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Biomedical subjects

R J Watson

Publications and source records attributed to R J Watson.

At least 73 records · Page 4Linked to original sources

Rhizobium meliloti genes required for C4-dicarboxylate transport and symbiotic nitrogen fixation are located on a megaplasmid.

A mutant of Rhizobium meliloti unable to transport C4 dicarboxylates (dct) was isolated after Tn5 mutagenesis. The mutant, 4F6, could not grow on aspartate or the tricarboxylic acid cycle intermediates succinate, fumarate, or malate. It produced symbiotically ineffective nodules on Medicago sativa in which bacteroids appeared normal, but the symbiotic zone was reduced and the plant cells contained numerous starch granules at their peripheries. Cosmids containing the dct region were obtained by selecting those which restored the ability of 4F6 to grow on succinate. The Tn5 insertion in 4F6 was found to be within a 5.9-kilobase (kb) EcoRI fragment common to the complementing cosmids. Site-specific Tn5-mutagenesis revealed dct genes in a segment of DNA about 4 kb in size extending from within the 5.9-kb EcoRI fragment into an adjacent 2.9-kb EcoRI fragment. The 4F6 mutation was found to be in a complementation group in which mutations yielded a Fix- phenotype, whereas other dct mutations in the region resulted in mutants which produced effective nodules in most, although not all, plant tests (partially Fix-). The dct region was found to be located on a megaplasmid known to carry genes required for exopolysaccharide production.

Cosmids↗

Expression of the c-myb and c-myc genes is regulated independently in differentiating mouse erythroleukemia cells by common processes of premature transcription arrest and increased mRNA turnover.

The mechanisms that modulate c-myb mRNA levels in mouse erythroleukemia cells induced toward erythroid differentiation were compared with those that act on c-myc. Both genes exhibited regulation at the levels of premature transcription arrest and RNA turnover. However, these common processes allowed temporally distinct control of gene expression.

Animals↗

The induction of Friend erythroleukaemia differentiation is markedly affected by expression of a transfected c-myb cDNA.

A minigene containing a cDNA encoding the normal mouse p80c-myb protein under strong promoter control was used to transfect Friend erythroleukaemia cells. Expression of the transfected gene was found to result in elevated levels of p80c-myb which were not subject to rapid down-modulation by inducers of Friend cell differentiation as was the product of the endogenous c-myb gene. Continued synthesis of p80c-myb was found to be associated with a marked decrease in differentiation of Friend cells and we concluded that normal down-regulation of c-myb expression may be a necessary event in differentiation of these cells.

Animals↗

A transcriptional arrest mechanism involved in controlling constitutive levels of mouse c-myb mRNA.

The control of c-myb mRNA abundance was examined in three representative cell lines, (the erythroleukaemia F4-12B2, the myeloma MOPC-31C and the fibroblast NIH3T3), which display abundant, low and undetectable levels of this transcript, respectively. We observed a small difference in half-life between F4-12B2 and MOPC-31C c-myb mRNA (175 min and 105 min, respectively) insufficient to account for the approximately 20-fold lower levels of this transcript in myelomas. Using the run-on transcription assay we found that c-myb transcripts were initiated at similar rates in all three cell types and were elongated at this relatively high rate to a site approximately 2 kilobases into the first intron. NIH3T3 c-myb transcripts did not proceed detectably beyond this pause/attenuation site, while in F4-12B2 cells transcription of regions 3' of this site occurred at a rate approximately 12-fold greater than in MOPC-31C. We have concluded that this transcriptional arrest mechanism, together with small differences in RNA turnover, were sufficient to account for the spectrum of c-myb mRNA abundance observed. Despite evidence of transcript initiation, we were unable to detect c-myb mRNA in fibroblasts, even under conditions (e.g. serum stimulation) which induced high c-myc mRNA levels. However, a novel 3.0 kilobase transcript with homology to c-myb was detected in cycloheximide-treated NIH3T3 cells.

Animals↗

Ultrastructural observations on the basal lamina in the normal human breast.

The ultrastructure of the basal lamina of histologically normal human breast tissue was determined in 19 women undergoing operations for removal of a fibroadenoma or reduction mammoplasty. The day of the menstrual cycle was determined by hormone assay and direct questioning. Previously documented ultrastructural appearances were confirmed: in addition, three morphological variants were found. In all tissue examined, there was reduplication of basal lamina in some areas, which has been described previously as a pathological feature. Also, there was complex branching of the basal lamina into the periductular connective tissue. Some projections contained cytoplasmic processes and, in almost all, hemidesmosomes were seen. The third variant consisted of loops of basal lamina thrown up in folds into the collagenous stromal cuff. Reduplication of basal lamina was detected in breast tissue removed at all stages of the menstrual cycle, looping was not and could not be related to any particular phase of the menstrual cycle. However, complex branching was seen predominantly in the periovulatory and early luteal phase. We conclude that these appearances are normal variants of basal lamina. The appearance of branching basal lamina in the luteal phase suggests that this may be produced in response to endocrine stimulation.

