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Biomedical subjects

A Vincent

Publications and source records attributed to A Vincent.

At least 217 records · Page 12Linked to original sources

The three dominant female-sterile mutations of the Drosophila ovo gene are point mutations that create new translation-initiator AUG codons.

The Drosophila ovo gene, which encodes a putative transcription factor (Ovo) with TFIIIA-like zinc fingers, is required for female germline survival and proper oogenesis. Three dominant female-sterile ovoD mutations cause ovarian abnormalities that define an allelic series, with ovoD1 displaying the stronger phenotype and ovoD3 the weaker. We report here that all three ovoD mutations are point mutations that create new in-frame methionine codons in the 5' part of ovo. There are two types of overlapping ovo transcription units, ovo alpha and ovo beta. By using various ovo-lacZ reporter genes, we determined that the long Ovo isoforms starting at methionine M1, present in transcripts ovo alpha, are expressed at low levels only in mature oocytes. Short Ovo isoforms are translated from methionine M373, the first in-frame start codon present in transcript ovo beta, and correspond to the activity defined by recessive loss of function ovo mutations. The new AUGs created in ovoD mutations all are located upstream of the M373 initiation site. Our results support the hypothesis that they can substitute for M373 as translation starts and initiate the synthesis of Ovo proteins that have extra amino acids at their N termini. We propose that premature expression of long Ovo protein isoforms occurs in ovoD mutants and interferes with wild-type Ovo function in controlling female germline differentiation.

Amino Acid Sequence↗

Integrin receptors and hairy cell leukaemia.

The ability of a cell to recognize and specifically localise within an appropriate tissue environment is essential to the proliferation and survival of that cell. The integrin family of cell-surface adhesion-receptors are essential to such tissue localisation, allowing a migrating cell to specifically recognise, localise within-, and respond to- the cellular or extracellular matrix ligands that characterise a given tissue. We have investigated how the expression and activity of integrin receptors underlies the consistent and unusual tissue distribution of the malignant B lymphocytes of hairy cell leukaemia (HCL). In this report we review our published work in this area. Our findings are then discussed within the context of current knowledge of integrin receptors and their ligands, and in relation to the clinical features of HCL.

Humans↗

Functional and non-functional isoforms of the human muscle acetylcholine receptor.

1. The properties of a recently identified isoform of the human muscle nicotinic acetylcholine receptor (AChR) alpha subunit (alpha +), which in muscle is expressed at similar levels to the alpha subunit, were investigated by both electrophysiological and biochemical approaches following expression in Xenopus laevis oocytes. The single-channel properties of adult (alpha 2 beta delta epsilon) and fetal (alpha 2 beta delta gamma) forms of the human AChR were also investigated. 2. The mean burst duration of adult channels (4.1 +/- 0.3 ms, mean +/- S.E.M., n = 5) is half that of fetal channels (7.9 +/- 0.6 ms, n = 4), while the single-channel conductance is larger (62.2 +/- 0.8 and 37.9 +/- 1.6 pS for adult and fetal channels, respectively), comparable to the developmental changes in single-channel properties observed for other mammalian species. 3. In contrast to the alpha isoform, the alpha + subunit does not bind 125I-labelled alpha-bungarotoxin or monoclonal antibodies directed against the AChR 'main immunogenic region' (MIR), illustrating why the alpha + subunit was first detected through screening of cDNA libraries. 4. By using site-directed mutagenesis to produce subunits that conferred different single-channel conductances on the AChR, we demonstrate that the alpha + isoform is not integrated into functional AChRs. 5. The mutagenesis experiments also revealed that the two alpha subunits within an AChR pentamer are not equivalent within the pore lining region.

Animals↗

Peptide-selected T cell lines from myasthenia gravis patients and controls recognize epitopes that are not processed from whole acetylcholine receptor.

