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Biomedical subjects

G Thomas

Publications and source records attributed to G Thomas.

At least 397 records · Page 22Linked to original sources

Linkage analyses of chromosome 6 loci, including HLA, in familial aggregations of Crohn disease. G.E.T.A.I.D.

Segregation analyses of familial aggregations of Crohn disease have provided consistent results pointing to the involvement of a predisposing gene with a recessive mode of inheritance. Although extensively investigated, the role played by human leucocyte antigen (HLA) genes in this inflammatory bowel disease remains elusive and the major histocompatibility complex is a candidate region for the mapping of the Crohn disease susceptibility gene. A total of 25 families with multiple cases of Crohn disease was genotyped for HLA DRB1 and for 16 highly polymorphic loci evenly distributed on chromosome 6. The data were subjected to linkage analysis using the lod score method. Neither individual nor combined lod scores for any family and for any locus tested reached values suggesting linkage or genetic heterogeneity. The Crohn disease predisposing locus was excluded from the whole chromosome 6 with lod scores less than -2. It was excluded from the major histocompatibility complex and from 91% of the chromosome 6 genetic map with lod scores less than -4. The major recessive gene involved in genetic predisposition to Crohn disease does not reside on the major histocompatibility complex nor on any locus mapping to chromosome 6.

Belgium↗

Asbestos-induced nitric oxide production: synergistic effect with interferon-gamma.

This study has shown, for the first time, that in vitro exposure of rat AMs to either crocidolite (amphibole) or chrysotile (serpentine) asbestos fibers induces the synthesis not only of the O2*- anion, but also of the nitrogen radical, NO*. Furthermore, this asbestos-related effect is enhanced in the presence of interferon-gamma. NO* has been implicated in several pathologic reactions, such as inflammation and immune complex-mediated cell injury. Additionally, NO* may interact with secondary amines to generate nitrosamines, which are potent carcinogens. Our findings could represent a novel type of asbestos-mediated injury, and we propose that the injurious effects of asbestos might be mediated via the interaction of NO* with O2*-, with the generation of ONOO- and other potent toxic free radicals.

Animals↗

[Genetic anomalies of colorectal cancers. Their role in guiding therapeutic indications].

Progress in detecting genetic anomalies with proven prognostic value in colorectal cancers offers a means of selecting adjuvant therapy with the best probability of success. Several methods are currently used. With flow cytometry, a significant correlation between primary tumour ploidy and hepatic metastasis has been demonstrated. Caryotypes of tumour cells provides a means of exposing segmental or total chromosome loss and subsequent classification leads to a better understanding of tumour heterogeneity. New techniques in molecular biology are used to describe mutations. Monoclonal antibodies can then be developed against the epitopes involved. Based on these different methods clinicians and fundamentalists can analyse treatment results with more precision and thus adopt the most effective treatment protocol.

Chromosome Aberrations↗

Rapamycin selectively represses translation of the "polypyrimidine tract" mRNA family.

The immunosuppressant rapamycin blocks p70s6k/p85s6k activation and phosphorylation of 40S ribosomal protein S6 in Swiss 3T3 cells. The same net result is obtained when the macrolide is added 3 hr after serum stimulation. In stimulated cells p70s6k/p85s6k inactivation is achieved within minutes, whereas S6 dephosphorylation requires 1-2 hr, supporting the concept that S6 dephosphorylation results from kinase inactivation. In parallel, rapamycin treatment causes a small, but significant, reduction in the initiation rate of protein synthesis, as measured both by [35S]methionine incorporation into protein and by recruitment of 80S ribosomes into polysomes. More striking, analysis of individual mRNA transcripts revealed that rapamycin selectively suppresses the translation of a family of mRNAs that is characterized by a polypyrimidine tract immediately after their N7-methylguanosine cap, a motif that can act as a translational modulator. This family includes transcripts for ribosomal proteins, elongation factors of protein synthesis, and proteins of as-yet-unknown function. The results imply that (i) 40S ribosomes containing phosphorylated S6 may selectively recognize this motif or proteins which bind to it and (ii) rapamycin may inhibit cell growth by blocking S6 phosphorylation and, thus, translation of these mRNAs.

