optimal length and that papain, by altering the elastic mechanical properties of cartilage, decreases this preload.

Animals↗

E-rosetting of guinea pig lymphocytes with lyophilized rabbit red cells after treatment with papain and glutaraldehyde.

Guinea pig lymphoid cells were reacted to form spontaneous rosettes (E-rosettes) with rabbit red blood cells before and after treatment with papain or a very low concentration (0.01%) of glutaraldehyde alone or both. The papain-glutaraldehyde-treated cells showed as high ability as papain-treated cells to rosette with lymphoid cells prepared from thymus, spleen, lymph node and peripheral blood of guinea pigs. Moreover, papain-glutaraldehyde-treated red cells were lyophilized and stored for 1 year without any change in their ability to form E-rosettes with these lymphoid cells. Binding between lymphocytes and treated or nontreated red cells was completely inhibited by specific anti-guinea pig thymocyte serum. Furthermore, a lymphocyte population enriched for B cells from lymph nodes or leukemic cells of strain 2 guinea pigs (B cells) did not show any substantial E-rosettes with nontreated or treated red cells. Scanning electron microscopy revealed no surface alteration in the treated cells when compared to those in nontreated red cells.

Aldehydes↗

Emphysema associated with intravascular leukocyte sequestration. Comparison with papain-induced emphysema.

The pulmonary effects of endotoxin-induced, repetitive, intravascular leukocyte sequestration were studied in dogs and were compared to the effects of intratracheal papain. Lung specimens from 7 animals receiving 20 to 23 weekly injections were histologically and physiologically similar to those from 10 control animals. Dogs receiving 50 injections of endotoxin during 17 wk developed histologic evidence of emphysema as seen on whole lung sections, a significant increase in mean linear intercept, and loss of elasticity at high lung volumes. The group of animals given intratracheal papain also developed histologic evidence of emphysema, with increased mean linear intercepts and loss of lung elasticity. However, the effects on lung elasticity were much greater in the papain group. Endotoxin-induced, repetitive leukocyte sequestration in the lungs results in mild emphysema; however, similar changes in alveolar size appear to cause less effect on the pressure-volume loop than does papain-induced emphysema.

Animals↗

A six-month study of the evolution of papain-induced emphysema in the dog.

The development of papain-induced emphysema and the effect of structural changes of the lung on pulmonary hemodynamics were investigated in the dog in a 6-month study. Papain was administered as an aerosol at the beginning of the study and at Day 21; control animals received saline. At 3 or at 6 months, hemodynamic investigations were carried out in the awake animal (sedated with piritramide). The dogs were then killed and the lungs processed for morphometric evaluation. Arterial blood gases were analyzed at regular intervals for the duration of the study. In the papain-treated dogs, mean linear intercept (Lm) and internal surface area of the lungs corrected to an arbitrary lung volume of 2L (ISA2) were significantly different from control dogs both at 3 and at 6 months. No progression of the structural changes of the lung occurred between these two time intervals. Arterial blood oxygenation was normal throughout the study. In the papain-treated group at 6, but not at 3, months, mean pulmonary arterial blood pressure (PAPm) and pulmonary arteriolar resistance (PAR) were significantly augmented when compared with the control group. A significant correlation was found at 6 months between the Lm and ISA2 on one side, and PAPm and PAR on the other side, suggesting that the structural changes of the lung were responsible for pulmonary hemodynamic alterations.

Aerosols↗

Papain entrapment in alginate beads for stability improvement and site-specific delivery: physicochemical characterization and factorial optimization using neural network modeling.

This work examines the influence of various process parameters (like sodium alginate concentration, calcium chloride concentration, and hardening time) on papain entrapped in ionotropically cross-linked alginate beads for stability improvement and site-specific delivery to the small intestine using neural network modeling. A 3(3) full-factorial design and feed-forward neural network with multilayer perceptron was used to investigate the effect of process variables on percentage of entrapment, time required for 50% and 90% of the enzyme release, particle size, and angle of repose. Topographical characterization was conducted by scanning electron microscopy, and entrapment was confirmed by Fourier transform infrared spectroscopy and differential scanning calorimetry. Times required for 50% (T(50)) and 90% (T(90)) of enzyme release were increased in all 3 of the process variables. Percentage entrapment and particle size were found to be directly proportional to sodium alginate concentration and inversely proportional to calcium chloride concentration and hardening time, whereas angle of repose and degree of cross-linking showed exactly opposite proportionality. Beads with >90% entrapment and T(50) of <10 minutes could be obtained at the low levels of all 3 of the process variables. The inability of beads to dissolve in acidic environment, with complete dissolution in buffer of pH >or=6.8, showed the suitability of beads to release papain into the small intestine. The shelf-life of the capsules prepared using the papain-loaded alginate beads was found to be 3.60 years compared with 1.01 years of the marketed formulation. It can be inferred from the above results that the proposed methodology can be used to prepare papain-loaded alginate beads for stability improvement and site-specific delivery.

