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Biomedical subjects

A Mellor

Publications and source records attributed to A Mellor.

36 records · Page 2Linked to original sources

The degree of CD8 dependence of cytolytic T cell precursors is determined by the nature of the T cell receptor (TCR) and influences negative selection in TCR-transgenic mice.

Although much has been learned about CD8 structure-function properties, it has so far not been tested whether the nature of the TCR is sufficient to transfer the property of CD8 dependence versus non-dependence to CD8+ cytotoxic T lymphocytes (CTL) and their precursors differentiating in T cell receptor (TCR)-transgenic (Tg) mice. In the present study, we compared the characteristics of dependence on CD8 for stimulation of CTL precursors and antigen-specific cytolysis by CD8+ T cells from two TCR-Tg mice expressing respectively the TCR (Tg) from a "CD8-dependent" and from a "CD8-independent" CTL clone, which were both reactive against the H-2Kb alloantigen and originated from H-2k mice. The results indicate that the property of the Tg+CD8+ cells from H-2k TCR-Tg mice corresponds to that of the CTL clone of origin, demonstrating that it is linked to the nature of the TCR. Consistent with this property, Tg+CD4+ cells could also differentiate into H-2Kb-specific CTL when originating from the "CD8-independent", but not from the "CD8-dependent" Tg-TCR. The influence of the property of "CD8 dependence" on negative selection occurring in TCR-Tg H-2k/b mice was apparent at two levels: (i) in the thymus, the extent of deletion was much more pronounced for the "CD8-independent" TCR-Tg mice; (ii) in the periphery, Tg+(hi) cells with low to negative CD8 expression were present for the "CD8-dependent" Tg-TCR, whereas only Tg+CD4-CD8- cells with low surface Tg-TCR and CD3 expression were found for the "CD8-independent" Tg-TCR, indicating that Tg+CD4-CD8- cells are susceptible to tolerance induction involving TCR/CD3 surface down-modulation. Furthermore, different in vitro conditions led to H-2Kb-induced stimulation of Tg+CD4-CD8- cells to differentiate into CTL detected in an anti-TCR clonotypic monoclonal antibody redirected cytolysis assay. Culture in interleukin-2 of H-2k/b Tg+CD4-CD8- cells was sufficient to induced CTL activity in the "CD8-independent" model, whereas stimulation with cells which overexpressed H-2Kb was required in addition to interleukin-2 to induce CTL differentiation in the "CD8-dependent" model. These data suggest that peripheral Tg+CD4-CD8- cells present in a situation of in vivo tolerance to H-2Kb can still be triggered by H-2Kb with a sensitivity correlated with the degree of CD8 dependence.

Animals↗

Separation of thymic education from antigen presenting functions of major histocompatibility complex class I molecules.

Participation of transmembrane (TM) and glycosyl-phosphatidylinositol (GPI) anchored H-2Db molecules in antigen presentation and thymic selection events was investigated using transgenic mice. Both GPI-Db and TM-Db can efficiently present H-Y antigen, influenza and lymphocytic choriomeningitis virus (LCMV) peptides to primed cytotoxic, H-2Db-restricted T cells. Transgenic mice expressing GPI-Db, although unable to reject TM-Db skin grafts, nevertheless generate secondary CTL responses which can lyse TM-Db-bearing targets, indicating that GPI-Db mice fail to delete all TM-Db-reactive T cells. Furthermore, double-transgenic mice bearing GPI-Db and a T-cell receptor (TcR) for H-2Db+LCMV do not positively select receptor positive, CD8+CD4- T cells. This paradoxical behaviour of GPI-Db molecules suggests that the structural requirements for antigen presentation and thymic selection by class I molecules are different and may explain why GPI-linked class I molecules, such as Qa-2, do not appear to function as restriction elements in vivo.

Animals↗

Soluble bovine galactose-binding lectin. cDNA cloning reveals the complete amino acid sequence and an antigenic relationship with the major encephalitogenic domain of myelin basic protein.

A full-length cDNA clone for the 13-14 kDa soluble beta-galactoside-binding lectin was isolated from a bovine fibroblast cDNA library. The derived amino acid sequence shows eight differences from a preliminary partial amino acid sequence given previously for the bovine heart lectin. This observation led to a re-examination of the data and correction of the heart lectin protein sequence. Except for a possible polymorphism of the heart lectin at position 57, the fibroblast and heart lectin sequences are considered identical. The epitope recognized by two monoclonal anti-(bovine lectin) antibodies, 36/8 and 9/5, was identified as the tetrapeptide sequence W-G-A/S-E/D by the isolation of several different cDNA clones from a human intestine cDNA library. A similar tetrapeptide is present in all of the soluble beta-galactoside-binding animal lectins sequenced thus far. It is also found in myelin basic protein, which we show is antigenically cross-reactive with the lectin. In myelin basic protein the tetrapeptide is a part of the major domain previously shown to be responsible for the induction of experimental allergic encephalomyelitis.

