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Biomedical subjects

U Brinkmann

Publications and source records attributed to U Brinkmann.

14 recordsLinked to original sources

Degradation of chlorotoluenes by in vivo constructed hybrid strains: problems of enzyme specificity, induction and prevention of meta-pathway.

The activities of the TOL plasmid-coded xylene oxygenase, benzylalcohol dehydrogenase, benzaldehyde dehydrogenase of Pseudomonas putida strain PaW1 were tested with substituted toluenes, benzylalcohols and benzaldehydes, respectively, as substrates. Several chlorinated toluenes were shown to induce enzymes of the xylene degradation sequence. Conjugative transfer of the TOL plasmid from Pseudomonas putida strain PaW1 to Pseudomonas sp. strain B13 and Pseudomonas cepacia strain JH230 allowed the isolation of hybrid strains capable of growing in the presence of 3-chloro-, 4-chloro- and 3,5-dichlorotoluene. Hybrid strains revealed new ways to prevent the dead-end meta-pathway for cholorocatechols.

Alcohol Oxidoreductases

Alteration of a protease-sensitive region of Pseudomonas exotoxin prolongs its survival in the circulation of mice.

Pseudomonas exotoxin A (PE) is a single-chain 66-kDa polypeptide that kills eukaryotic cells by ADP-ribosylation of translational elongation factor 2. PE is composed of three major structural domains whose functions are binding of cells (I), translocation (II), and ADP-ribosylation (III). Here we describe a protease cleavage target that is located near arginine-490 on the surface of domain III. We made several different types of mutations near arginine-490. Deletion of arginine-490 or replacement of arginine-490 and -492 with serine and lysine or with two lysines resulted in protease-resistant molecules that were fully cytotoxic and had normal ADP-ribosylation activity. However, the half-life in mouse blood of the PE delta 490 mutant was 24 min whereas that of PE was 13 min. Furthermore, two PE mutants that were protease-hypersensitive, PEGlu246,247,249 and PEGlu57,246,247,249 (in which glutamate residues replace basic residues at the indicated positions), had very short half-lives. These data indicate that protease sensitivity is an important determinant in the half-life of PE in the circulation and suggest that the half-life of other proteins may be prolonged by removal of protease sites. Deletion of arginine-492 or the replacement of amino acids 486-491 with three glycines markedly diminished ADP-ribosylation activity and cytotoxicity, indicating that this region of domain III is also important for catalytic activity.

ADP Ribose Transferases

Independent domain folding of Pseudomonas exotoxin and single-chain immunotoxins: influence of interdomain connections.

We have studied the refolding of completely unfolded and reduced Pseudomonas exotoxin (PE) and of recombinant single-chain immunotoxins made with monoclonal antibody B3 that are composed of a heavy-chain variable region connected by a flexible linker to the corresponding light-chain variable region (Fv), which is in turn fused to a truncated form of PE. We have found by direct activity assays that different functional domains of these multifunctional proteins fold independently with different kinetics. The ADP-ribosylation domain of PE and of the recombinant immunotoxin fold rapidly, whereas the assembly of the binding and/or translocation domains is regained more slowly. The complete refolding of native PE occurs more rapidly than the refolding of the recombinant immunotoxins. To determine the influence of the connector region between the B3(Fv) moiety and the toxin on the folding process of the recombinant immunotoxin B3(Fv)-PE38KDEL, we have made two different mutations in the peptide that connects the single-chain Fv domain to domain II of PE. These molecules show different folding kinetics, differences in their propensity to aggregate, and different yields of correctly folded molecules. A mutation that decreases aggregation increases the rate of formation and the yield of active immunotoxin molecules.

ADP Ribose Transferases

A method for increasing the yield of properly folded recombinant fusion proteins: single-chain immunotoxins from renaturation of bacterial inclusion bodies.

