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Biomedical subjects

A Molla

Publications and source records attributed to A Molla.

At least 91 records · Page 5Linked to original sources

Gastric emptying of oral rehydration solutions in acute cholera.

Gastric emptying of rice powder electrolyte solution and of glucose electrolyte solution was measured by a marker dilution double sampling technique in 14 and in 16 adult patients respectively after intravenous rehydration during an attack of acute cholera. Six patients who received rice powder electrolyte solution and seven who received glucose electrolyte solution re-attended for a repeat study with the same test meal 16 days later, when fully recovered from cholera. No differences in gastric emptying patterns of the two electrolyte solutions were observed, either in the acute or in the recovered patients. Similarly, gastric emptying of both solutions was rapid during acute cholera and comparable to that observed in recovered patients. This study indicates that gastric emptying is not impaired in acute cholera and that the rate of emptying of oral rehydration solutions is adequate to account for their observed clinical efficacy in fast purging patients with acute cholera.

Acute Disease↗

Versatility of a vector for expressing foreign polypeptides at the surface of gram-negative bacteria.

A wide variety of peptides in terms of length and sequence can be expressed at the surface of the bacterium Escherichia coli by genetic insertion into a 'permissive' site of the outer membrane protein LamB, used as a carrier. The resulting hybrid proteins essentially keep their biological activities with inserts of up to about 60 amino acid residues, and of a large range of predicted structures or hydrophobicities. This reflects a remarkable flexibility in the organization of the protein, but also in the export machinery. The method used to select such a permissive site is quite general and its potential to generate applications, including a versatile type of live bacterial vaccine, are discussed.

Amino Acid Sequence↗

Interdomain cleavage of plasma fibronectin by zinc-metalloproteinase from Serratia marcescens.

Limited proteolysis of porcine plasma fibronectin by the 56 kDa proteinase (56K proteinase) (EC 3.4.24.4) from Serratia marcescens released six polypeptides: a 27 kDa peptide, the heparin-binding domain which comprises the NH2-terminal end; a 50 kDa peptide, a mid-molecule that mediates binding to gelatin or collagen; a 160 kDa peptide, that contained the heparin-binding domain with cell-spreading activity; and a 140 and a 20 kDa peptide which released from the 160 kDa peptide. Each fragment was purified and characterized by its chemical and biological properties, and it was found that they were respectively different domains. Both the 160 and the 140 kDa peptide contained one cysteine per mole of peptide. The 160 kDa peptides were connected by a 6 kDa peptide, which was present at the COOH-terminal end of the molecule and was biologically inactive. Only 6 kDa peptide contained a disulfide bond and produced 3 kDa peptide after reduction, whereas other fragments did not change with or without reduction on SDS-polyacrylamide gel electrophoresis. NH2-terminal sequence analyses of the released peptides showed that the 56K proteinase cleaved the fibronectin between the Arg-Thr (located at two different sites), Leu-Ser and Gln-Glu bonds. Out of 118 Arg residues, there are nine sequences containing Arg-Thr, and two of them near or at an interdomain location (at Arg 259 and 2239) were cleaved. Out of 124 Leu residues, there are 11 Leu-Ser sequences and only one, at 687, was cleaved. The above fragments with functional domain activity could be aligned according to the previously reported amino-acid sequence of human or bovine plasma fibronectin. The treatment of fibroblast cells by the 56K proteinase resulted in loss of morphological integrity and extracellular matrix.

Amino Acid Sequence↗

Activated c-K-ras and c-N-ras oncogenes in 3-methylcholanthrene-induced BALB/c fibrosarcomas.

DNAs from fourteen fibrosarcomas induced by 3-methylcholanthrene (MCA) in BALB/c mice were analyzed for the presence of transforming oncogenes following transfection on NIH3T3 cells. Six transfection-positive DNAs contained an activated ras gene: four c-K-ras and two c-N-ras. These results demonstrate that c-K-ras is not the only oncogene of the ras family activated in MCA-induced murine fibrosarcomas as was previously indicated.

Animals↗

Characterization of 73 kDa thiol protease from Serratia marcescens and its effect on plasma proteins.

