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M Frosch

Publications and source records attributed to M Frosch.

At least 145 records · Page 8Linked to original sources

Conserved outer membrane protein of Neisseria meningitidis involved in capsule expression.

In Neisseria meningitidis, translocation of capsular polysaccharides to the cell surface is mediated by a transport system that fits the characteristics of ABC (ATP-binding cassette) transporters. One protein of this transport system, termed CtrA, is located in the outer membrane. By use of a CtrA-specific monoclonal antibody, we could demonstrate that CtrA occurs exclusively in N. meningitidis and not in other pathogenic or nonpathogenic Neisseria species. Nucleotide sequence comparison of the ctrA gene from different meningococcal serogroups indicated that CtrA is strongly conserved in all meningococcal serogroups, independent of the chemical composition of the capsular polysaccharide. Secondary structure analysis revealed that CtrA is anchored in the outer membrane by eight membrane-spanning amphipathic beta strands, a structure of proteins that function as porins.

Amino Acid Sequence↗

Sequence and expression in Escherichia coli of a Mycoplasma hominis gene encoding elongation factor Tu.

We describe the molecular cloning and the complete nucleotide (nt) sequence of a Mycoplasma hominis gene common to a broad range of Mycoplasma species, as defined by hybridization analysis with the cloned gene. Production of M. hominis protein in Escherichia coli was assayed by use of a monoclonal antibody. The nt sequence analysis revealed a 1194-bp open reading frame that could encode a 43 516-Da protein. Computer-aided sequence comparison indicated that the gene codes for elongation factor Tu.

Amino Acid Sequence↗

Cloning and characterisation of an immunodominant major surface antigen of Echinococcus multilocularis.

A lambda gt11 cDNA expression library from mRNA of Echinococcus multilocularis protoscolices has been constructed in Escherichia coli Y1090. Immunoscreening with pooled sera obtained from patients suffering from E. multilocularis disease revealed 5 reactive clones. By partial DNA sequence comparison all clones proved to encode the same gene. The complete cDNA sequence of the clone pEM10 with the largest insert of 2.2 kb was determined and an open reading frame of 1.7 kb could be described. The derived amino acid sequence shares 42.6% identity with human microvillar cytovillin found in the membranes of placenta and carcinoma tissues. The coding region of the cDNA of pEM10 was amplified by polymerase chain reaction (PCR) and cloned in frame into expression vector pGEX-3X. Immunoblot analysis revealed the expression of a recombinant antigen of 65 kDa and a protein with the same molecular weight was also found in the lysate of E. multilocularis protoscolices. In contrast, the protein was absent from hydatid fluid or larvae of Echinococcus granulosus. By means of immunofluorescence studies this immunodominant antigen could be located in the germinal layer of brood capsules and in the tegument of E. multilocularis protoscolices. The fusion protein was purified and used for diagnostic purposes in immunoblot. The diagnostic value of this antigen is discussed.

Amino Acid Sequence↗

Complete nucleotide and deduced protein sequence of CMP-NeuAc: poly-alpha-2,8 sialosyl sialyltransferase of Escherichia coli K1.

Poly-alpha-2,8 N-acetylneuraminic acid (polySia) is an important virulence factor in infections caused by Escherichia coli K1 and Neisseria meningitidis B. In E. coli K1 a membranous CMP-NeuAc: poly-alpha-2,8 sialosyl sialyltransferase (polysialyltransferase) complex catalyses the synthesis of linear polySia chains. The complex also elongates sialyl oligomers that serve as exogenous acceptors. The gene encoding a polysialyltransferase of E. coli has been identified by subcloning and DNA sequence analysis. The subcloned DNA fragment codes for a polypeptide with a molecular mass of 47 kDa catalysing the in vitro synthesis of polySia by elongation of exogenous acceptors.

Amino Acid Sequence↗

Evidence for a common molecular origin of the capsule gene loci in gram-negative bacteria expressing group II capsular polysaccharides.

Capsular polysaccharides of Gram-negative bacteria contribute to a large extent to the pathogenicity of these organisms. We show here that the molecular organization of the capsule gene loci in different serogroups of Neisseria meningitidis is similar to that of Haemophilus influenzae and Escherichia coli. A common molecular origin of the mechanisms of encapsulation is indicated by strong homology of the genes involved in transport of the capsular polysaccharides to the cell surface in all these organisms. The proteins involved in capsular polysaccharide transport fit the characteristics of ABC (ATP-binding cassette) transporters. Furthermore, by sequence comparison of the sialytransferases of N. meningitidis B and E. coli K1, the capsule of which is composed of alpha 2,8-linked polyneuraminic acid, a significant degree of homology was observed, indicating that the capsular polysaccharide type itself has the same evolutionary origin in these two pathogens.

