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J B Baseman

Publications and source records attributed to J B Baseman.

At least 55 records · Page 3Linked to original sources

Isolation and characterization of Mycoplasma genitalium strains from the human respiratory tract.

Mycoplasma genitalium, an organism first isolated from the urethras of two men with nongonococcal urethritis, has been found in throat specimens from military recruits participating in an inactivated Mycoplasma pneumoniae vaccine field trial in 1974-1975. Four of 16 preserved throat isolates, previously identified as strains of M. pneumoniae, have now been shown to be mixtures of M. pneumoniae and M. genitalium. Purification of these mixed mycoplasmas by selection of single colonies confirmed the presence of M. genitalium. Identification of M. genitalium was based upon the occurrence of a species-specific 140-kilodalton protein adhesin in these isolates and their serologic reactivity to an M. genitalium antiserum. The frequent occurrence of both M. pneumoniae and M. genitalium in a number of these throat specimens, in combination with their shared antigenic cross-reactivities, suggests the likelihood that M. genitalium strains are easily missed in the usual laboratory identification procedures. What role M. genitalium may play in human respiratory disease remains to be determined.

Bacterial Proteins↗

Affinities of Treponema pallidum for human lactoferrin and transferrin.

The acquisition of lactoferrin and transferrin by live Treponema pallidum organisms was examined. Saturation binding kinetics were obtained for virulent treponemes with increasing amounts of radioiodinated lactoferrin but not with transferrin. Furthermore, lactoferrin bound up to 100 times more effectively than transferrin. Only unlabelled lactoferrin stoichiometrically completed with iodinated lactoferrin binding. Time course kinetics showed maximum lactoferrin acquisition within the first five minutes at 34 degrees C. Optimum iron accumulation, however, was achieved by T pallidum in 30 minutes at 34 degrees C, and amounts of iron were six times greater than the equivalent amount of lactoferrin bound. Interestingly, iron uptake was also detected in the presence of transferrin, despite the minimal amounts of transferrin acquired by live treponemes. These observations reinforce the possibility that the associations of T pallidum with host molecules, such as plasma proteins, are essential for survival of the parasite within host environments.

Humans↗

The acquisition of human lactoferrin by Mycoplasma pneumoniae.

We tested the in vitro binding of human iron-sequestering lactoferrin and transferrin by the mucosal-surface pathogens, Mycoplasma pneumoniae and Mycoplasma genitalium. Mycoplasma pneumoniae bound lactoferrin, but not transferrin, in a saturable and specific manner. Analysis of binding data indicates less than 10,000 lactoferrin receptors per micro-organism with a moderately high binding affinity of 20 nM. No significant binding of lactoferrin or transferrin by M. genitalium was observed.

Binding, Competitive↗

Characterization of several monoclonal antibodies generated against ferret tracheal epithelial cells.

Monoclonal antibodies have been generated to ferret tracheal epithelial (FTE) cells. Four of the antibodies exhibiting positive reactivity in a fluorescence-activated cell sorter were further characterized. In tracheal sections, three of the antibodies reacted with submucous gland cells and material intermeshed in the cilia while the fourth antibody failed to react with epithelial cells. The three antibodies which reacted in tracheal sections also reacted with void volume fractions following Sepharose CL-6B chromatography of a solubilized FTE cell preparation. Reactivity of the void volume fractions to these antibodies was sensitive to periodate oxidation, and unaffected by heating (100 degrees C X 30 min) or methanol extraction suggesting a carbohydrate epitope. The fourth antibody recognized periodate-insensitive antigen in the void volume and included column fractions. Binding of one of the antibodies to periodate-sensitive antigen was completely blocked by 10 mM N-acetyl galactosamine as demonstrated in an ELISA with fixed FTE cells. In a western blot analysis, two of the antibodies which recognized periodate-sensitive antigen also reacted with a large heterogenous macromolecule.