The 73-kDa protease (73K protease) was purified from a clinical isolate of Serratia marcescens kums 3958. The purified protease appeared homogeneous by sodium dodecyl sulfate polyacrylamide gel electrophoresis in the presence or absence of 2-mercaptoethanol. The protease is active in a broad pH range with maximum activity at pH 7.5-8.0. The protease appeared to be a thiol protease, since it was inhibited by sulfhydryl reactive compounds such as p-chloromercuribenzoic acid, fluorescein mercuric acetate (FMA), iodoacetamide, and N-ethylmaleimide, and the protease activity was enhanced by various reducing agents such as cysteine, glutathione, 2-mercaptoethanol, and dithiothreitol. The protease contained 2 mol of free sulfhydryl residues per mol of protease. When the protease was reacted with FMA, a maximum of 2 mol of FMA per mol of enzyme was found reacted, based on fluorescence quenching in which the enzyme inactivation was paralleled linearly with the loss of both SH groups. This indicates possible equal involvement of the two thiol groups for the enzyme activity. The inactivation of the protease by FMA was partially restored by a dialysis in the presence of cysteine or dithiothreitol. The protease was not inhibited by high molecular weight kininogen but was inhibited by alpha 2-macroglobulin. The protease bound stoichiometrically to alpha 2-macroglobulin with 1:1 molar ratio and 25% activity remained constant even after the addition of 4 molar excess of alpha 2-macroglobulin. The protease extensively degraded IgG, IgA, fibronectin, fibrinogen, and alpha 1-protease inhibitor.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Cleavage of immunoglobulin G (IgG) and IgA around the hinge region by proteases from Serratia marcescens.

Seven clinical and two nonclinical isolates of Serratia marcescens were examined for their ability to produce extracellular enzymes that cleave immunoglobulin G (IgG) and IgA molecules. All seven clinical isolates excreted a large amount of a 56-kilodalton (kDa) protease (56K protease) and small amounts of a 60-kDa and a 73-kDa protease (60K and 73K proteases, respectively) in culture medium during growth. All purified proteases cleaved IgG and IgA effectively if the level of protease production exceeded 2 to 5 micrograms/ml. The proteolytic activity in the culture supernatant was inhibited by about 85% by a chelating agent (EDTA), which indicated that the major immunoglobulin-cleaving enzyme is the metalloprotease(s) reported previously. Immunological quantification of proteases by single radial immunodiffusion showed similar results: the amount of 56K protease was about 65% and those of the 60K and 73K proteases were about 20 and 5%, respectively. Incubation for 3 h at 37 degrees C was required to generate immunoreactive Fab and Fc fragments. Further analysis of the cleavage products of IgG or IgA demonstrated that the 56K protease, as well as the 60K and 73K proteases, cleaves only the heavy chain of these immunoglobulins near the hinge region to generate Fab and Fc fragments. The susceptibilities of the subclasses of IgG and IgA to the 56K protease were as follows: IgG3 greater than IgG1 greater than IgG2 greater than IgG4 and IgA1 greater than IgA2. IgG2, IgG4, and IgA2 were relatively resistant to the 56K protease.

Humans↗

Presentation of two epitopes of the preS2 region of hepatitis B virus on live recombinant bacteria.

Having developed a genetic procedure to expose a foreign epitope at the surface of Escherichia coli by using the outer membrane LamB protein as a carrier, we apply this procedure to express two distinct portions of the preS2 region of hepatitis B virus: region A, residues 132-145, and region B, residues 153-171. The resulting hybrid proteins (LamB-preS2 A and LamB-preS2 B) were normally expressed, stable, and still kept most biologic functions of LamB. The corresponding bacterial strains were used directly as immunogens in rabbits and mice. Both viral sequences were found to be immunogenic in the two animal species. With LamB-preS2 A, antibodies induced were able to react with the viral particles and the immobilized peptide. With LamB-preS2 B, the antibodies raised were not able to recognize the immobilized peptide. However, the results suggest that the B epitope, inserted in LamB, was at least as efficient as the corresponding synthetic peptide in raising antiviral antibodies. Thus, epitope presentation with LamB may present advantages for immunization. We also have shown that peptide A is an essential part of the polymerized human serum albumin receptor. These results, which validate further the LamB vector system for epitope presentation, provide information on the two hepatitis B regions expressed.

Animals↗

Internalization of serratial protease into cells as an enzyme-inhibitor complex with alpha 2-macroglobulin and regeneration of protease activity and cytotoxicity.