ATP-Binding Cassette Transporters↗

Cloning and sequencing of the genes coding for the 10- and 60-kDa heat shock proteins from Pseudomonas aeruginosa and mapping of a species-specific epitope.

A genomic library of Pseudomonas aeruginosa DNA was screened with a monoclonal antibody (MAb 2528) specific for the P. aeruginosa 60-kDa heat shock protein. A positive clone, pAS-1, was isolated. The gene coding for P. aeruginosa chaperonin (hsp60) was localized to a 2-kb EcoRI fragment subcloned in pAS-2. A sequence analysis of pAS-2 and parts of pAS-1 identified two open reading frames that encoded proteins with calculated molecular masses of 10 and 57 kDa. In amino acid sequence comparison studies the sequences of these proteins, which were designated GroES and GroEL, exhibited up to 78% homology with known prokaryotic sequences of 10- and 60-kDa heat shock proteins (hsp10 and hsp60). In order to map the epitope recognized by MAb 2528, a series of GroEL nested carboxy-terminal deletion clones were tested with MAb 2528. We identified the clone with the shortest insertion that was still recognized by MAb 2528 and the clone with the largest insertion that was not recognized by MAb 2528. The 3' ends of the insertions were determined by sequencing and were found to delimit a region that encoded 25 amino acid residues. Synthetic oligonucleotides that coded for peptides possibly resembling the epitope within this region were ligated into expression vector pGEX-3X, and fusion proteins expressed by these clones were tested for reactivity with MAb 2528. By using this method we determined that the decapeptide QADIEARVLQ (positions 339 to 348 on GroEL) was responsible for the binding of P. aeruginosa-specific MAb 2528.

Amino Acid Sequence↗

Primary structure of the murine monoclonal IgG2a antibody mAb735 against alpha(2-8) polysialic acid. 1) Amino-acid sequence of the light (L-) chain, kappa-isotype.

Here we report the complete amino-acid sequence of the anti-alpha(2-8)polysialic acid antibody mAb735 light chain. The sequence was determined after digestion of the reduced and carboxymethylated L-chain with trypsin, SV-8 proteinase, and Asp-N proteinase, isolation of the generated peptides by RP-HPLC and characterization of these fragments by sequence analysis, amino-acid analysis and/or plasma desorption mass spectrometry. According to Kabat et al. the variable region belongs to the V kappa-II subgroup, whilst according to Hum et al. it belongs to the V kappa-1B subgroup. With the exception of proline at position 46, the sequence from position 1 to 95 is identical to the translated DNA sequence of a V kappa-germline gene segment previously reported.

Amino Acid Sequence↗

Glutaryl-coenzyme A dehydrogenase deficiency: a distinct encephalopathy.

Clinical course, diagnostic and therapeutic management, and neurodevelopmental outcome were evaluated in 11 patients with glutaryl-coenzyme A dehydrogenase deficiency. In 9 patients macrocephalus was present at or shortly after birth and preceded the neurological disease. In 7 children an acute illness resembling encephalitis appeared after a period of normal development; 2 had developmental delay and progressive "dystonic cerebral palsy." Later, all 9 displayed typical signs of a disorder of the basal ganglia. In 1 patient with macrocephalus the disorder was diagnosed before the onset of neurological disease; in another it was diagnosed prenatally. Computed tomography and magnetic resonance imaging scans revealed severe generalized cerebral atrophy, most striking in the frontal and temporal lobes in 10 patients. Further deterioration was halted after initiation of treatment consisting of low-protein diets, special formulas low in lysine and tryptophan, and supplements of riboflavin and L-carnitine. Only 1 patient showed a slight clinical improvement. Later, dietary therapy was discontinued in 2 older patients and relaxed in a third without observed adverse effects. Two patients in whom treatment could be initiated before the onset of neurological symptoms have developed normally. However, duration of follow-up (6 and 29 months) does not yet allow classification of glutaryl-coenzyme A dehydrogenase deficiency as a treatable disorder. Total body production of glutaric acid, reflected in the daily urinary output, was efficiently reduced by therapeutic measures. Levels of glutaric acid in plasma and cerebrospinal fluid remained unchanged, which may in part explain the overall unsatisfactory outcome. All patients presented with a severe secondary deficiency of carnitine.(ABSTRACT TRUNCATED AT 250 WORDS)

Child, Preschool↗

Generation of capsule-deficient Neisseria meningitidis strains by homologous recombination.

