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R Munson

Publications and source records attributed to R Munson.

13 recordsLinked to original sources

Outer membrane proteins P1 and P2 of Haemophilus influenzae type b: structure and identification of surface-exposed epitopes.

The outer membrane proteins (OMPs) P1 and P2 of Haemophilus influenzae type b exhibit molecular size and antigenic variation. Their structural genes have been cloned from prototype isolates of the most common disease-producing clonal groups. The derived amino acid sequences of P1 from strains of OMP subtypes 1H, 3L, and 6U have three variable regions between highly conserved regions. An immunodominant surface-exposed epitope was identified near the carboxyl terminus of P1 proteins from subtype 1H and 3L strains. The P2 genes from subtype 1H, 1L, and 3L isolates were identical. The P2 gene sequence from a subtype 6U isolate differs from the subtype 1H P2 gene by 13 nucleotides, resulting in 10 amino acid changes. The P2 gene from a subtype 2L isolate differs by 1 nucleotide from the subtype 1H P2 gene, resulting in 1 amino acid change at position 166. Two surface-exposed epitopes of OMP P2 were identified, one each between residues 158 and 174 and residues 319 and 341.

Animals

Comparison of the structure of the genes for outer membrane proteins P1 and P2 of Haemophilus influenzae type b.

Size and antigenic heterogeneity have been recognized in both outer membrane protein P1 and outer membrane protein P2 of Haemophilus influenzae type b. To determine the molecular basis for these differences, we have cloned and sequenced the structural genes for OMPs P1 and P2 from prototype isolates with the OMP subtypes 1H, 3L and 6U. The nucleotide and derived amino acid sequences of the P1 genes are characterized by three variable regions dispersed between highly conserved regions. The nucleic acid and derived amino acid sequences of the P2 genes are also highly conserved. The P2 genes from OMP subtype 1H and 3L isolates are identical. The sequence of the 6U gene differs by 13 nucleotides, resulting in 10 amino acid changes.

Bacterial Outer Membrane Proteins

Mapping of B-cell epitopes on the outer membrane P2 porin protein of Haemophilus influenzae by using recombinant proteins and synthetic peptides.

The P2 protein of Haemophilus influenzae type b has a porin activity and is the most abundant protein in the outer membrane. We have employed fusion protein constructs and synthetic peptides along with monoclonal antibodies to map B-cell epitopes in this protein. A linear, surface-exposed epitope was identified between residues 158 and 174. A second surface-exposed epitope was identified near the carboxy-terminal end of the protein (residues 319 to 341). Two additional B-cell epitopes were identified. One was localized between residues 28 and 55, whereas the other was located between residues 148 and 174. These epitopes were not present on the surface of intact H. influenzae cells. Thus, four distinct immunogenic and antigenic regions on the P2 protein have been identified.

Amino Acid Sequence

Molecular cloning, expression, and sequence of the pilin gene from nontypeable Haemophilus influenzae M37.

Nontypeable Haemophilus influenzae M37 adheres to human buccal epithelial cells and exhibits mannose-resistant hemagglutination of human erythrocytes. An isogenic variant of this strain which was deficient in hemagglutination was isolated. A protein with an apparent molecular weight of 22,000 was present in the sodium dodecyl sulfate-polyacrylamide gel profile of sarcosyl-insoluble proteins from the hemagglutination-proficient strain but was absent from the profile of the isogenic hemagglutination-deficient variant. A monoclonal antibody which reacts with the hemagglutination-proficient isolate but not with the hemagglutination-deficient isolate has been characterized. This monoclonal antibody was employed in an affinity column for purification of the protein as well as to screen a genomic library for recombinant clones expressing the gene. Several clones which contained overlapping genomic fragments were identified by reaction with the monoclonal antibody. The gene for the 22-kDa protein was subcloned and sequenced. The gene for the type b pilin from H. influenzae type b strain MinnA was also cloned and sequenced. The DNA sequence of the strain MinnA gene was identical to that reported previously for two other type b strains. The DNA sequence of the strain M37 gene is 77% identical to that of the type b pilin gene, and the derived amino acid sequence is 68% identical to that of the type b pilin.

Amino Acid Sequence

Vector analysis of three-dimensional evoked potentials: eccentric dipoles.