To study pathogenic T helper cells in myasthenia gravis (MG) reacting against the acetylcholine receptor (AChR), we have previously selected five CD4+ T cell lines/clones from MG patients (or healthy controls) against full-length recombinant human AChR alpha subunit (alpha 1-437); these can all recognize AChR solubilized from human muscle. Recently, T cells selected with pooled AChR subunit synthetic peptides have shown greater heterogeneity than above. Hoping to validate that, we have characterized three MG and six control T cell lines selected with pooled peptides (averaging 33 residues long) covering the alpha subunit sequence; recurring responses to three particular peptides each showed preferred HLA class II restrictions--p75-115/DR4, p138-167/DR4, and p309-344/DR3 (or DR52a). However, none of three lines from MG patients recognized p138-167--even one from a previous responder to this epitope in full-length alpha 1-437; otherwise they resembled those from controls. Moreover, no peptide-selected line responded significantly to whole AChR, alpha 1-437, or even to shorter polypeptides sharing one terminus with the peptide, suggesting specificity for epitopes not naturally processed by APCs from blood. Of 20 sublines maintained with individual peptides, at least 10 responded to independently synthesized overlapping sequences, but four others depended on contaminants in the original peptides. A single line did recognize one longer polypeptide, but only after tryptic digestion; the processing of this cryptic epitope was evidently the limiting factor here rather than its concentration or the T cell sensitivity. Therefore, while synthetic peptides are essential for mapping epitopes, assessment of the pathogenic MG T cell repertoire requires full-length Ag processed naturally.

Amino Acid Sequence↗

Arthrogryposis multiplex congenita with maternal autoantibodies specific for a fetal antigen.

Fetal arthrogryposis multiplex congenita (AMC) is characterised by non-progressive multiple joint contractures, which may result in fetal death, and is heterogeneous in origin. It can associate with maternal myasthenia gravis and autoantibodies to muscle acetylcholine receptor (AChR). We found maternal antibodies that selectively inhibit the fetal form of the AChR in a mother who herself had no features of myasthenia gravis. Maternal autoantibodies specific for fetal antigens could be an unrecognised cause of other congenital disorders.

Adult↗

Sequence analysis of anti-AChR antibodies in experimental autoimmune myasthenia gravis.

Autoantibodies directed against the acetylcholine receptor (AChR) lead to AChR loss and muscular weakness in myasthenia gravis and its experimental model, experimental autoimmune myasthenia gravis (EAMG). The role of different anti-AChR sequences and specificities in the pathogenesis of EAMG was investigated by sequencing a panel of 19 mouse mAbs, previously elicited against Torpedo and human AChR, that bound to at least four different epitope regions. The pathogenicity of eight mAbs that cross-reacted with mouse or rat AChR was tested. EAMG was induced by four mAbs against the main immunogenic region (MIR). Sequence analysis of different anti-AChR specificities showed a large diversity of H and L chain sequences. Highly homologous H chain sequences (> 90%) were found among some mAbs with similar specificities, whereas highly homologous L chain sequences were not restricted to Abs of a particular fine specificity. Sharing of a highly homologous VH gene or an identical DJH region was observed among three of four pathogenic anti-MIR mAbs, obtained by immunization with AChRs from different species. The VH genes of these three pathogenic mAbs were closely related to PC7183 germline genes indicating that some pathogenic Abs may already be present in the germline repertoire.

Amino Acid Sequence↗

Separate cis-regulatory sequences control expression of serendipity beta and janus A, two immediately adjacent Drosophila genes.

The genes janus (jan) A and B, and serendipity (sry) beta and delta are two pairs of duplicated genes that are adjacent to each other on the third chromosome of Drosophila melanogaster. The jan A and sry beta genes are expressed throughout development in both males and females. They are transcribed in opposite orientations from start sites separated by only 173 bp of DNA. We report here the complete sequence of the jan A and B genes in Drosophila pseudoobscura, a species distantly related to D. melanogaster in which the overall organization of the sry beta, jan A and jan B genes is identical to that in D. melanogaster. Sequence comparison of the jan A-sry beta intergenic region and 5'-transcribed domain of each gene between D. melanogaster and D. pseudoobscura reveals short stretches of conserved sequences that may correspond to cis-acting regulator elements. In order to test the possibility that some cis-acting regulatory sequences are shared by the two genes, we carried out a deletion analysis of the jan A/sry beta intergenic region in D. melanogaster using transgenic lacZ fusion genes. Our results show that sry beta cis-acting sequences are located in the (-117; +137) 5'-region of the gene and that jan A cis-regulatory sequences are included in the (-56; +151) 5'-domain of this gene. Together these data indicate that in spite of the physical proximity of the jan A and sry beta genes, their transcription is regulated by separate cis-acting sequences.

Amino Acid Sequence↗

Enzymatic activities of mitochondrial respiratory complexes from children muscular biopsies. Age-related evolutions.

