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J Bodmer

Publications and source records attributed to J Bodmer.

At least 19 recordsLinked to original sources

IMGT, the international ImMunoGeneTics database.

IMGT, the international ImMunoGeneTics database (http://imgt.cines. fr:8104 ), is a high-quality integrated database specialising in Immunoglobulins (Ig), T cell Receptors (TcR) and Major Histocompatibility Complex (MHC) molecules of all vertebrate species, created in 1989 by Marie-Paule Lefranc, Université Montpellier II, CNRS, Montpellier, France (lefranc@ligm.igh.cnrs.fr ). At present, IMGT includes two databases: IMGT/LIGM-DB, a comprehensive database of Ig and TcR from human and other vertebrates, with translation for fully annotated sequences, and IMGT/HLA-DB, a database of the human MHC referred to as HLA (Human Leucocyte Antigens). The IMGT server provides a common access to expertized genomic, proteomic, structural and polymorphic data of Ig and TcR molecules of all vertebrates. By its high quality and its easy data distribution, IMGT has important implications in medical research (repertoire in autoimmune diseases, AIDS, leukemias, lymphomas), therapeutic approaches (antibody engineering), genome diversity and genome evolution studies. IMGT is freely available at http://imgt.cines.fr:8104. The IMGT Index is provided at the IMGT Marie-Paule page (http://imgt.cines.fr:8104/textes/IMGTindex.html).

Amino Acid Sequence↗

IMGT, the international ImMunoGeneTics database.

IMGT, the international ImMunoGeneTics database (http://imgt.cnusc. fr:8104), is a high-quality integrated database specialising in Immunoglobulins (Ig), T cell Receptors (TcR) and Major Histocompatibility Complex (MHC) molecules of all vertebrate species, created in 1989 by Marie-Paule Lefranc, Université Montpellier II, CNRS, Montpellier, France (lefranc@ligm.igh.cnrs.fr). IMGT comprises three databases: LIGM-DB, a comprehensive database of Ig and TcR, MHC/HLA-DB, and PRIMER-DB (the last two in development); a tool, IMGT/DNAPLOT, developed for sequence analysis and alignments; and expertised data based on the IMGT scientific chart, the IMGT repertoire. By its high quality and its easy data distribution, IMGT has important implications in medical research (repertoire in autoimmune diseases, AIDS, leukemias, lymphomas), therapeutic approaches (antibody engineering), genome diversity and genome evolution studies. IMGT is freely available at http://imgt.cnusc. fr:8104

Animals↗

IMGT, the International ImMunoGeneTics database.

IMGT, the international ImMunoGeneTics database, is an integrated database specialising in Immunoglobulins (Ig), T cell Receptors (TcR) and Major Histocompatibility Complex (MHC) of all vertebrate species, created by Marie-Paule Lefranc, CNRS, Montpellier II University, Montpellier, France (lefranc@ligm.crbm.cnrs-mop.fr). IMGT includes three databases: LIGM-DB (for Ig and TcR), MHC/HLA-DB and PRIMER-DB (the last two in development). IMGT comprises expertly annotated sequences and alignment tables. LIGM-DB contains more than 23 000 Immunoglobulin and T cell Receptor sequences from 78 species. MHC/HLA-DB contains Class I and Class II Human Leucocyte Antigen alignment tables. An IMGT tool, DNAPLOT, developed for Ig, TcR and MHC sequence alignments, is also available. IMGT works in close collaboration with the EMBL database. IMGT goals are to establish a common data access to all immunogenetics data, including nucleotide and protein sequences, oligonucleotide primers, gene maps and other genetic data of Ig, TcR and MHC molecules, and to provide a graphical user friendly data access. IMGT has important implications in medical research (repertoire in autoimmune diseases, AIDS, leukemias, lymphomas), therapeutical approaches (antibody engineering), genome diversity and genome evolution studies. IMGT is freely available at http://imgt.cnusc.fr:8104

Amino Acid Sequence↗

IMGT, the international ImMunoGeneTics database: a new design for immunogenetics data access.