Alginates↗

[Effects of SL-1010 (sodium hyaluronate with high molecular weight) on experimental osteoarthritis induced by intra-articularly applied papain in guinea pigs].

Effects of SL-1010 on the experimental osteoarthritis (OA) produced by intra-articular injection of papain, proteolytic enzyme, in the knee joint of the guinea pigs were histologically and biochemically investigated. In addition, experimental conditions to produce OA in guinea pig knee joint were also examined, since papain-induced OA has been mainly studied in rabbits. Six weeks after intra-articular injection of papain (1%, 0.1 ml), there were inflammatory reactions of the synovial membrane, degenerative changes in chondrocytes and the matrix of the articular cartilage, a decrease in the Safranin-O staining intensity and lowering of sulfated glycosaminoglycan. Electronmicroscopic observations revealed that the amorphous layer had disappeared and large bundles of unit collagen fibers and larger collagen fibers had appeared in the cartilage matrix. In the OA model, SL-1010 reduced the inflammatory reactions of the synovial membrane, inhibited development of degenerative changes in chondrocytes and the matrix of the articular cartilage and recovered the Safranin-O staining intensity. The sulfated glycosaminoglycan contents in the cartilage was significantly increased in the SL-1010-treated group, compared with the control group. The electromicroscopically observed charges in the papain-injected knee joint of the control group were rarely detected in the SL-1010-treated group. These results suggest that SL-1010 inhibits degenerative changes in the chondrocytes and the matrix probably by reducing synovial inflammation and protection of the cartilage in the OA model of guinea pigs.

Animals↗

Insight into catalytic mechanism of papain-like cysteine proteinases: the case of D158.

We studied the role of D158 in papain-like cysteine proteinases by using subtilisin Carlsberg, and its chemically modified analog thiolsubtilisin, by applying the proton inventory (PI) method and also by taking into account the pH profiles of the kcat/Km parameter. In the case of thiolsubtilisin, we estimated large inverse solvent isotope effects for kcat/Km, as in papain, whereas for subtilisin we found "dome-shaped" PI, suggesting a completely different mechanism. Finally, the kinetic behavior of thiolsubtilisin presented similarities as well as differences, compared to papain, suggesting a possible role for D158 as part of a catalytic triad in papain-like cysteine proteinases.

Aspartic Acid↗

Effect of papain injection on mineral concentration in tissues of roosters and hens.

A study was made of the effect of injected papain on the concentration of calcium, iron, copper, zinc and selenium in tissues of roosters and laying hens. Half the males and females were injected intravenously with a papain solution and the other half with 0.9% sodium chloride. The roosters and half the laying hens were injected one-hour ante-mortem and the others injected 24 hours ante-mortem. The laying hens had less Zn, Fe, Cu and Ca in the skeletal muscle than the roosters, and less Fe and Cu, but equivalent amounts of Ca and Zn, in the kidneys. In the roosters the kidney contained approximately five times as much Se as the muscle. The liver contained equivalent concentrations of Se in the roosters and laying hens. Papain had no effect on the concentration of any of the elements in the tissues. There was no significant difference in the concentration of the minerals between one-hour and 24-hour ante-mortem injections of the papain in the laying hens.

Animals↗

Purification and properties of two protease inhibitors from rat skin inhibiting papain and other SH-proteases.