Measurements were performed to determine maximum enzymatic activities of citrate synthetase and respiratory complexes I, III, and IV of mitochondria obtained from muscular biopsies in control children. The significant number of determinations carried out (43 different biopsies in controls aged 3.8 to 19.1 years) permits the formulation of a table of statistically validated reference values for these activities. These values are independent of sex of the controls, and of the studied muscles. Citrate synthetase activity, which remains stable in this age range, thus constitutes a good internal indicator of mitochondrial activity. Complexes I and III manifest activity which does not vary with age. On the other hand, cytochrome oxidase activity shows a highly significant decrease in this age group. This decrease may be correlated with qualitative changes (subunits VIa and VIIa) in composition of this complex.

Adolescent↗

Multifocal motor neuropathy human sera block distal motor nerve conduction in mice.

Multifocal motor neuropathy (MMN) is associated with serum autoantibodies to gangliosides, but their pathogenic role is uncertain. We have used a novel approach to study the effects of serum and plasma from 8 patients with this syndrome, 6 of whom were anti-GM1 positive. The nerve stimulus required to evoke muscle contraction and endplate potentials (EPPs) was measured in the mouse phrenic nerve-diaphragm preparation during 4 to 6 hours of direct application (plasma at 1:1 or serum 1:2 dilution) and following intraperitoneal injection of plasma (1 ml/day) for 1 to 5 days ("passive transfer"). Direct application of MMN serum or plasma produced a progressive increase in stimulus threshold, followed by complete block of nerve-evoked muscle contraction in 3 cases, and an associated decline to about 50% of the EPP amplitude followed by sudden loss of EPPs. These effects were complement independent. Even with complete block of nerve-evoked EPPs, miniature EPP (MEPP) frequency could be increased by raising external K+ to depolarize the nerve terminal directly. Passive transfer of 1 ml of MMN plasma (n = 5) for 3 days caused similar but less marked changes. These results demonstrate that serum factors in MMN can block nerve conduction at distal motor nerves.

Adult↗

Acquired neuromyotonia: evidence for autoantibodies directed against K+ channels of peripheral nerves.

Acquired neuromyotonia is characterized by hyperexcitability of motor nerves leading to muscle twitching, cramps, and weakness. The symptoms may improve following plasma exchange, and injection of immunoglobulin G (IgG) from 1 neuromyotonia patient into mice increased the resistance of neuromuscular transmission to d-tubocurarine. Here we examine nerves and muscle in vitro from mice injected with plasma or purified IgG from 6 neuromyotonia patients or pooled control subjects, and cultured dorsal root ganglion cells after treatment with IgG. Three of the patients had antibodies against human voltage-gated potassium channels labeled with 125I-alpha-dendrotoxin. The quantal release of acetylcholine (quantal content) at end-plates in diaphragms from mice treated with neuromyotonia IgG preparations was increased by 21% relative to control values (p = 0.0053). With one IgG preparation, the duration of the superficial peroneal nerve compound action currents was increased by 93%. The dorsal root ganglion cells treated with this IgG showed a marked increase in repetitive firing of action potentials. All effects were similar to those obtained with aminopyridines. We conclude that at least some patients with acquired neuromyotonia have antibodies directed against aminopyridine- or alpha-dendrotoxin-sensitive K+ channels in motor and sensory neurons, and they are likely to be implicated in the disease process.

4-Aminopyridine↗

Differences in processing of an autoantigen by DR4:Dw4.2 and DR4:Dw14.2 antigen-presenting cells.

Variations in antigen processing can influence class II-restricted T cell responses. We now report a highly significant difference (p < 0.001) between the ability of antigen-presenting cells from three HLA-DR4:Dw14.2 (Arg71) and six DR4:Dw4.2 (Lys71) individuals to present recombinant or native acetylcholine receptor antigens to a myasthenia gravis T cell clone. The difference was greatest with longer antigens, and not seen with short synthetic peptides, suggesting that it may result from a difference in antigen processing between the two alleles. The results were not related to the presence of myasthenia gravis or of steroid therapy. They could, however, be of relevance in rheumatoid arthritis where particularly severe disease associates with Dw4.2/Dw14.2 heterozygosity.

Antigen-Presenting Cells↗

Visual processing of looming and time to contact throughout the visual field.