Basement Membrane↗

Multiple c-myb transcript cap sites are variously utilized in cells of mouse haemopoietic origin.

Mouse c-myb gene transcripts in various cells of haemopoietic origin were analysed using S1 nuclease and RNase mapping techniques and by Northern blotting. It was found that the prevalent 3.8-kb c-myb mRNA present in thymocytes, T cell leukaemias, myelomonocytic leukaemias, erythroleukaemias and myeloid stem cells was initiated at several cap sites mapping within a region 97-244 bp upstream from the protein coding sequence. Utilization of additional cap sites mapping further upstream was also observed in certain cells, most notably thymocytes, and this gave rise to RNA species (4.3-5.6 kb) larger than the presumptive mRNA. In contrast, myeloma cell c-myb transcripts, which are much less abundant than those in more immature haemopoietic cells, were found to be initiated at a restricted set of cap sites mapping 244-277 bp upstream of the coding sequence. Hence, these data suggest that the abundance of the c-myb mRNA may be regulated by a process involving selective utilization of mRNA cap sites. Sites hypersensitive to DNase I were associated with mRNA cap sites in cells that expressed c-myb.

Animals↗

The pseudorabies virus gII gene is closely related to the gB glycoprotein gene of herpes simplex virus.

We have looked for conserved DNA sequences between four herpes simplex virus type 1 (HSV-1) glycoprotein genes encoding gB, gC, gD, and gE and pseudorabies virus (PRV) DNA, HSV-1 DNA fragments representing these four glycoprotein-coding sequences were hybridized to restriction enzyme fragments of PRV DNA by the Southern blot procedure. Specific hybridization was observed only when HSV-1 gB DNA was used as probe. This region of hybridization was localized to a 5.2-kilobase (kb) region mapping at approximately 0.15 map units on the PRV genome. Northern blot (RNA blot) analysis, with a 1.2-kb probe derived from this segment, revealed a predominant hybridizing RNA species of approximately 3 kb in PRV-infected PK15 cells. DNA sequence analysis of the region corresponding to this RNA revealed a single large open reading frame with significant nucleotide homology with the gB gene of HSV-1 KOS 321. In addition, the beginning of the sequenced PRV region also contained the end of an open reading frame with amino acid homology to HSV-1 ICP 18.5, a protein that may be involved in viral glycoprotein transport. This sequence partially overlaps the PRV gB homolog coding sequence. We have shown that the PRV gene with homology to HSV-1 gB encoded the gII glycoprotein gene by expressing a 765-base-pair segment of the PRV open reading frame in Escherichia coli as a protein fused to beta-galactosidase. Antiserum, raised in rabbits, against this fusion protein immunoprecipitated a specific family of PRV glycoproteins of apparent molecular mass 110, 68, and 55 kilodaltons that have been identified as the gII family of glycoproteins. Analysis of the predicted amino acid sequence indicated that the PRV gII protein shares 50% amino acid homology with the aligned HSV-1 gB protein. All 10 cysteine residues located outside of the signal sequence, as well as 4 of 6 potential N-linked glycosylation sites, were conserved between the two proteins. The primary protein sequence for HSV-1 gB regions known to be involved in the rate of virus entry into the cells and cell-cell fusion, as well as regions known to be associated with monoclonal antibody resistance, were highly homologous with the PRV protein sequence. Furthermore, monospecific antibody made against PRV gII immunoprecipitated HSV-1 gB from infected cells. Taken together, these findings suggest significant conservation of structure and function between the two proteins and may indicate a common evolutionary history.

Amino Acid Sequence↗

Synthesis of fused glycoprotein D of herpes simplex virus type 1 but not type 2 inhibits Escherichia coli hosts.