The quantitative description of three-dimensional cerebral evoked potentials is extended to include eccentric dipolar sources. Eccentricity-related distortions in dipole orientation and magnitude are assessed. The use of nonstandard montages, the prediction of topographic surface maps, dynamic analysis, and theoretical mechanisms of planar segment formation are discussed.

Brain

Diversity of the outer membrane protein P2 gene from major clones of Haemophilus influenzae type b.

In previous studies, it has been demonstrated that outer membrane protein P2 from Haemophilus influenzae type b has porin activity and that antibody directed against P2 is protective in an infant rat bacteraemic model. Outer membrane protein subtyping has been employed to subclassify type b Haemophilus isolates. Strain MinnA has the outer membrane protein subtype 1H and is representative of the dominant clonal group of disease-producing isolates in the United States. In the present study, the P2 gene from strain MinnA was employed to probe EcoRI- and Pvull-digested chromosomal DNA from 24 Haemophilus influenzae type b isolates representative of the common outer membrane protein subtype groups observed throughout the world. Restriction fragment length polymorphisms were identified for the members of the outer membrane protein subtype 3L group, but not for the other subtypes examined. The P2 gene from each of four prototype isolates was then cloned, sequenced and compared to the previously reported sequence of the strain MinnA gene. The P2 gene from each of two isolates with the outer membrane protein subtype 3L was identical to the MinnA P2 sequence. The P2 gene from a subtype 2L isolate differed by a single nucleotide and the gene from a subtype 6U isolate differed by 13 nucleotides. Thus, the P2 protein is highly conserved among type b isolates.

Amino Acid Sequence

Molecular cloning, expression, and primary sequence of outer membrane protein P2 of Haemophilus influenzae type b.

The structural gene for the porin of Haemophilus influenzae type b, designated outer membrane protein P2, was cloned, and the DNA sequence was determined. An oligonucleotide probe generated by reverse translation of N-terminal amino acid sequence data from the purified protein was used to screen genomic DNA. The probe detected a single EcoRI fragment of approximately 1,700 base pairs which was cloned to lambda gt11 and then into M13 and partially sequenced. The derived amino acid sequence indicated that we had cloned the N-terminal portion of the P2 gene. An overlapping approximately 1,600-base-pair PvuII genomic fragment was cloned into M13, and the sequence of the remainder of the P2 gene was determined. The gene for P2 was then reconstructed under the control of the T7 promoter and expressed in Escherichia coli. The N-terminal sequence of the purified protein corresponds to residues 21 through 34 of the derived amino acid sequence. Thus, the protein is synthesized with a 20-amino-acid leader peptide. The Mr of the processed protein is 37,782, in good agreement with the estimate of 37,000 from sodium dodecyl sulfate-polyacrylamide gel electrophoresis.

Amino Acid Sequence

Comparative analysis of the structures of the outer membrane protein P1 genes from major clones of Haemophilus influenzae type b.

P1 outer membrane proteins from Haemophilus influenzae type b are heterogeneous antigenically and with respect to apparent molecular weight in sodium dodecyl sulfate-polyacrylamide gel electrophoresis. For determination of the molecular basis for the differences in the P1 proteins, the genes for the P1 proteins from strain 1613, representative of outer membrane protein subtype 3L, and strain 8358, representative of outer membrane protein subtype 6U, were cloned, sequenced, and compared with the previously reported gene for the P1 protein from strain MinnA, a strain with the outer membrane protein subtype 1H. These prototype strains are representatives of the three major clonal families of H. influenzae type b responsible for invasive disease in diverse areas of the world. The nucleotide sequences of the P1 genes from strains 1613 and 8358 were 94 and 90% identical to the MinnA sequence, respectively. The derived amino acid sequences were 91 and 86% identical, respectively. Heterogeneity between the MinnA and 1613 proteins was largely localized to two short variable regions; the protein from strain 8538 contained a third variable region not observed in the other P1 proteins. Thus, the outer membrane protein P1 genes are highly conserved; the variable regions may code for the previously demonstrated strain-specific antigenic determinants.

Amino Acid Sequence

Isolation and characterization of a mutant of Haemophilus influenzae type b deficient in outer membrane protein P1.