We measured discrimination threshold for time to contact with a simulated approaching object at 20 locations between 0 and 32 deg eccentricity in the left, right, upper, and lower visual fields. We also measured discrimination threshold for rate of expansion at the same 20 locations. At 0 deg eccentricity, discrimination of trial-to-trial variations in time to contact was virtually unaffected by simultaneous trial-to-trial variations of both rate of expansion and starting size, discrimination of trial-to-trial variations in rate of expansion was virtually unaffected by simultaneous trial-to-trial variations of both time to contact and starting size, and discrimination of trial-to-trial variations in starting size was virtually unaffected by simultaneous trial-to-trial variations of both time to contact and rate of expansion. We conclude that, in foveal vision, time to contact, rate of expansion and size can be processed simultaneously, independently and in parallel. Our main finding was that this independence progressively decreased as eccentricity increased. For example, in peripheral, but not in foveal vision, variations in rate of expansion produced illusory variations in time to contact. A secondary finding was that the effect of eccentricity on discrimination threshold for the task-relevant variable (whether time to contact or rate of expansion) was considerably less than the effect of eccentricity on visual acuity and on several other aspects of visual performance. We suggest that visual processing of time to contact is developed by exposure to optic flow patterns created by self-locomotion.

Adult↗

Antigen presentation by thymoma epithelial cells from myasthenia gravis patients to potentially pathogenic T cells.

Thymomas associate strongly with myasthenia gravis (MG). We now show that cultured thymoma epithelial cells can present synthetic acetylcholine receptor (AChR) peptides to HLA-sharing responder T cell lines/clones nearly as efficiently as blood mononuclear cells. Responses depended strictly on the specific antigen added. Processing of longer recombinant AChR polypeptides was clearly less efficient than by blood mononuclear cells, and was selectively abolished by preculture with chloroquine. The T cell responses depended on the presence of LFA-3 on the thymoma cells. This study demonstrates that thymoma epithelial cells have the capacity to stimulate T cells and perhaps, therefore, to autosensitize against AChR in vivo.

Antigen-Presenting Cells↗

Evolutionarily conserved positive and negative cis-acting elements control the blastoderm-specific expression of the Drosophila serendipity alpha cellularisation gene.

The serendipity alpha (sry alpha) cellularisation gene is only transcribed at the blastoderm stage, when this morphogenetic event takes place. We show that a 95 bp sry alpha upstream region is sufficient for blastoderm-specific expression of a lacZ reporter gene. This region encompasses four nucleotide motifs (I-IV, 5' to 3') conserved at similar relative positions in several Drosophila species. Removal of motif I leads to ectopic expression of lacZ in precursor cells of the PNS. Deletion of motif IV decreases the level of lacZ transcripts and modifies their banded pattern of accumulation late in cycle 14, whereas deletion of motifs II and III abolishes the sry alpha promoter activity. Motif III includes a consensus recognition site for b-HLH proteins. A point mutation in this E-box both severely reduces lacZ expression at blastoderm and prevents its ectopic expression in the PNS upon deleting motif I. These two effects depend upon da+ activity, suggesting that daughterless may positively control sry alpha transcription.

Animals↗

ovo, a Drosophila gene required for ovarian development, is specifically expressed in the germline and shares most of its coding sequences with shavenbaby, a gene involved in embryo patterning.

Genetic analyses of Drosophila oogenesis have revealed the central role of ovo, a gene required for differentiation of the female germline. A number of recessive ovo mutations also affect the shavenbaby (svb) function required for late embryo patterning, suggesting a tight structural link between ovo and svb. By using various genomic probes for in situ hybridization to wild type and mutant embryos, we show that ovo indeed shares most of its coding sequences with svb. svb expression is detected early in the presumptive head region and later in each segment. It requires control elements located upstream of the ovo genomic region. ovo expresses abundant maternal RNAs which are uniformly distributed in early cleavage embryos. A fraction that lacks an alternative ovo-specific protein coding region (ORF 2b) is detected in pole cells. Expression of an ovo-specific lacZ reporter gene (ovoB) shows that ovo encodes a nuclear protein present in the germline of both sexes. Zygotic ovoB expression is first detected in embryos at around stage 17 and persists up to the adult stage. Our data show that the germline specific expression of ovo in females correlates with its function in oogenesis. This expression, however, is also observed in males in which ovo is not required.

Amino Acid Sequence↗