Animals↗

Shared epitopes between Mycoplasma pneumoniae major adhesin protein P1 and a 140-kilodalton protein of Mycoplasma genitalium.

Previous serological data have demonstrated cross-reactive antigens between two pathogenic species of mycoplasmas, M. pneumoniae and M. genitalium. Preliminary analysis of sera and monoclonal antibodies (MAbs) to protein antigens of these species showed an immunodominance of adhesin P1 (165 kilodaltons [kDa]) of M. pneumoniae in mice and hamsters and a 140-kDa protein of M. genitalium in mice and experimentally infected chimpanzees. To further characterize these two proteins, we assayed multiple anti-P1 and anti-140-kDa protein MAbs by enzyme-linked immunosorbent assay, immunoblot, and radioimmunoprecipitation techniques. The 140-kDa M. genitalium protein was shown to be surface accessible and insensitive to levels of trypsin which readily degrade protein P1. Peptide mapping was used to identify a unique class of MAbs which bound a cross-reactive molecule common to both the major adhesin protein P1 of M. pneumoniae and the 140-kDa protein of M. genitalium. MAbs generated against both M. pneumoniae and M. genitalium which were reactive with this determinant blocked M. pneumoniae attachment to chicken erythrocytes.

Antibodies, Monoclonal↗

Cloning and sequence analysis of cytadhesin P1 gene from Mycoplasma pneumoniae.

Mycoplasma pneumoniae cytadhesin P1 was purified by monoclonal antibody affinity chromatography followed by preparative sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The N-terminal 18-amino-acid sequence of P1 was determined and used to design two synthetic oligonucleotides, a 14-mer corresponding to amino acids 1 to 5 and an 18-mer corresponding to amino acids 7 to 12. These oligonucleotides served as hybridization probes for the identification of the P1 gene by Southern blot analysis of M. pneumoniae DNA. The P1 gene was cloned into plasmid pUC19 and mapped by using appropriate restriction endonucleases. The DNA sequence of the entire P1 gene was determined by subcloning appropriate DNA fragments into bacteriophage M13 and sequencing the DNA by the dideoxy-chain-termination method. The P1 gene contains an open reading frame of 4,881 nucleotides coding for a protein of 1,627 amino acids with a calculated molecular weight of 176,288. Properties of the amino-terminal sequence suggest that protein P1 may be synthesized as a precursor with subsequent processing to a mature protein of a calculated molecular weight of 169,758. Potential antigenic sites were determined by hydrophilicity plots. A computer search revealed that part of the predicted P1 sequence is homologous to cytoskeletal keratin of mammalian species and human fibrinogen alpha chain precursor. These results demonstrate the uniqueness of P1 as a cytadhesin and virulence determinant.

Amino Acid Sequence↗

Cloning structural genes for Treponema pallidum immunogens and characterisation of recombinant treponemal surface protein, P2 (P2 star).

A genomic library consisting of partially digested 10 to 20 kilobase pair fragments of Treponema pallidum deoxyribonucleic acid (DNA) was constructed using bacteriophage lambda EMBL-3 as the vector. Positive clones expressing T pallidum antigens were detected with sera from experimentally infected rabbits. Treponemal proteins ranging in molecular weight from 37,000 daltons to 120,000 daltons were identified by sodium dodecyl sulphate-polyacrylamide gel electrophoresis and immunoblotting of phage lysate proteins. One recombinant phage was examined further and contained an insert encoding a prominent treponemal 37,000 dalton protein. The recombinant protein was not recognised by antiserum directed against a fibronectin binding treponemal adhesion that contained the same electrophoretic mobility. Neither did antibody to the recombinant 37,000 dalton protein react with any treponemal proteins purified by fibronectin affinity chromatography. The recombinant protein in Escherichia coli lysates was labelled P2 (P2 star) to differentiate it from the comigrating adhesin protein called P2. Native P2 protein was present on T pallidum surfaces as shown by radioimmunoprecipitation assays with extrinsically labelled organisms. A cross reactive molecule like P2 was not synthesised by the avirulent spirochaete, T phagedenis biotype Reiter, which indicated that P2 is a protein specific to virulent T pallidum organisms. Finally, only sera of patients with primary syphilis possessed appreciable concentrations of antibody to recombinant P2 protein.