3T3 Cells↗

p53 mutations in human tumors with chimeric EWS/FLI-1 genes.

The Ewing family of tumors is recurrently characterized at the molecular level by the presence of a fusion transcript between the EWS gene on chromosome 22 and either the FLI-I or ERG genes, 2 closely related members of the Ets family of transcription factors. We have investigated 12 primary human tumors, 11 xenografts and 11 cell lines, which have been shown to express chimeric EWS transcripts in search of p53 mutations. Fragments of exons 5 to 8 and the corresponding consensus splice sequences were amplified by PCR and analyzed by denaturing gradient gel electrophoresis (DGGE). In 12 of 34 samples p53 mutations were detected (including 4 samples with multiple p53 mutations). The distribution of the mutations in the various samples was as follows: primary tumors 2/12; cell lines 5/11; xenografts 5/11. No correlation between the presence or absence of p53 mutations and the presence of a specific EWS chimeric transcript was observed. In addition, we observed that p53 mutations were almost always associated with a second hit (either deletion or second mutation) on the other p53 allele.

Animals↗

Nuclear localization of p85s6k: functional requirement for entry into S phase.

Immunolocalization of a newly described isoform of p70s6k, termed p85s6k, demonstrated a predominantly nuclear location in rat embryo fibroblasts (REF-52), a compartment in which growth factor-mediated phosphorylation of S6 has recently been reported. Microinjection of expression vectors encoding either p85s6k or a fusion protein containing only the putative nuclear localization motifs led to the exclusive accumulation of both products in the nucleus. Consistent with such a localization, microinjection of affinity-purified anti-p85s6k IgG into the nucleus, but not the cytoplasm, blocked serum-induced initiation of DNA synthesis. Co-injection into the nucleus of the anti-p85s6k IgG with activated p70s6k, which lacks the antigenic epitope, rescued the S phase block, arguing that the antibody exerts its effects through inhibiting p85s6k function. The results indicate a novel role for S6 phosphorylation in the nucleus distinct from that in the cytoplasm, a role essential for mitogenesis.

Amino Acid Sequence↗

Insulin-like growth factors counteract the effect of interleukin 1 beta on type II phospholipase A2 expression and arachidonic acid release by rabbit articular chondrocytes.

Interleukin 1 beta was found to stimulate arachidonic acid release, and the synthesis and secretion of type II phospholipase A2 by rabbit articular chondrocytes in vitro. Interleukin 1 beta had no effect on the level of cytosolic phospholipase A2 mRNA. Insulin-like growth factors, which help stabilize the cartilage matrix, reduced the effect of interleukin 1 beta on type II phospholipase A2 activity and mRNA level, and decreased the Interleukin 1 beta-stimulated arachidonic acid release to the basal values. This suggests that type II phospholipase A2 plays a key role in arachidonic acid release from rabbit articular chondrocytes and that insulin-like growth factors counteract the effect of interleukin 1 beta. They may therefore be considered as potential antiinflammatory agents.

Animals↗

Elongation factor-1 alpha mRNA is selectively translated following mitogenic stimulation.

Stimulation of quiescent Swiss 3T3 cells to proliferate leads to a selective 6-fold increase in the rate of translation of protein synthesis elongation factor eEF-1 alpha. Northern blot and solution hybridization protection studies show that levels of eEF-1 alpha mRNA remain constant following serum stimulation, demonstrating that eEF-1 alpha transcripts are not degraded following mitogenic stimulation and that the increase in eEF-1 alpha synthesis is accounted for by pre-existing mRNA. Localization of these transcripts in resting cells shows that they are largely distributed equally between stored mRNA protein particles and monosomes/disomes. Following serum addition, eEF-1 alpha transcripts present in mRNA protein particles redistribute to large polysomes rather than to monosomes and disomes as would be expected. The same is true for those transcripts present in monosomes and disomes. Salt-shift and translational runoff studies indicate that eEF-1 alpha transcripts sedimenting with monosomes and disomes in quiescent cells are associated with actively translating ribosomes. The results suggest that a specific transcript can move within polysome profile as a function of the affinity of translational apparatus for that transcript.

3T3 Cells↗

Intracellular trafficking and activation of the furin proprotein convertase: localization to the TGN and recycling from the cell surface.