Amino Acid Sequence↗

Conservation and diversity in the class I genes of the major histocompatibility complex: sequence analysis of a Tlab gene and comparison with a Tlac gene.

The thymus leukemia (TL) antigens, encoded by class I genes in the Tla subregion of the major histocompatibility complex (MHC), are cell surface molecules expressed on thymocytes of certain strains of mice and on certain T-cell leukemias. In order to study the fine structure and interrelationships of genes of the Tla subregion, a Tla-specific probe was isolated from the TL-encoding T13c gene of BALB/c mice (Tlac haplotype). The probe hybridized with two Tla genes in the Tlac haplotype (T13c and T3c) and with only one in the Tlab haplotype (T3b). Examination of this subset of Tla genes (T3b, T3c, and T13c) by restriction enzyme analysis and oligonucleotide hybridization studies confirmed that T3b is the allele of T3c and that T3c and T13c may have arisen by duplication. The T3b gene, while not transcribed in the tissues of the TL- strain C57BL6, was shown to be transcriptionally active in the TL-expressing leukemic cell line ERLD derived from that strain. The T3b gene was cloned and its complete DNA sequence was determined. These data permit complete comparison of two Tla-region genes, T3b and its homologue T13c, and allow us to conclude that these genes show extraordinarily high sequence conservation, in contrast to alleles of the H-2K- and H-2D-region genes. Comparison of T3b with other class I sequences in the H-2 and Qa subregions suggests that the T3-subset genes are the most divergent from other class I genes.

Alleles↗

The DNA sequence of the H-2kb gene: evidence for gene conversion as a mechanism for the generation of polymorphism in histocompatibilty antigens.

We have determined the DNA sequence of the H-2Kb gene of the C57B1/10 mouse. Comparison of this sequence with that of the allelic H-2Kd shows surprisingly that the exons have accumulated more mutations than their introns. Moreover, many of these changes in the exons are clustered in short regions or hot spots. Additional comparison of these sequences with the H-2Ld and H-2Db sequences shows that, in several cases, the altered sequence generated at the hot spot is identical to the corresponding region of a non-allelic H-2 gene. The clustered changes are responsible for 60% of the amino acid differences between the H-2Kb and H-2Kd genes and suggest that micro-gene conversion events occurring within the exons and involving only tens of nucleotides are an important mechanism for the generation of polymorphic differences between natural H-2 alleles.

5' Flanking Region↗

Partial amino-terminal sequences of the polyoma nonhistone proteins VP1, VP2, and VP3 synthesized in vitro.

The three polyoma virus capsid proteins VP1, VP2, and VP3 were synthesized in vitro in the presence of several radiolabeled amino acids and, after purification on sodium dodecyl sulfate-polyacrylamide gels, were subjected to sequential Edman degradation. The partial amino-terminal amino acid sequences obtained were compared with the sequence of amino acids predicted from the polyoma virus DNA sequencing (Arrand et al., J. Virol. 33:606--618, 1980). Together, these results showed that the 5' ends of the VP1, VP2, and VP3 coding sequences are located 1,217, 289, and 634 nucleotides, respectively, from the junction of HpaII restriction fragments 3 and 5.

Amino Acid Sequence↗

Initiation and processing in vitro of the primary translation products of guinea-pig caseins.

1. Guinea-pig caseins synthesized in a mRNA-directed wheat-germ cell-free protein-synthesizing system represent the primary translation products, even though they appear to be of lower molecular weight when analysed by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis in parallel with caseins isolated from guinea-pig milk. 2. Identification of the N-terminal dipeptide of the primary translational product of caseins A, B and C and alpha-lactalbumin showed that all shared a common sequence, which was identified as either Met-Arg or Met-Lys. 3. Procedures utilizing methionyl-tRNAfMet or methionyl-tRNAMet in the presence or absence of microsomal membranes during translation provide a rapid method of distinguishing between N-terminal processing of peptides synthesized in vitro and other post-translational modifications (glycosylation, phosphorylation), which also result in a change in mobility of peptides when analysed by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis. 4. The results demonstrate that guinea-pig caseins, in common with most other secretory proteins, are synthesized with transient N-terminal 'signal'-peptide extensions, which are cleaved during synthesis in the presence of microsomal membranes.