Capsule-deficient mutants of Neisseria meningitidis serogroup B strain B1940 were constructed by allelic replacement using the plasmids pMF120 and pMF121, which contain the flanking regions of the gene locus for the biosynthesis pathway of the group B meningococcal capsular polysaccharide. Southern blot analysis of chromosomal DNA of the capsule-deficient meningococcal strains confirmed the generation of large deletions in the chromosomal cps gene complex. The same strategy proved useful in constructing meningococcal strains with capsular types A, C, W135, Y and Z.

Alleles↗

Embryonic neural cell adhesion molecule in cerebrospinal fluid of younger children: age-dependent decrease during the first year.

Poly-alpha-2,8-N-acetylneuraminic acid (poly-alpha-2,8-NeuAc) is developmentally expressed in neural tissue of higher animals, where it is covalently attached to the neural cell adhesion molecule (NCAM), a large integral membrane glycoprotein mediating cell-cell adhesion during neuronal development. NCAM exists in several molecular forms, of which only embryonic NCAM carries lengthy chains (n greater than 5) of poly-alpha-2,8-NeuAc. Chemically identical poly-alpha-2,8-NeuAc of bacterial origin is an important virulence factor in infections caused by Neisseria meningitidis group B and Escherichia coli K1, the predominant pathogens of bacterial meningitis. A quantitative enzyme-linked immunoassay was developed using monoclonal antibody (MAb) 735, an MAb specifically recognizing poly-alpha-2,8-NeuAc, and applied to CSF specimens from younger children. Poly-alpha-2,8-NeuAc contents were within the range of 20-0.2 micrograms/ml, decreasing from day 1 to day 300. Immunoprecipitation, immunoblot with a rabbit anti-mouse NCAM serum recognizing the protein part of human NCAM by cross-reactivity, affinity enrichment using immobilized MAb 735, and sodium dodecyl sulfate-polyacrylamide gel electrophoresis revealed that poly-alpha-2,8-NeuAc in CSF is bound to human NCAM, probably NCAM-120.

Antigens, Surface↗

Immunohistochemical localization of polysialic acid in tissue sections: differential binding to polynucleotides and DNA of a murine IgG and a human IgM monoclonal antibody.

For immunolocalization of alpha(2-8)-linked polysialic acid, which forms part of the neural cell adhesion molecule (N-CAM), two monoclonal antibodies, MAb735 and IgMNOV, were employed. Both antibodies have previously been shown to bind the extremely low immunogenic capsular polysaccharide of group B meningococci, which also consists of alpha(2-8) polysialic acid, but not to other, even closely related forms of polysialic acid. Despite the identical polysaccharide specificity of these two MAb, we observed marked differences of the staining pattern in tissue sections. We showed that these differences in immunostaining were due to the crossreactivity of IgMNOV with polynucleotides and DNA. MAb735, however, was shown to react exclusively with alpha(2-8) polysialic acid. Moreover, the specificity of MAb735 proved to be unique among eleven other MAb directed against various bacterial polysaccharides, as it was the only one unreactive with polynucleotides. Thus, MAb735, the only IgG type mouse monoclonal antibody to polysialic acid thus far reported, can be considered a specific probe for the unambiguous detection of alpha(2-8) polysialic acid in tissue sections, and should therefore help to further elucidate the role of polysialic acid in developmental processes.

Animals↗

[Type I oxalosis in childhood--studies within the scope of terminal renal failure in the child].

The difficulties of biochemical diagnosis in children and in chronic renal failure are discussed in detail, as well as the development of diagnostic and therapeutic possibilities in recent years, exemplified by 4 cases. Excretion of oxalate (and glycolate) may be incorrectly assumed to be normal with: a) uncritical application of the method of measurement, b) disregard of the clearly lower oxalate excretion in children (values should be referred to m2 of body surface), c) disregard of a decreased glomerular filtration rate (values should be referred to the creatinine clearance). With compromised renal function the excretion of oxalate and glycolate in primary oxalosis drops to "normal" whereas plasma values increase considerably. In this case the biochemical diagnosis is possible only by measurement of plasma values of glycolate and oxalate. Consequently, extensive extrarenal deposition of calcium oxalate crystals will, as a rule, become clinically manifest only after chronic renal failure has turned irreversible. In recent years, several therapeutic procedures, have been developed. They are of therapeutic significance for the early stages of the disease as well. Observing especially conditions renal transplantation or combined hepatorenal transplantation can be managed with a successful outcome. As the perioxisomal enzyme is activated only in the liver cells, an early liver transplantation as a definitive treatment by enzyme replacement may be the successful therapy in the future.