Antibodies, Bacterial↗

Molecular cloning of Treponema pallidum outer envelope fibronectin binding proteins, P1 and P2.

Phages directing the synthesis of Treponema pallidum fibronectin binding adhesin proteins, P1 and P2, were isolated from an EMBL-3 bacteriophage lambda library of T pallidum deoxyribonucleic acid (DNA). The recombinant phages were identified using antisera generated to treponemal proteins purified in fibronectin-Sepharose. Recombinant P1 and P2 proteins possessed the same relative molecular weights as the native surface polypeptides of spirochaetes. The structural genes for these proteins were subcloned into the plasmid vector pUC19, and transformed Escherichia coli expressed and translocated recombinant P1 and P2 to their outer membranes. Finally, the recombinant adhesin proteins, P1 and P2, were purified from detergent solubilised E coli outer membrane preparations using fibronectin-Sepharose affinity chromatography, which confirmed that the fibronectin binding properties of the cloned proteins were retained.

Adhesins, Bacterial↗

Molecular characterization of Mycoplasma genitalium species-specific and cross-reactive determinants: identification of an immunodominant protein of M. genitalium.

Species-specific proteins of Mycoplasma genitalium as well as proteins cross-reactive with M. pneumoniae have been identified using monoclonal antibodies generated against these mycoplasmas in enzyme-linked immunosorbent assays (ELISA) and Western blot analyses. Specificity of the antibodies was examined using M. hominis, M. orale M. salivarium and Acholeplasma laidlawii. A 140-kDa (kilodalton) protein of M. genitalium that appeared to be immunodominant in mice was also shown by radioimmunoprecipitation to be immunodominant in experimentally infected chimpanzees.

Animals↗

Identification of a 32-kilodalton protein of Mycoplasma pneumoniae associated with hemadsorption.

Monoclonal antibodies directed against a 32-kilodalton (kDa) protein of Mycoplasma pneumoniae have been used to characterize a hemadsorption-negative (HA-) mutant class whose protein profile was previously indistinguishable from the wild-type, hemadsorbing (HA+) strain. Electron microscopy and colloidal gold labeling techniques were applied for ultrastructural analysis of the 32-kDa protein. Results indicate that this protein clusters in the tip structure of M. pneumoniae (HA+) wild-type organisms. Additionally, the protein is precipitated by infected hamster sera.

Animals↗

Detection of serum antibody response to Bacteroides bivius by enzyme-linked immunosorbent assay in women with intraamniotic infection.

Amniotic fluid from patients with intraamniotic infection usually reveals multiple organisms, including aerobes, anaerobes, and mycoplasmas. Bacteroides bivius, one of the most common isolates in these fluids, is found in approximately 20% of cases. To provide further information of the role of B bivius in intraamniotic infection, we measured serum immunoglobulin G (IgG) against B bivius by a micro-enzyme linked immunosorbent assay. Antigen was prepared from whole cells of a clinical isolate. Amniotic fluid was collected by aspiration of a transcervical pressure catheter, and was cultured for aerobes, anaerobes, and mycoplasmas. Acute and convalescent sera from 47 infected women and 31 controls were assayed to detect serologic response. Patients with intraamniotic infection and B bivius in amniotic fluid culture had significantly greater serologic responses than did infected women without B bivius in amniotic fluid and asymptomatic controls. These data suggest a pathogenic role of B bivius in intraamniotic infection, and imply that it probably plays a frequent role in other obstetric infections.

Adult↗

Isolation of a Treponema pallidum gene encoding immunodominant outer envelope protein P6, which reacts with sera from patients at different stages of syphilis.