Furin is a membrane-associated endoprotease that efficiently cleaves precursor proteins on the C-terminal side of the consensus sequence, Arg-X-Lys/Arg-Arg1, and has been proposed to catalyze these reactions in both exocytic and endocytic compartments. To study its biosynthesis and routing, a furin construct (designated fur/f) containing the FLAG epitope tag inserted on the C-terminal side of the enzyme's autoproteolytic maturation site was used. Introduction of the epitope tag had no effect on the expression, proteolytic maturation or activity of furin. Analysis of the localization of fur/f by immunofluorescence microscopy showed that its staining pattern largely overlapped with those of several Golgi-associated markers. Treatment of cells with brefeldin A caused the fur/f distribution to collapse around the microtubule organizing center, indicating that furin is concentrated in the trans-Golgi network (TGN). Immunoelectron microscopy showed unequivocally that furin resides in the TGN where it colocalized with TGN38. In agreement with its proposed activity in multiple compartments, antibody uptake studies showed that fur/f cycles between the cell surface and TGN. Furthermore, targeting to the TGN requires sequences in the cytoplasmic tail of the enzyme. Pulse-chase and immunofluorescence analyses demonstrated that proregion removal occurs in the endoplasmic reticulum and that cleavage may be required for exist from this compartment. Finally, we show that proregion removal is necessary but not sufficient for enzyme activation.

Amino Acid Sequence↗

Physical mapping of the NF2/meningioma region on human chromosome 22q12.

Loss of genetic information from chromosome 22 has been implicated in the development of neurofibromatosis type 2, meningioma, and several other neoplasia. Molecular studies indicate that genes within chromosomal band 22q12 may be involved in tumorigenesis. We have mapped 29 loci into 16 groups in this region, using pulsed-field gel electrophoresis, fluorescence in situ suppression hybridization, and somatic cell hybrid mapping. The region spans more than 5 Mb of genomic DNA and contains the genes for neurofibromatosis type 2 and meningioma. The order of loci presented here provides the framework for the fine mapping of this region using cosmids and yeast artificial chromosomes, and it facilitates the speedy cloning of novel genes from 22q12.

Cell Line, Transformed↗

Mitogenesis and protein synthesis: a role for ribosomal protein S6 phosphorylation?

It has been known for 20 years that the ribosomal protein S6 is rapidly phosphorylated when cells are stimulated to grow or divide. Furthermore, numerous studies have documented that there is a strong correlation between increases in S6 phosphorylation and protein synthesis, leading to the idea that S6 phosphorylation is involved in up-regulating translation. In an attempt to define a mechanism by which S6 phosphorylation exerts translational control, other studies have focused on characterizing the sites of phosphorylation of this protein and its location within the ribosome. Recent data show that S6 is a protein which may have diverse cellular functions and is essential for normal development, and that it may be involved in the translational regulation of a specific class of messages.

Amino Acid Sequence↗

Two distinct deleted regions on the short arm of chromosome 1 in neuroblastoma.

The short arm of chromosome 1p is the most frequently altered chromosome segment in neuroblastoma. The alterations, mainly deletions, are thought to be indicative of the presence of a tumor suppressor gene. To further refine the chromosome localization of this gene, we have studied paired constitutional and tumor DNA from a series of 60 patients with neuroblastoma at 2 minisatellite and 23 microsatellite loci dispersed along the short arm of chromosome 1. Twenty-two cases (37%) demonstrated loss of heterozygosity (LOH) at one or more loci on 1p. Surprisingly, the pattern of LOH enabled the identification of two distinct consensus regions of deletions. In agreement with previous reports, one region mapped to the distal short arm of chromosome 1. The other region was localized more proximally on 1p. Deletions observed in tumors involve either one or both of these regions. We show that the correlation between NMYC amplification and 1p deletion is limited to the deletions which involve the proximal region either alone or together with the distal region. These results suggest that two tumor suppressor genes on 1p might be involved in the development of neuroblastoma. Finally, we show that somatic mutations at microsatellite loci, frequently observed in other types of cancer, are rare events in neuroblastoma.

Chromosome Deletion↗

Analysis of mutations in the SCH gene in schwannomas.