Two papain inhibitors, I1 and I2, from rat skin extract were purified by affinity chromatography on KSCN-modified papain-agarose gel and by gel filtration on Sephadex G-100. I1 had a molecular weight of 74 000, a pI of 4.6, and it contained 4% of carbohydrates. I1 inhibited papain, ficin, bromelain, rat skin benzoylarginine-2-naphthylamide hydrolase, and to a minor extent, rat skin cathepsin C and bovine trypsin. Bovine chymotrypsin or rat skin cathepsin D were not inhibited and benzoylarginine-2-naphthylamide hydrolase was inhibited only at alkaline pH. An inhibitor corresponding to I1 was present in various rat tissues and also in serum. A similar inhibitor was present in the skin of cat, rabbit, guinea pig, and man. I2 had a molecular weight of 13 400, a pI of 4.9 and it contained no carbohydrates. I2 inhibited all thiol proteases tested, but not trypsin, chymotrypsin, or rat skin cathepsin D. I2 formed an equimolar complex with papain and benzoylarginine-2-naphthylamide hydrolase. I2 was present in rat skin, muscle, lung, and small intestine, but not in kidney, liver, or serum. A similar inhibitor was found in skin extracts of cat, rabbit, guinea pig, and man.

Animals↗

Cell surface immunoglobulin. XIX. Susceptibility of IgD and IgM on murine splenocytes to cleavage by papain.

The present studies were designed to determine the effect of papain upon IgM and IgD on the surface of murine splenocytes. By using radioiodinated cells, it was shown that IgD is more susceptible to cleavage by papain than IgM. The difference in susceptibility to papain of the two isotypes was not observed when cell lysates were employed, suggesting that attachment to the plasma membrane affects the accessibility of IgM to papain. The major site of attack of the enzyme on IgD appears to be in the hinge region. The possible biologic implications of such a cleavage are discussed.

Animals↗

[Pharmacological study of papain from the papaya plant cultivated in Uzbekistan].

It was experimentally established that papain from papaya cultivated in Uzbekistan possesses a pronounced proteolytic activity: 0.1, 0.5, and 1% papain solutions decreased the weight of burn crust in vitro and accelerated experimental burn healing in vivo. Under clinical conditions, papain produced therapeutic effect in patients with inflammatory disorders in genitals, intestine, liver, and eye. The pharmacological effects of papain produced from Uzbek papaya are identical to those of the commercial product from Merck.

Animals↗

Influence of Me2SO and incubation time on papain activity studied using fluorogenic substrates.

Papain activity in a buffer containing Me2SO was studied using fluorogenic substrates. It was found that the number of active sites of papain decreases with increasing Me2SO concentration whereas the incubation time, in a buffer containing 3% Me2SO does not affect the number of active sites. However, an increase of papain incubation time in the buffer with 3% Me2SO decreased the initial rate of hydrolysis of Z-Phe-Arg-Amc as well as Dabcyl-Lys-Phe-Gly-Gly-Ala-Ala-Edans. Moreover, an increase of Me2SO concentration in working buffer decreased the initial rate of papain-catalysed hydrolysis of both substrates. A rapid decrease of the initial rate (by up to 30%) was observed between 1 and 2% Me2SO. Application of the Michaelis-Menten equation revealed that at the higher Me2SO concentrations the apparent values of k(cat)/Km decreased as a result of Km increase and kcat decrease. However, Me2SO changed the substrate binding process more effectively (Km) than the rate of catalysis k(cat).

Amino Acid Sequence↗

[A study on papain-induced osteoarthritis in rabbit temporomandibular joint].

OBJECTIVE: The aim of this study was to set up an animal model of osteoarthritis (OA) in the rabbit temporomandibular joint (TMJ). METHODS: 0.3 ml of 1.6% papain solution was injected into the upper compartment of each left TMJ of six Japanese big ear white rabbits, and the same volume of saline was injected into the upper compartment of left TMJ as control. The rabbits were sacrificed 2, 4, 6 weeks respectively after injections and the TMJ specimens were pathologically examined. RESULTS: The degenerative changes were demonstrated in the TMJs injected with papain, such as thinner articular cartilage, fibrillation and destroyed cartilage matrix, and inflammation, proliferation, and degeneration of the synovial tissue. All these changes were much worse with prolonged observation time. Some kinds of reparative changes appeared in the sixth week after papain injection. CONCLUSION: Pathological similarities between papain induced rabbit TMJ osteoarthritis and human TMJ osteoarthritis were observed. This animal model has good reproducibility and hence can be used for exploring pathogenesis of this disease and selection of treatments for osteoarthritis of TMJ.

Animals↗