Extracellular serratial protease (56,000 Da) is known to be cytotoxic. Fluorescein isothiocyanate-labeled protease was found to form a complex with human alpha 2-macroglobulin (alpha 2M), and this enzyme-inhibitor complex was purified. The protease was found to be internalized by fibroblasts in culture as a complex with alpha 2M, which resulted in cell destruction. Regeneration of enzyme activity was confirmed in cells after 2-3 h of incubation. Chicken egg-white ovomacroglobulin, a homolog of human alpha 2M, formed a complex with this enzyme similarly and more tightly but failed to exhibit protease activity, cytotoxicity, and internalization into cells.

Binding, Competitive↗

Cytoplasmic gels from macrophages. Evidence for the involvement of four proteins in the calcium-dependent solation of actin networks.

A method has been devised to study the influence of Ca2+ on the in vitro formation of actin gel networks. Under appropriate conditions low-Ca2+ cytosolic extracts (less than 1 nM) from macrophages rapidly formed a macromolecular complex composed of actin, filamin, alpha-actinin and two new proteins of 70 kDa and 55 kDa. [Pacaud, M. (1986) Eur. J. Biochem. 156, 521-530]. Increasing concentrations of free Ca2+ to 1-2 microM resulted in complete inhibition of the association of 70-kDa protein, a protein which associates actin filaments into parallel arrays. Concentrations of Ca2+ greater than 3 microM caused incorporation of two additional proteins, gelsolin and a 18-kDa polypeptide, with no change in either the actin or alpha-actinin content of the cytoskeletal structures. Use of a polyacrylamide gel overlay technique with 125I-calmodulin revealed that a high-Mr calmodulin-binding protein analogous to spectrin was also associated with these structures when micromolar Ca2+ was present. Similar assays with 45CaCl2 indicated that the 70-kDa protein binds Ca2+ with high affinity. It is thus suggested that Ca2+ might regulate the dynamic assembly of microfilaments through several target proteins, gelsolin, the 70-kDa protein and calmodulin.

Actins↗

Antitumor activity of some bacterial proteases: eradication of solid tumors in mice by intratumor injection.

A protease isolated from the culture filtrate of a Gram-negative bacteria, Serratia marcescens kums 3958, showed very potent antitumor activity when injected into Meth-A or RL male 1 tumors in BALB/c mice at 30 micrograms per tumor or more. This and certain other proteases, which are resistant to many protease inhibitors in plasma, appear to be new candidate drugs for regional treatment of solid tumors.

Animals↗

Different binding kinetics of Serratia 56K protease with plasma alpha 2-macroglobulin and chicken egg white ovomacroglobulin.

We recently reported that Serratia 56K protease is inhibited by plasma alpha 2 macroglobulin (alpha 2M) temporarily and by chicken egg white ovomacroglobulin (ovoM) continuously (Molla, A. et al. (1986) Infect. Immun. 53, 522-529). The inhibition of this protease is almost complete with ovoM whereas it is incomplete with alpha 2M, although these two macroglobulins show homology and many similarities. In the present study we determined the apparent numbers of binding sites and binding constants for the two macroglobulins by means of the fluorescence polarization method using FITC-labeled 56K protease. The time courses of complex formation of 56K protease with alpha 2M and ovoM were different; with ovoM it was complete within 5 min while with alpha 2M 150 min was required. Their apparent molecular volumes were also different; the fluorescence polarization value of the E/I complex was 18.7% larger with ovoM than with alpha 2M. The association constants obtained on Scatchard plot analysis with 56K protease and alpha 2M or ovoM were 0.33 X 10(7) M-1 and 1.09 X 10(7) M-1, respectively. One molecule of each of these macroglobulins binds 1.13 and 1.35 molecules of 56K protease, respectively. Upon E/I complex formation, an increase in amino groups due to proteolysis was noted in both cases, but more progressive proteolysis was observed in the case of alpha 2M. Furthermore, when the 56K protease was inactivated through the depletion of Zn atoms, complex formation did not occur.

Amino Acids↗

Pathogenic capacity of proteases from Serratia marcescens and Pseudomonas aeruginosa and their suppression by chicken egg white ovomacroglobulin.