The gene for outer membrane protein P1 of Haemophilus influenzae type b has been previously cloned and expressed in Escherichia coli. To investigate the physiologic role of the P1 protein, the cloned P1 gene was insertionally inactivated with the Tn5 derivative Tn5tac1, and an isogenic P1-deficient Haemophilus mutant was then generated by transformation with linearized plasmid DNA containing the insertionally inactivated gene. The P1-deficient strain grew normally in vitro and induced bacteremia in the infant rat model.

Bacterial Outer Membrane Proteins

Purification, cloning, and sequence of outer membrane protein P1 of Haemophilus influenzae type b.

Outer membrane protein P1 from Haemophilus influenzae type b MinnA was purified and partially characterized. Antiserum was generated against the purified protein and was used to immunologically screen a lamba EMBL3 genomic library prepared from strain MinnA DNA. A 4.2-kilobase-pair EcoRI-BamHI fragment containing the P1 gene was subcloned into pBR322. The recombinant protein was synthesized by Escherichia coli K-12, in which it localized to the outer membrane. The N-terminal sequence of the purified protein was determined and found to correspond to residues 23 through 36. The 22-amino-acid leader peptide had a typical structure, with two lysine residues near the amino terminus, a stretch of hydrophobic residues, and alanine residues at positions 20 and 22. The Mr of the processed protein was 47,752, which is in good agreement with the estimate of 50,000 from sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Putative -35 and -10 promoter sequences were identified upstream from the translational start site. Codon usage was examined and determined to be substantially different than the codon preference in E. coli.

Amino Acid Sequence

Tetrodotoxin-sensitive sodium channels in normal human fibroblasts and normal human glia-like cells.

Tetrodotoxin-sensitive sodium channels are detectable in normal human fibroblasts and in "glia-like" cells at appreciable levels when compared to what is observed in established neuronal cell lines in culture. Two- to 3-fold stimulations of sodium influx are observed in the presence of 0.2 mM veratridine and scorpion venom at 0.1 mg/ml. Tetrodotoxin (2 microM) inhibits the observed stimulation of sodium influx. Previous work has indicated that these neurotoxins act on the voltage-sensitive sodium ionophore of excitable cells, and the presence of such channels in cells generally considered nonexcitable raises questions regarding both the uniqueness of this ionophore as a property of excitable cells and the origin of the cells generally described as fibroblasts.

Cell Line

Three-dimensional human somatosensory evoked potentials.

Median nerve somatosensory evoked potentials were recorded from 30 normal adults using conventional scalp derivations and an orthogonal bipolar surface electrode montage. This allowed the determination of the spatial orientation of the hypothetical centrally located equivalent dipole derived from the evoked response recorded in 3-dimensional voltage space. The 3-dimensional voltage trajectory describing changes in equivalent dipole orientation and magnitude revealed 4 major apices between 5 and 25 msec, 3 of which corresponded to the traditional P14, N20 and P25 peaks. A fourth apex at 17 msec was not as evident in the conventional recordings and signaled a transition from a vertical P14-N18 generator process to a horizontal N20 generator process. The normal within- and between-subject variability of trajectory apices, segments and planes are described, along with the theoretical and practical implications of this recording technique.

Adult

Three-dimensional human pattern visual evoked potentials. I. Normal subjects.

Pattern visual evoked potentials (PVEPs) were obtained from 30 normal adult volunteers, recording from both a conventional horizontal occipital array and three orthogonal bipolar antipodal channels approximating the three dimensions of space. Central and eccentric fixation of 60' checks and central fixation of 30' checks under binocular and monocular viewing conditions was employed. The three antipodal wave forms were displayed as a single 3-D Lissajous trajectory which contained four apices, corresponding to P40 (apex A), N70 (apex B), P100 (apex C) and N125 (apex D). The 3-D evoked potentials depicted the dynamic nature of the human PVEP in terms of changes in the 3-D voltage-voltage-voltage plots of the recordings. The orientation of the A-B, B-C and C-D curvilinear segments reflected the stimulating condition (central fixation vs. right vs. left hemi-field stimulation) for all subjects with more accuracy than did the wave forms from the conventional array. Spherical statistical methods are described for quantifying and evaluating 3-D evoked potential recordings.

Adult