Glycoprotein D from either Herpes simplex virus type 1 (gD-1) or type 2 (gD-2) has been expressed in Escherichia coli as a series of chimeric proteins. The expression vector used in this study, pJS413, was derived from pBR322 and contains several cloning sites between the lacZ promoter-operator and the phage lambda cro gene. Plasmids containing fusions between the cro gene, gD-related sequences and lacZ was constructed and shown to direct the synthesis of 160-kDa proteins. The accumulation of fusion protein could be visualized as inclusion bodies when the cells were examined by dark phase-contrast or transmission electron microscopy. None of the plasmids that encoded cro::gD gene fusions yielded significant amounts of material upon induction with isopropyl-beta-D-thiogalactopyranoside. In addition, certain plasmids produced a form of Cro-gD-1 fusion protein which resulted in severe growth inhibition of E. coli. These inhibitory effects were attributed to the presence of specific gD-1 sequences, i.e., the transmembrane and cytoplasmic anchor region of the protein.

Amino Acid Sequence↗

Characterization of a pseudorabies virus glycoprotein gene with homology to herpes simplex virus type 1 and type 2 glycoprotein C.

A pseudorabies virus (Becker strain) glycoprotein gene was located in the UL region at map position 0.40. The gene was identified by using open reading frame Escherichia coli plasmid expression vectors and specific antibody reagents. A 1.55-kilobase unspliced transcript from the gene was detected in pseudorabies virus-infected tissue culture cells. The DNA sequence revealed a single open reading frame of 1,437 base pairs encoding 479 amino acids. The predicted primary translation product has a molecular weight of 50,860 and contains features of a typical herpesvirus glycoprotein. An E. coli expression plasmid was constructed that contained essentially all of the open reading frame for this gene. Antibodies raised in rabbits against the protein expressed in bacteria by this plasmid immunoprecipitated pseudorabies virus-specific glycoproteins of 92,000 and 74,000 daltons from infected cell extracts. It is likely that these two forms represent different glycosylation states of the protein.

Cloning, Molecular↗

Pseudorabies virus gene encoding glycoprotein gIII is not essential for growth in tissue culture.

We have established that in the Becker strain of pseudorabies virus (PRV), the glycoprotein gIII gene is not essential for growth in cell culture. This was accomplished by construction and analysis of viral mutants containing two defined deletion mutations affecting the gIII gene. These mutations were first constructed in vitro and introduced into Escherichia coli expression plasmids to verify structure and protein production. Each mutation was then crossed onto PRV by cotransfection of plasmid DNA and parental viral DNA by using gIII-specific monoclonal antibodies as selective and screening reagents. One resultant virus strain, PRV-2, contained an in-frame deletion of a 402-base-pair (bp) SacI fragment contained within the gIII gene. Another virus strain, PRV-10, contained a deletion of a 1,480-bp XhoI fragment removing 230 bp of the upstream, putative transcriptional control sequences and 87% of the gIII coding sequence. The deletion mutants were compared with parental virus by analysis of virion DNA, gIII specific RNA, and proteins reacting with gIII specific antibodies. Upon infection of PK15 cells, the deletion mutants did not produce any proteins that reacted with two gIII specific monoclonal antibodies. However, two species of truncated glycosylated proteins were observed in PRV-2 infected cells that reacted with antiserum raised against bacterially produced gIII protein. PRV-10 produced no detectable gIII-specific RNA or protein. PRV-10 could be propagated without difficulty in tissue culture. Virus particles lacking gIII were indistinguishable from parental PRV virus particles by analysis of infected-cell thin sections in the electron microscope. We therefore conclude that expression of the gIII gene was not absolutely essential for PRV growth in tissue culture.

Animals↗

Intralobular stromal fibroblasts in the resting human mammary gland: ultrastructural properties and intercellular relationships.

The intralobular stroma of the resting human mammary gland was studied by thin-sectioning transmission electron microscopy on tissue obtained from reduction mammoplasty or adjacent to fibroadenomas. The arrangement of delimiting fibroblasts around the epithelium and their possession of contacts as shown by earlier studies were confirmed. Observations on other ultrastructural aspects show these cells to have abundant rough endoplasmic reticulum, a well developed Golgi apparatus and vesicles considered to contain collagen-precursor, and conflict with earlier data. The fine structure of those fibroblasts without close epithelial proximity has been described for the first time and was similar to that of delimiting fibroblasts. Other features applicable to both categories of fibroblast included: variation in overall staining intensity, structures resembling hemi-desmosomes, simple junctions, and close juxtapositions of cell surfaces forming 'contacts' with other fibroblasts as well as with mononuclear cells (lymphocytes, plasma cells, mast cells, macrophages). These cell contacts have not been documented previously. Contacts were structurally undifferentiated, forming spaces 20-50 nm wide which were occluded by lanthanum nitrate. Intralobular stromal cells were therefore organised into a kind of reticulum. The possible functions of this network are discussed. The concept of the epithelial-stromal junction is re-assessed in the light of these observations.