The pathogenicities of three proteases from Serratia marcescens, two proteases from Pseudomonas aeruginosa, and one thermolysin from Bacillus stearothermophilus were examined. All proteases tested caused acute liquefactive necrosis of the cornea and descemetocele formation in guinea pig eyes after intrastromal injection, with the exception of the 60-kilodalton protease from S. marcescens, which produced only an opaque lesion. When injected into guinea pig skin, the protease also enhanced vascular permeability, which was followed by edema formation. The permeability-enhancing activity of the proteases increased in parallel with the concentration of the enzymes. When tested in vitro for its effect on these bacterial proteases, chicken egg white ovomacroglobulin (ovoM) inhibited the enzymatic activity of all the proteases after a short incubation period at an enzyme/inhibitor ratio (molar) of 1:1 to 1:4 or at a lower concentration after a longer incubation period. Such treatment of the proteases with chicken egg white ovoM before injection intrastromally into the eyes or intradermally into the clipped flanks of guinea pigs protected the cornea from destruction or completely prevented the permeability reaction and edema formation. No inhibitory effects of plasma protease inhibitors against these bacterial proteases were noted. Since the proteases are critical in the pathogenic processes caused by the bacteria, these results suggest a beneficial effect of ovoM against bacterial infections.

Animals↗

Characterization and partial purification of cardiac sarcoplasmic reticulum phospholamban kinase.

Phospholamban, the cardiac sarcoplasmic reticulum proteolipid, is phosphorylated by cAMP-dependent protein kinase, by Ca2+/phospholipid-dependent protein kinase, and by an endogenous Ca2+/calmodulin-dependent protein kinase, the identity of which remains to be defined. The aim of this study was therefore to characterize the latter kinase, called phospholamban kinase. Phospholamban kinase was purified approximately 42-fold with a yield of 11%. The purified fraction exhibits a specific activity of 6.5 nmol of phosphate incorporated into exogenous phospholamban per minute per milligram of protein. Phospholamban kinase appears to be a high molecular weight enzyme and presents a broad substrate specificity, synapsin-1, glycogen synthase, and smooth muscle myosin regulatory light chain being the best substrates. Phospholamban kinase phosphorylates synapsin-1 on a Mr 30 000 peptide. The enzyme exhibits an optimum pH of 8.6, a Km for ATP of 9 microM, and a requirement for Mg2+ ions. These data suggest that phospholamban kinase might be an isoenzyme of the multifunctional Ca2+/calmodulin-dependent protein kinase. Consequently we have searched for Mr 50 000-60 000 phosphorylatable subunits among cardiac sarcoplasmic reticulum proteins. A Mr 56 000 protein was found to be phosphorylated in the presence of Ca2+/calmodulin. Such phosphorylation alters the electrophoretic migration velocity of the protein. In addition, this protein that binds calmodulin was always found to be present in fractions containing phospholamban kinase activity. This Mr 56 000 protein is therefore a good candidate for being a subunit of phospholamban kinase. However, the Mr 56 000 calmodulin-binding protein and the Mr 53 000 intrinsic glycoprotein which binds ATP are two distinct entities.

Animals↗

Preserved exocrine function in patients with acute cholera and acute non-cholera diarrhoea.

Exocrine pancreatic function was assessed by means of the Lundh test in 14 patients with acute cholera and 18 patients with acute infectious non-cholera diarrhoea within the first 24 h of their admission. Mean tryptic activity amounted to 39.8 +/- 4.8 microEq/min/ml in the cholera group and to 64.4 +/- 11.0 microEq/min/ml in the non-cholera group. None of these patients shared a value below the lower limit of normal. In fact, the mean tryptic activity per 2 h was significantly higher than that reported previously in a control group from the Bengal area. It is therefore concluded that the exocrine pancreatic function is preserved and responds to food stimulation in various types of acute infectious diarrhoea, including cholera. These findings provide the pathophysiological background for the recent observation that oral rehydration solutions containing high-molecular-weight nutrients such as rice powder are at least as efficient or even more potent than the WHO-recommended glucose-electrolyte formula in acute diarrhoea.

Adult↗

Degradation of protease inhibitors, immunoglobulins, and other serum proteins by Serratia protease and its toxicity to fibroblast in culture.