Many proteins produced in Escherichia coli accumulate in inclusion bodies. We have systematically evaluated the parameters that affect the refolding and renaturation of enzymatically active molecules from bacterial inclusion bodies containing a recombinant single-chain immunotoxin, B3(Fv)-PE38KDEL. This recombinant molecule is composed of the variable domains of monoclonal antibody B3 (B3(Fv)) fused to a truncated mutant form of Pseudomonas exotoxin A (PE38KDEL). This immunotoxin kills carcinoma cells in vitro, causes tumor regression in animal tumor models, and is being developed as an anti-cancer therapeutic agent (Brinkmann et al., 1991, Proc. Natl. Acad. Sci. USA 88, 8616-8620). Like many other recombinant proteins, B3(Fv)-PE38KDEL is produced in E. coli in inclusion bodies and must be denatured and refolded to become active. This requires correct folding, formation of native disulfide bonds, and the association of different domains. All these steps are strongly dependent on the renaturation conditions used. Optimum conditions of refolding were obtained by the addition of reduced and oxidized thiol reagents to promote disulfide bond formation and the addition of a labilizing agent such as L-arginine. Furthermore, the necessity to reactivate proteins at low protein concentrations due to its tendency to aggregate at high concentrations was overcome by a step-by-step addition of denatured and reduced protein into the refolding solution. This approach should be useful for the production of active forms of other recombinant proteins.

ADP Ribose Transferases

Renaturation of a single-chain immunotoxin facilitated by chaperones and protein disulfide isomerase.

B3(Fv)-PE38KDEL, a recombinant immunotoxin, forms inclusion bodies when produced in Escherichia coli. In renaturation experiments, nonspecific aggregation of non-native polypeptide chains, and the formation of incorrect disulfide linkages lead to inactive molecules. To prevent these side reactions, we added molecular chaperones and protein disulfide isomerase (PDI) to the refolding buffer. Both DnaK and GroEL/S influenced the reactivation process. GroEL alone inhibited reactivation, but in the presence of ATP, GroEL and GroES significantly increased the yield of active protein. DnaK also increased the yield of properly folded protein and the stimulating effect of DnaK was also observed using immobilized DnaK, which can be used repeatedly without significant loss of activity. PDI, which catalyzes disulfide bridging of proteins, also stimulated reactivation of the immunotoxin. Under optimum conditions, reactivation yields in the presence of PDI were about twice that obtained with nonenzymatic disulfide bond formation. Furthermore, DnaK and PDI were additive when renaturation was performed in the presence of both proteins.

Antibodies, Monoclonal

B3(Fv)-PE38KDEL, a single-chain immunotoxin that causes complete regression of a human carcinoma in mice.

The genes encoding the heavy- and light-chain Fv regions of the monoclonal murine antibody B3, which recognizes a carbohydrate antigen on the surface of many human carcinomas, were cloned by PCR techniques and used to generate single-chain immunotoxins containing Pseudomonas exotoxin (PE). The light and heavy chains were connected by a flexible linker to form a single-chain antigen-binding protein, B3(Fv), which was in turn fused to truncated forms of PE lacking the cell-binding domain. The single-chain Fv and two different B3(Fv) immunotoxins, B3(Fv)-PE40 and B3(Fv)-PE38KDEL, were expressed in Escherichia coli and the single-chain immunotoxins were purified to near homogeneity. Both recombinant immunotoxins were shown to be cytotoxic specifically to carcinoma cell lines that express the B3 antigen on their surface; B3(Fv)-PE38KDEL was significantly more active. Furthermore, intravenous administration of B3(Fv)-PE38KDEL caused complete regression of human epidermoid carcinomas growing subcutaneously in immunodeficient mice.

ADP Ribose Transferases

The economic cost of malaria in Africa.

Although malaria is the major health problem in Africa, there is little research on its economic impact. This study adapts a framework for assessing the economic costs of illness to available data on malaria. Direct costs of illness are the costs of treatment and control activities, and indirect costs are the value of lost time due to morbidity and premature mortality. Direct costs were estimated by applying the average estimated health systems costs per case to the number of cases. Indirect costs were assessed by multiplying adult output per day times the estimated productive time lost through both adult and childhood cases. As data are not available to assess the economic impact of malaria in Africa as a whole, four case studies were performed on countries or regions for which needed data could be found. The four sites (Rwanda, Solenzo medical district of Burkina Faso, Mayo-Kebbi district, Chad, and Brazzaville, Congo) were chosen to illustrate the diversity in kinds of data which can be used (aggregate national health statistics versus household surveys) and in locations (urban versus rural). Costs were calculated for the recent past and were projected to 1995 based on recent epidemiological trends. Estimates for all sub-Saharan Africa were derived from the averages of these sites. In 1987, a case of malaria cost $9.84 (in 1987 US dollars)--$1.83 in direct costs and $ 8.01 in indirect costs. As the average value of goods and services produced per day in Africa was $0.82, this cost is equivalent to 12 days of output.(ABSTRACT TRUNCATED AT 250 WORDS)

Africa

Malaria and health in Africa: the present situation and epidemiological trends.