IMGT, the international ImMunoGeneTics database is an integrated database specializing in Immunoglobulins (Ig), T-cell receptors (TcR) and MHC molecules of all vertebrate species, created by Marie-Paule Lefranc, University of Montpellier, CNRS, Montpellier, France (Nucleic Acids Research, Database issue, Vol 26, January 1998). IMGT includes three databases: LIGM-DB (for Ig and TcR), MHC/HLA-DB and IMGT/PRIMER-DB (an Ig, TcR and MHC-related primer database), the last two in development. IMGT comprises expertly annotated sequences and alignment tables. LIGM-DB contains more than 24.000 Immunoglobulin and T cell Receptor sequences from 81 different species. MHC/HLA-DB contains class I and class II Human Leucocyte Antigen alignment tables. An IMGT tool, DNAPLOT, developed for Ig, TcR and MHC sequence analysis, is also available. IMGT goals are to establish a common data access to all immunogenetics data, including nucleotide and protein sequences, oligonucleotide primers, gene maps and other genetic data of Ig, TcR and MHC molecules, from all species, and to provide a graphical user friendly data access. IMGT has important implications in medical research (repertoire in autoimmune diseases, AIDS, leukemias, lymphomas), therapeutical approaches (antibody engineering), genome diversity and genome evolution studies. In this paper, we describe our approach for the data modelisation, the automation of the annotation procedure and control of data quality in LIGM-DB database. IMGT is freely available on the CNUSC WWW server at Montpellier: http://imgt.cnusc.fr: 8104 (contact: Denys.Chaume@cnusc.fr) and on the EBI servers: http://www.ebi.ac.uk/imgt (contact: malik@ebi.ac.uk) and ftp.ebi.ac.uk/pub/databases/imgt. LIGM-DB users are encouraged to report errors or suggestions to giudi@ligm.crbm.cnrs-mop.fr. IMGT initiator and coordinator: Marie-Paule Lefranc, lefranc@ligm.crbm.cnrs-mop.fr. (fax: +33(0)467040231).

Amino Acid Sequence↗

IMGT, the international ImMunoGeneTics database.

IMGT, the international ImMunoGeneTics database, is an integrated database specializing in immunoglobulins, T-cell receptors (TcR) and major histocompatibility complex (MHC) of all vertebrate species, initiated and co-ordinated by Marie-Paule Lefranc, CNRS, Montpellier II University, Montpellier, France (lefranc@ligm.crbm.cnrs-mop.fr). IMGT includes two databases: LIGM-DB (for immunoglobulins and TcR) and MHC/HLA-DB. IMGT comprises expertly annotated sequences and alignment tables. LIGM-DB contains more than 19 000 immunoglobulin and TcR sequences from 78 species. MHC/HLA-DB contains class I and class II human leukocyte antigen alignment tables. An IMGT tool, DNAPLOT, developed for immunoglobulins, TcR and MHC sequence alignments, is also available. IMGT works in close collaboration with the EMBL database. IMGT goals are to establish a common data access to all immunogenetics data, including sequences, oligonucleotide primers, gene maps and other genetic data of immunoglobulins, TcR and MHC molecules, and to provide a graphical user-friendly data access. IMGT will have important implications in medical research (repertoire in autoimmune diseases, AIDS, leukemias, lymphomas), therapeutical approaches (antibody engineering), genome diversity and genome evolution studies. IMGT can be accessed at http://imgt.cnusc.fr:8104 and http://www.ebi.ac.uk/IMGT

Amino Acid Sequence↗

Histamine and thrombin modulate endothelial focal adhesion through centripetal and centrifugal forces.

We examined the contribution of actin-myosin contraction to the modulation of human umbilical vein endothelial cell focal adhesion caused by histamine and thrombin. Focal adhesion was measured as the electrical resistance across a cultured monolayer grown on a microelectrode. Actin-myosin contraction was measured as isometric tension of cultured monolayers grown on a collagen gel. Histamine immediately decreased electrical resistance but returned to basal levels within 3-5 min. Histamine did not increase isometric tension. Thrombin also immediately decreased electrical resistance, but, however, resistance did not return to basal levels for 40-60 min. Thrombin also increased isometric tension, ML-7, an inhibitor of myosin light chain kinase, prevented increases in myosin light chain phosphorylation and increases in tension development in cells exposed to thrombin. ML-7 did not prevent a decline in electrical resistance in cells exposed to thrombin. Instead, ML-7 restored the electrical resistance to basal levels in a shorter period of time (20 min) than cells exposed to thrombin alone. Also, histamine subsequently increased electrical resistance to above basal levels, and thrombin initiated an increase in resistance during the time of peak tension development. Hence, histamine and thrombin modulate endothelial cell focal adhesion through centripetal and centrifugal forces.