We investigated the effect of the extracellular protease of Serratia marcescens on human serum constituents such as immunoglobulins, fibronectin, alpha 1-protease inhibitor, alpha 2-macroglobulin, lysozyme, and transferrin. At a very low concentration of Serratia 56-kilodalton protease (56K protease), purified human plasma fibronectin was degraded rapidly into three structural domains or small fragments. Immunoglobulin G3 (IgG3) and IgA1 were also degraded within 30 min with 1 microgram of this protease per ml, more rapidly than their other subclass of IgG or IgA. alpha 1-Protease inhibitor, which did not inhibit the 56K protease, was degraded similarly by the protease. These events were demonstrated by fluorescence polarization and sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The protease was considerably inhibited by human alpha 2-macroglobulin and chicken ovomacroglobulin. However, when there was a 2 M excess of ovomacroglobulin or a 4 M excess of alpha 2-macroglobulin over the 56K protease, about 25 or 40% proteolytic activity remained, respectively. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis showed that the protease degraded the alpha 2-macroglobulin extensively during prolonged incubation, which paralleled with regeneration of the protease activity. The protease also cleaved human lysozyme, although moderately. Human serum transferrin was degraded slightly, and human serum albumin was almost resistant to the 56K protease. The enzyme seemed to have no effect on reconstituted collagen, but it degraded rat tropocollagen and yielded fragments of beta and gamma chains by cleaving the intramolecular cross-links. Most of the above proteolysis by the 56K protease appears to result in a limited type of substrate specificity. Thus, the present study demonstrates that the protease is capable of degrading defense-oriented humoral proteins and tissue constituents. Furthermore, it is toxic to fibroblasts. These findings also clarified the possible role of Serratia protease as a virulence factor in the pathogenesis of serratial infections. We recently demonstrated this notion in vivo with rabbit cornea (R. Kamata et al., Ophthalmology 92:1452-1459, 1985).

Blood Proteins↗

Does oral rehydration therapy alter food consumption and absorption of nutrients in children with cholera?

In order to estimate consumption of food and absorption of nutrients, a metabolic balance study was conducted in 47 children between 1 and 5 years old, suffering from acute cholera. Twenty-two of the children were treated by intravenous solution (IV) only and 25 others by oral rehydration along with intravenous solution (ORS/IV) when necessary. After initial rehydration a nonabsorbable charcoal marker was fed to the patients followed by a typical Bangladeshi home food of known composition offered ad libitum. Appearance of the first marker in the faeces was taken as zero hour (0 h); at 72 h a second marker was fed. Faeces, urine and vomitus were collected up to the appearance of the second marker. Intake of IV fluid, ORS and any other fluid or food were recorded accurately. Samples of faeces, urine and vomitus were analysed for energy, fat and nitrogen. Consumption of nutrients and absorption in both groups were calculated. There was no significant difference in the intake or absorption of energy or carbohydrate between the two groups. The consumption of fat and protein was slightly, but significantly, lower in the ORS/IV group during the acute stage of diarrhoea than in the IV group. Absorption of nitrogen was significantly lower in the ORS/IV group, but absorption of fat was not significantly impaired. Vomiting was significantly higher in the ORS/IV group. The differences in the consumption and absorption of nutrients between the two groups were transient and came to the same level within 2 weeks after recovery.

Bangladesh↗

Cardiac sarcoplasmic-reticulum calmodulin-binding proteins. Modulation of calmodulin binding to phospholamban by phosphorylation.

The gel-overlay technique with 125I-labelled calmodulin allowed the detection of several calmodulin-binding proteins of Mr 280 000, 150 000, 97 000, 56 000, 35 000 and 24 000 in canine cardiac sarcoplasmic reticulum. Only two calmodulin-binding proteins could be identified unambiguously. Among them, the 97 000-Mr protein that undergoes phosphorylation in the presence of Ca2+ and calmodulin, is likely to be glycogen phosphorylase. In contrast, the (Ca2+ + Mg2+)-activated ATPase did not appear to bind calmodulin under our experimental conditions. The second known calmodulin target is dephosphophospholamban, which migrates with an apparent Mr of 24 000. The dimeric as well as the monomeric form of phospholamban was found to bind calmodulin. Phospholamban shifts the apparent Kd of erythrocyte (Ca2+ + Mg2+)-activated ATPase for calmodulin, suggesting thus a tight binding of calmodulin to the proteolipid. Interestingly enough, phospholamban phosphorylation by either the catalytic subunit of cyclic AMP-dependent protein kinase or the Ca2+/calmodulin-dependent phospholamban kinase was found to inhibit calmodulin binding.

Animals↗