The World Health Organization does not give any data on the malaria situation in Africa in its regular reports because of the "insufficiency and irregularity of reporting". Estimates on the total number of cases and the number of deaths vary considerably. They range from 35 million to 189 million per year depending on whose figures one uses. An intensive search of the literature using computer-based systems identified more than 1000 titles on the epidemiology of malaria. Out of them and from other sources finally 426 articles were used to describe the current malaria situation and observable trends in Africa. Major findings were that malaria is responsible for about 40% of fever cases, mortality is about 5 per 1000 per year, case fatality ranges from 2% to 24%. Admissions for malaria account for 20% to 50% of all admissions in African health services although only 8% to 25% of persons with malaria visit health services. Self-treatment is more common in urban areas (more than 60%) but an increasing number of people use some form of self protection in rural areas (2% to 25%). The resistance of malaria parasites to chloroquine and other drugs is widespread. Chloroquine resistance has reached a prevalence of about 30% at the RII level in most countries. Malaria incidence shows annual growth rates of 7.3% for Zambia, 10.4% for Togo, and 21.0% for Rwanda. The data for Burkina Faso show a downward trend of--14.7% during the years from 1973 to 1981. Since then malaria incidence is increasing at 11.0% per year. Hospital data reported from Zambia indicate that mortality is rising 5.2% per annum in children and 9.7% per annum in adults. Reasons for the increase of malaria and its role for development are discussed.

Africa

Estimating the direct and indirect economic costs of malaria in a rural district of Burkina Faso.

Comprehensive estimates of the direct economic costs of malaria should include not only the costs of care at established health facilities, but also other expenditures, such as travel and out-of-pocket costs of drugs. They should include all episodes of illness, whether or not the patient attended a health facility. Also, the indirect economic costs, which are based on the value of time lost due to illness, consider seasonal variations in the marginal product of labor according to the agricultural season. A 1985 representative survey of 626 households in Solenzo medical district, Burkina Faso, provided household data on health service utilization, expenditures, and agricultural production with which to implement these refinements. Numbers of malaria deaths and cases were estimated by adjusting survey totals according to monthly patterns of reported malaria deaths. The marginal product of labor was valued according to typical activities in each of three agricultural seasons: brewing millet beer during the maintenance period (January-February), growing cotton during the cash crop season (March-April), and growing millet and sorghum during the food crop season (May-December). The resulting values were $0.28, $1.09, and $0.55 per day, respectively. Cost per case averaged $5.96 and cost per capita $1.15. Indirect cost due to mortality was the largest cost component ($0.79 per capita), followed by direct costs incurred by the user (e.g. transportation costs and drug purchases, $0.22 per capita). Direct costs paid by providers were small, only $0.04 per capita. A household survey provides the necessary data for more comprehensive population-based estimates of costs of malaria.

Adult

The growth rate-limiting reaction in methanol-assimilating yeasts.

The maximum growth rate of methylotrophic yeasts during growth on methanol is about 0.2 h-1. Since they are able to grow faster on substrates such as glucose we tried to identify the putative limiting step in methanol metabolism within the assimilatory pathway, leading to the formation of a major precursor for biosyntheses, or within the linear dissimilatory sequence. Growth experiments with mixed substrates and determination of some kinetic parameters allowed us to restrict the number of possible pacemaker enzymes. The dissimilatory sequence does not seem to be growth-rate limiting. This also applies to transketolase, transaldolase and fructose-1,6-bisphosphatase. Surprisingly, methanol oxidase appears to be the prime candidate.

Alcohol Oxidoreductases

Suspension culture of myocardial cells from newborn rats.

Myocardial cells from newborn rats were held in a spinner type culture for 2 days and then explanted into culture flasks. Three main cell types were observed: single multipolar cells of embryonic type, cell aggregates containing 10 to 50 connected cells, and bipolar cells retaining some adult characteristics. Except for the latter, up to 95% of intact cells settled and were beating 6 hours after explantation. The percentage of fibroblast-like cells was drastically reduced when compared with conventional cultures. Cell debris could be removed 2 hours after explantation by changing the culture medium, or more effectively by a density step centrifugation using Lymphoprep or Lymphoprep-Ficoll mixtures.

Animals

[Lassa fever].

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Adult

[Lassa fever].

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Africa, Western