Animals↗

Large and small tumor antigens from simian virus 40 have identical amino termini mapping at 0.65 map units.

Large and small tumor (T)antigens of simian virus 40 were synthesized in vitro with L-cell extracts that had been treated by the method of Palmiter to prevent amino-terminal acetylation of nascent proteins. Partial amino-terminal amino acid sequences of both forms of T-antigen were determined and found to be identical. Methionine residues were located at positions 1 and 14, a lysine residue at position 3, and leucine residues at positions 5, 11, 13,16, 17, and 19. These amino acid sequence data match perfectly the amino acid sequence predicted from a sequence of nucleotides in the E strand of simian virus 40 DNA which begins near the junction between HindII/III fragments A and C at about 0.65 map units. This strongly suggests that the sequence coding for the amino terminus of both proteins is located at this position. Furthermore, the data are consistent with a model for the synthesis of both forms of T-antigen that predicts that (i) small T-antigen is coded for by a sequence of nucleotides from the 5' end of the early region and (ii) large T-antigen is coded for by nucleotide sequences from two noncontiguous regions of simian virus 40 DNA.

Amino Acid Sequence↗

Characterization of the amino-terminal tryptic peptide of simian virus 40 small-t and large-T antigens.

Simian virus 40 small-t and large-T antigen were synthesized in vitro and labeled with methionine donated by initiator tRNA. Tryptic peptide fingerprinting was used to identify the amino-terminal peptide of the two proteins. Similar fingerprint analysis of small-t and large-T made in vitro in the absence of acetyl coenzyme A showed that the mobility of the amino-terminal peptide was changed under these conditions and suggested that it is acetylated. These data establish that the amino-terminal methionine residue of simian virus 40 small-t and large-T results from an initiation event, not post-translational cleavage, and provides additional evidence that the amino terminus of both proteins is acetylated. The identification of the amino-terminal peptide provides a useful marker for further studies on different forms of T-antigen from cells infected with and transformed by simian virus 40 and related viruses.

Acetylation↗

Murine embryonal carcinoma cells express class I MHC-like antigens.

Previous work has concluded that murine embryonal carcinoma (EC) cells, the oncogenic stem cells of teratocarcinomas, do not express class-I, H-2K or D/L gene encoded products. Experiments using cell-mediated lysis, serological and molecular biological approaches show that EC cells do express some major histocompatibility complex (MHC) class I or class I-like molecules.

Animals↗

The expression of murine Qa region gene product(s) in L cell transformants.

The cosmid H3.5, containing genes mapping to the murine H-2 Qa region, was used to transfect L cells by the calcium phosphate co-precipitation method. The resultant transfected cells expressed a Qa-like determinant as detected by an immune serum raised against the transfectant cells and Qa specific monoclonal antibodies. Two-dimensional gel analysis revealed the expression of a class I-like heavy chain with a similar molecular mass to the Qa2 antigens of the positive strain B10 and B10.A but with a different isoelectric point. The cosmid H3.5 spans 40 kb of DNA and contains at least one complete Qa region gene which encodes the Qa-like determinant detected in this study.

Animals↗

Sensory disturbances associated with implant surgery.

PURPOSE: This paper presents a critical review of the literature on neurosensory disturbances associated with implant surgery. MATERIALS AND METHODS: The reviewed literature includes mainly retrospective implant studies and patients' surveys, as well as a few prospective psychophysical studies on sensory disorders following maxillofacial surgeries. RESULTS: The available data suggest that injury to the peripheral branches of the trigeminal nerve and subsequent sensory disturbances are potential complications following implant surgery. Cross-sectional studies suggest that gross tactile sensation was regained in the vast majority of patients. However, data on the spatial and temporal patterns of recovery of this and other somatic sensation such as fine touch, nociception, and temperature sense after implant surgery is still lacking. The prevalence of sensory disturbances depends on several factors: the site of implant placement, the type of surgical procedures adopted, the design of the studies, the sensitivity of the testing methods, the choice of the outcome measures, and the terminology used to describe sensory disturbances. Extreme variation in the reported prevalence of neurosensory disturbances (0% to 100%) suggest that these problems have not been adequately evaluated. CONCLUSION: Although sensory disturbances are transient in the majority of implant patients, their profound impact on the quality of life of the subjects affected and the possibility that they may persist clearly indicate that they should be identified and evaluated through prospective studies, using validated testing protocols and outcome measures.

Dental Implantation, Endosseous↗