A phage directing the synthesis of an abundant 45-kD Treponema pallidum surface protein was isolated from an EMBL-4 bacteriophage lambda library of T. pallidum DNA. The recombinant phage was identified using an mAb that was directed toward an immunodominant, outer envelope T. pallidum protein designated P6. The recombinant P6 protein possessed the same mol mass as the native treponemal antigen detected from total T. pallidum protein preparations, confirming the cloning of the structural gene for this molecule. Furthermore, E. coli was transformed by a 4.5-kb Eco RI lambda insert fragment subcloned into the plasmid vector pUC19. These transformed cells expressed and translocated the 45-kD protein to their outer membranes. Finally, all sera from patients with different stages of syphilis (primary, secondary, and latent) contained antibody reactive to this protein.

Bacterial Outer Membrane Proteins↗

Enhanced levels of attachment of fibronectin-primed Treponema pallidum to extracellular matrix.

Freshly extracted Treponema pallidum organisms treated with exogenous human fibronectin (Fn) (Fn-primed treponemes) showed a 6- to 15-fold increased level of attachment to Fn-coated cover slips and to extracellular matrix (ECM) when compared with unprimed treponemes. Treponemes primed with collagen or laminin showed no similar enhanced binding to immobilized Fn or ECM. Preexposure of immobilized Fn and ECM to anti-Fn serum but not to anti-collagen or anti-laminin serum prevented treponemal adherence. Also, the presence of proteoglycanlike molecules such as dextran sulfate or heparan sulfate inhibited Fn-primed treponemal attachment to Fn or ECM. In contrast Fn-primed treponemes did not exhibit elevated levels of attachment to eucaryotic cell monolayers. To understand the increased tropism of Fn-primed T. pallidum organisms for Fn and ECM-like surfaces, we radiolabeled freshly extracted treponemes with [35S]methionine and examined them for the presence of surface immunoreactive Fn. Magnetic protAspheres and glass beads coated with monospecific anti-Fn serum bound only 20 to 30% of radiolabeled treponemes. Nonadherent treponemes failed to bind to gelatin-agarose, further confirming the absence of surface Fn or Fn-like material. Fn-free organisms, however, did attach to Fn-coated cover slips and to cell monolayers like treponemes of the original population. Incubation of Fn-free treponemes with human Fn resulted in almost total binding of organisms to anti-Fn antibody on glass beads and also produced increased attachment to Fn-coated cover slips and ECM. These results suggest that enhanced interactions between T. pallidum and the host are dependent on the presence of Fn on syphilis spirochetes and the specific location and orientation of Fn in vivo.

Adhesiveness↗

Expression of Mycoplasma pneumoniae antigens in Escherichia coli.

A genomic library of Mycoplasma pneumoniae was generated by using bacteriophage lambda EMBL3 as the vector. Screening of the library for the expression of M. pneumoniae protein antigens with adsorbed anti-M. pneumoniae serum revealed strong reactivity from a third of those clones which contained mycoplasma DNA inserts. Three of the most highly reactive clones were analyzed in detail and found to synthesize discrete mycoplasma proteins. Two carried overlapping fragments of mycoplasma DNA which encoded a protein that was readily detected in Escherichia coli after infection with recombinant bacteriophage. The third clone contained a novel mycoplasma DNA fragment which directed the synthesis of two additional mycoplasma proteins. Further screening of the library with antiserum raised against the major M. pneumoniae adhesin protein P1 (165 kilodaltons [kDa]) yielded one clone which produced an immunologically reactive protein of 140 kDa. Adsorption of anti-P1 serum by this clone selected a population of antibodies that were reactive with M. pneumoniae adhesin P1 (165 kDa). These results demonstrate that immunologically active M. pneumoniae proteins are synthesized in E. coli.

Adhesiveness↗

Biological effects of anti-lipid and anti-protein monoclonal antibodies on Mycoplasma pneumoniae.