Adolescent↗

Relationships of the Col plasmids E2, E3, E4, E5, E6, and E7: restriction mapping and colicin gene fusions.

Thirteen ColE plasmids representing the E2-E7 types have been compared by restriction mapping. Over 80% of their restriction sites were found to be similarly positioned, indicating that these plasmids share a common structure. Three variants are ColE2-CA42 and ColE7-K317, both of which contain 1.8-kb DNA segments in place of a 2.5-kb segment common to the other plasmids, and ColE6-CT14, which has an additional 5.0-kb DNA segment compared to the other plasmids. The colicin (col), immunity (imm), and colicin release (hic) genes of these plasmids have been localized to regions corresponding to those known for ColE3-CA38 and ColE2-P9, with the imm and hic genes adjacent to the 3' end of the col gene. Active colicin is produced from hybrid col genes containing 5' and 3' ends from different E-type plasmids. The 3'-termini of the fused col genes specify the colicin type.

Bacteriocin Plasmids↗

Duodenal ulcer disease in the elderly: a retrospective study.

A retrospective study was performed of 163 patients aged 65 years and over with a diagnosis of duodenal ulceration admitted to one Health District over a period of six years. Eighty per cent of the patients were admitted with acute complications, 50% bled and 30% were perforated. A large proportion of these patients were currently taking anti-inflammatory agents. Patients managed surgically for their complications had a high mortality rate but this was even higher for those managed conservatively. Giant ulcers were found to occur frequently in this age group which had a tendency to severe bleeding. It is concluded that early diagnosis and prompt surgical intervention is essential in the management of complications associated with duodenal ulceration in the elderly.

Aged↗

The immunity genes of colicins E2 and E8 are closely related.

We have determined the nucleotide sequence of the newly characterized colicin E8 imm gene which exists in tandem with the colicin E3 imm gene in the ColE3-CA38 plasmid. Comparison of these immunity structures reveals considerable sequence divergence, but the ColE8 imm gene is markedly homologous to the colicin E2 imm gene from the ColE2-P9 plasmid.

Bacteriocin Plasmids↗

Tandem repeated DNA in an intergenic region of herpes simplex virus type 1 (Patton).

When the entire US region of HSV-1 (Patton) was cloned as an EcoRI fragment in bacteriophage lambda gtWES, the BamHI B6B5 fragment was observed to vary in size among independent isolates [Umene and Enquist, Gene 13 (1981) 251-268]. This fragment polymorphism also occurred in DNA of HSV-1 single plaque isolates. We report here that this heterogeneity is due to variation in copy number of a 15-bp tandem repeat of sequence 5'-CCACTCCCCACCCAC-3', which apparently lies in an intergenic region of the HSV-1 DNA.

Base Sequence↗

Bacterial synthesis of herpes simplex virus types 1 and 2 glycoprotein D antigens.

We have used elements of the E. coli lactose (lac) operon to produce a collection of herpes simplex virus types 1 and 2 glycoprotein D (gD-1 and gD-2) antigens. Our approach employed recombinant DNA techniques to construct plasmids with various segments of the gD-1 and gD-2 coding sequences fused to the lacZ gene. Such hybrid genes were expressed in a regulated manner in E. coli by joining them to the lac promoter-operator region. Efficient translation of these hybrid genes was facilitated by incorporating a coding sequence specifying a short peptide leader (lambda cro) in the plasmid expression vectors resulting in synthesis of chimeric Cro-gD-beta-galactosidase proteins. In addition, insertion of synthetic translation terminators at the junction of gD and lacZ enabled us to produce specific truncated gD polypeptide sequences unfused to beta-galactosidase. The gD antigens produced in E. coli were not glycosylated and were generally recovered as dense insoluble aggregates. Proteins containing portions of gD-1 or gD-2 were analyzed by immunoprecipitation using anti-HSV rabbit serum and a number of monoclonal antibodies recognizing different epitopes of gD-1. Initial animal studies were done with antigens that reacted with neutralizing antisera or monoclonal antibodies. When these bacterially produced proteins were injected into rabbits, antibodies were produced that specifically immunoprecipitated authentic gD polypeptides and neutralized the infectivity of both virus types. These studies suggest that gene fusion techniques can be used to produce immunogenic proteins in large quantity. These polypeptides are not only useful in analyses of gene structure and function, but also can provide novel diagnostic reagents and well-defined pure antigens for vaccine development.

Amino Acid Sequence↗