Adolescent↗

Molecular characterization and expression in Escherichia coli of the gene complex encoding the polysaccharide capsule of Neisseria meningitidis group B.

The gene complex encoding all determinants of the biosynthesis pathway of the capsule of group B meningococci (cps) has been cloned in Escherichia coli. A 24-kilobase large chromosomal fragment is necessary for capsule expression on the E. coli surface. By transposon and deletion mutagenesis, two separate steps in transport of the polysaccharide from the cytoplasm to the periplasm and further to the cell surface became evident. Mutants were also isolated that accumulate soluble poly(sialic acid) in the cytoplasm. The cloned cps complex conferred to E. coli strain GC6 sensitivity for E. coli K1-specific phages; phage sensitivity was enhanced in two distinct classes of cps mutants. Southern blot experiments revealed homology to some or all other Neisseria meningitidis capsular types and other Neisseria species, depending on the fragment of the cps complex used as probe.

Cell Membrane↗

Serotyping and genotyping of encapsulated Escherichia coli K1 sepsis isolates with a monoclonal IgG anti K1 antibody and K1 gene probes.

Among infectious diseases caused by E. coli the capsular type K1 plays a predominant role. E. coli K1 isolates account for 80% of cases of E. coli neonatal meningitis and 30% of E. coli sepsis strains. Serotyping of K1 strains has conventionally relied upon the use of K1-specific bacteriophages or serum agar methods with polyvalent anti K1 serum. In the study present here, 187 E. coli sepsis isolates have been analysed for production of the K1 antigen using K1 phages, K1 serum agar plates and Latex agglutination and ELISA using an IgG2a anti K1 monoclonal antibody. In total, 33 sepsis isolates (about 18%) were identified as K1 positive, with three of these strains proving negative in all tests except those exploiting the monoclonal antibody. That these three strains elaborate the K1 antigen was confirmed by Southern blot experiments using cloned K1 antigen production genes as probes. The failure of the three strains in all the tests except those that use monoclonal antibody could be explained by apparent disruption of K1 gene sequences that encode functions essential for the export of capsular material to the cell surface. The superiority of tests based on monoclonal antibodies above the conventional methods for detection of K1 antigen is evident.

Antibodies, Monoclonal↗

Formation and maintenance of viroplasmic centers in Tipula iridescent virus-infected mosquito cells with deranged cytoskeletons.

We have examined the role of cytoskeletal elements with respect to the formation and maintenance of viroplasmic centers (VCs) in Tipula iridescent virus (TIV)-infected mosquito Aedes albopictus (C6/36) cells. Filamentous systems consisting of microtubules and microfilaments were detected by immunofluorescence microscopy. Inoculation of cells with TIV resulted in an alteration of microtubule and microfilament organization whether or not VCs developed. The formation of short arrays of microtubules induced by taxol or the depolymerization of microtubules by colchicine, as observed by immunofluorescence microscopy, had no apparent effect upon the development of VCs as detected by Hoechst staining and electron microscopy. The dissolution of the actin-containing filamentous system by cytochalasin B also had no effect upon development. We conclude from these results that microtubules and microfilaments are not involved in the formation or maintenance of VCs in TIV-infected A. albopictus (C6/36) cells.

Aedes↗

[Acute focal bacterial nephritis in childhood].

The clinical findings and sonographic observations in four patients with AFBN in childhood are described. AFBN in childhood is an acute interstitial nephritis presenting with septicaemia. The patients show a rapid deterioration of condition, weight loss, flank pain and often leucocyturia without detection of bacteria. The diagnosis is confirmed by renal sonography, showing typical focal alterations. Sonographic follow-up is important to prove the diagnosis. Even without detection of bacteria intravenous broad-spectrum antibiotic therapy is required. The antibiotic should be active against gram-negative organisms and Staphylococci. Medication should be given for 2-3 weeks. After adequate treatment the clinical condition will improve within a few days whereas sonographic alterations return to normal after 2-4 weeks. In childhood, a bacterial infection of other organs preceding AFBN is more common than anomalies of the urinary tract as predisposing factors. Therefore in most cases a hemotogenous infection must be presumed and its focus discovered and eliminated by appropriate antibiotics since otherwise AFBN may recur.

Acute Disease↗