Monoclonal antibodies directed against Mycoplasma pneumoniae surface components were examined for their ability to block mycoplasma attachment to chicken erythrocytes. Purified preparations of antibodies which recognize the major mycoplasma ligand mediating cytadherence (protein P1, 165 kilodaltons) inhibited attachment by more than 85% of the control values. Monoclonal antibodies reactive with two other surface proteins of 110 and 32 kilodaltons also blocked attachment. Surprisingly, monoclonal antibodies specific for M. pneumoniae lipids (J. Morrison-Plummer, D. H. Jones, and J. B. Baseman, J. Immunol. Methods 64:165-178, 1983) enhanced mycoplasma-erythrocyte binding. All antibodies examined had no effect on thymidine incorporation by M. pneumoniae.

Adhesiveness↗

Analysis of proteins in rabbit pulmonary surfactant using monoclonal antibodies.

We have used monoclonal antibodies developed against the apolipoproteins associated with pulmonary surfactant purified from rabbit lavage fluid to study the expression of epitopes common to these proteins. The pulmonary surfactant contained nearly 20 proteins, of which at least 10 were not derived from serum. Electrophoresis, with sulfhydryl reduction of these proteins indicated apparent molecular weights of approximately 155, 135, 125, and 115 X 10(3) (high-molecular-weight group); 80, 70, and 60 X 10(3) (intermediate group); and 18 through 10 X 10(3) (low-molecular-weight group). Two-dimensional polyacrylamide gel electrophoresis, in which the proteins were electrophoresed without reduction in the first dimension, but with sulfhydryl reduction in the second dimension, revealed that the 80, 70, and 60 X 10(3) proteins dissociated into proteins of nominal molecular weights of 40, 35, and 30 X 10(3), respectively. In contrast, the 125 and 115 X 10(3) proteins of the high-molecular-weight group contained a protein which could only be reduced to a minimum molecular weight of 55 to 60 X 10(3). Monoclonal antibodies generally were of three types: those that reacted strongly with the high-molecular-weight group and weakly with the intermediate group; those that reacted conversely; and those that reacted only with the low-molecular-weight group. Our results indicate that at least two different surfactant apolipoproteins, with differing minimum molecular weights in SDS-polyacrylamide gel electrophoresis, have common epitopes. Although these results cannot certify a physiological relationship between these proteins, they suggest that the intracellular synthesis or extracellular processing of surfactant apolipoproteins may be more complicated than predicted by the findings of previous experiments, perhaps involving the posttranslational assembly of one surfactant protein into oligomers which resist dissociation under the conditions used for the analyses.

Animals↗

Immunodiagnostic test for detection of serum antibody to Treponema pallidum (syphilis): fibronectin as a capture vehicle for treponemal adhesins.

Knowledge that Treponema pallidum adhesin proteins bind to host fibronectin (Fn) via ligand-receptor interactions has resulted in development of an ELISA for measuring specific antitreponemal antibodies in sera of syphilitic patients and infected experimental animals. As little as 50 ng of T. pallidum total protein extract added to Fn-coated wells permitted half-maximal levels of ELISA reactivity. Detection of serum antibody from intratesticularly infected rabbits occurred at dilutions greater than 1/100,000. Antibody titers in serum from patients with primary and latent syphilis were positive at 1/1 000 dilutions while serum samples from patients with secondary syphilis were reactive at 1/10,000. Furthermore, the ELISA proved useful for evaluating serum samples from individuals with other treponemal infections. Antibodies raised against the non-pathogenic spirochete, T. phagedenis biotype Reiter, were non-reactive with Fn-T. pallidum complexes. Also, Reiter treponemal proteins did not bind to Fn-coated wells. This ELISA using Fn as a capture vehicle for treponemal adhesin proteins was superior to 3 other routinely used tests for syphilis diagnosis.

Adhesins, Bacterial↗