Schwannomas are benign tumors of cranial, spinal, and other nerve sheaths that develop sporadically or are inherited as part of neurofibromatosis type 2 (NF2). The NF2 gene (SCH) on chromosome 22 has recently been identified and shown to be inactivated by mutation and allele loss in some schwannomas. However, only limited regions in the SCH coding region were examined for mutations. We have extended these studies by screening virtually all coding sequences of the SCH gene (95% coverage) and adjacent splice site sequences for the presence of mutations in 48 schwannomas. All tumors (34 vestibular schwannomas and 14 schwannomas of other locations) were additionally characterized for allele loss on chromosome 22. By PCR-DGGE screening of the 16 known exons of the SCH gene, 22 mutations were found. Most of these give rise to a premature stop codon and are expected to result in the synthesis of a truncated gene product (schwannomin). Although there was no apparent hotspot for mutations, 16 of the 22 mutations occurred in the first eight exons or adjacent splice site sequences of the SCH gene. In several vestibular as well as other schwannomas loss of one SCH allele and mutational inactivation of the second allele were identified in the same tumor. Our data indicate that the SCH gene is implicated in the development of schwannomas of all locations in the nervous system.

Alleles↗

Precise localization on chromosome 12 of the ATF-1 gene by fluorescence in situ hybridization.

The ATF-1 gene encodes for a transcription factor normally regulated by cAMP (Hai et al. 1989, Yoshimura et al. 1990). Recently, it has been shown to be involved in the recurrent t(12;22) translocation observed in soft tissue malignant melanoma, in a fusion gene with the EWS gene (Zucman et al. 1993). We report here on its precise localization on chromosome 12 by fluorescence in situ hybridization.

Activating Transcription Factor 1↗

Investigation of the intestinal spherocrystals of different Cephalobaenida (Pentastomida).

The midgut cells of cephalobaenid pentastomids contain spherocrystals varying in size and appearance between the genera. Iron was detected in the vicinity of the crystals in all three genera, being considerably fainter in Reighardia sternae than in the other species. Ultrastructurally a distinct lamination of the spherocrystals was evident, being faint in R. sternae but clearly expressed in Raillietiella hemidactyli and Cephalobaena tetrapoda. According to the species, their diameter ranged from 1.3 to 6.25 microns. The size and number of the crystals were highest in R. hemidactyli and lowest in R. sternae. The inclusions were formed in the endoplasmic reticulum and migrated toward the cellular apex, accumulating there and being expelled into the midgut lumen. As determined by energy-dispersive X-ray analysis, calcium turned out to be the main component of the crystals. Furthermore, small amounts of chlorine and iron could be traced in the crystals. The relevance of the crystals is regarded as a kind of storage excretion such as that present in many other arthropods.

Animals↗

Refined mapping of eight cosmid markers on human chromosome 22.

Eight cosmid clones were regionally assigned to small subregions of chromosome 22 by hybridization with a total of 22 somatic cell hybrids. One cosmid was localized to the proximal part of 22q which contained the region commonly deleted in the DiGeorge syndrome. Seven cosmids showing restriction fragment length polymorphisms were localized to the telomeric region distal to the MB locus, which was reported to be frequently deleted in sporadic meningioma. These cosmids, when finely mapped and ordered, are considered useful for the identification of genetic alterations on this chromosome arm.

Chromosome Mapping↗

Single base pair germ-line deletion in the p53 gene in a cancer predisposed family.

A family with an aggregation of adrenocortical carcinoma, rhabdomyosarcoma, osteosarcoma, and early onset breast cancer was referred to our laboratory. Because this aggregation was reminiscent of Li-Fraumeni syndrome, germ-line mutation of the p53 tumor suppressor gene was sought in the DNA of two affected members. The highly conserved regions spanning exons 5 to 8 of the p53 gene were screened by a previously validated denaturing gradient gel electrophoresis method. A single base pair deletion at codon 215 was detected in constitutional DNA of the two patients, and in the DNA extracted from an adrenocortical carcinoma tumor specimen of the propositus. This deletion is predicted to lead to the formation of a truncated p53 protein, a relatively rare event in Li-Fraumeni families. The spectrum of tumors observed in this family does not differ markedly from the spectrum observed in families with missense p53 mutations.

Adult↗