Biophysical Phenomena↗

World distribution of HLA alleles and implications for disease.

The high level of polymorphism of the HLA system makes it useful for the study of diversity in different populations. However, its relationships with disease susceptibility, resistance and progression impose selective pressure on population frequencies that must be taken into consideration. These relationships allow useful studies on the genetic susceptibility to disease, which can be studied further and may provide us with another tool with which to examine the history of populations.

Alleles↗

Mechanisms of loss of HLA class I expression on colorectal tumor cells.

For several years this laboratory has studied the expression of HLA class I on established colorectal tumor cell lines and on fresh tumors. We review here the mechanisms by which colorectal tumor cells may lose surface expression of HLA class I molecules. Several independent mechanisms have been identified, including loss or mutations in beta 2-microglobulin genes, loss of HLA heavy chain genes, selective lack of expression of HLA alleles, and regulatory defects in HLA expression including loss of expression of the peptide transporters associated with antigen processing (TAP). The data suggest that colorectal tumor cells may evade tumor specific, HLA restricted immune attack by loss of HLA class I expression through a number of mechanisms.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

HLA antigen frequencies in renal transplant recipients and non-immunosuppressed patients with non-melanoma skin cancer.

An increased frequency of human leukocyte antigen (HLA)-DR1 was found in 49 non-immunosuppressed patients with non-melanoma skin cancer (NMSC), being highest in patients under the age of 60 with multiple squamous cell carcinomas (SCC). Of 266 patients receiving long-term immunosuppression following renal transplantation 46 (17%) were found to have NMSC. No increase in HLA-DR1 was found in renal transplant recipients (RTR) with non-melanoma skin cancer (RTR+C) when compared with matched renal transplant recipients without skin cancer (matched RTR-C), or when compared with healthy controls. There was an increased frequency of DQw2 in RTR+C, most pronounced in RTR with SCC (61.9% compared with 18.75% in matched RTR-C), giving a relative risk of 13.98. We found statistically significant differences in the frequency of a number of HLA antigens on comparing RTR+C with healthy controls, but none of these differences were found when we compared RTR+C against matched RTR-C.

Antigens, Neoplasm↗

Molecular analysis of the HLA-DR5 haplotype.

A panel of eleven HLA-DR5 homozygous lymphoblastoid cell lines was investigated for structural heterogeneity on the product level. HLA class II antigens were isolated by immunoprecipitation with different anti-class II monoclonal antibodies and separated by two-dimensional (2-D) gel electrophoresis. As a result, three distinct DRB1, one commonly expressed DRB3, and two distinct DQ gene products could be identified that combined to four different haplotypes associated with HLA-DR5. A hitherto serologically undetected split of HLA-DRw11 was presented by three cell lines. HLA-DRw11 and HLA-DRw12 were found to be related allospecifities that differ only in their DRB1 locus products, but are closely associated with the supertypic DRB3 allele HLA-DRw52b and with HLA-DQw7. The DRB3 alleles HLA-DRw52a and DRw52c were not detected in our cell line panel, indicating that these supertypic determinants are in negative linkage disequilibrium with HLA-DR5. Our data suggest that intra HLA-DR/DQ crossing-over events contribute to the development of the HLA class II polymorphism. Evidence is presented that the T cell defined HLA-D allospecifities are commonly determined by DRB1 and DQ gene products.

Amino Acids↗

HLA-D region alpha-chain monoclonal antibodies: cross-reaction between an anti-DP alpha-chain antibody and smooth muscle.

Two monoclonal antibodies, Tal 3C3 and Tal 1B5, raised against purified plasma membrane extract of the Bristol 8 B lymphoblastoid cell line and previously shown to recognize epitopes on denatured HLA-D alpha-chains revealed several differences in staining patterns when screened by immunocytochemical techniques on pre-fixed paraffin-embedded sections of human tissues. Although Tal 3C3 staining was weaker and more restricted than Tal 1B5 on immunoregulatory cells expected to express class II antigens, this monoclonal antibody showed additional strong activity on normal smooth muscle. Biochemical studies show that whereas Tal 1B5 reacts with DR alpha-chains, Tal 3C3 predominantly defines DP alpha-chain subunits and a high molecular weight (200-250 kD) actin binding protein known as filamin. In view of several recent reports that the cellular distribution of class II antigens may be more widespread than hitherto thought and may be expressed by cells not normally involved in specific immune functions, these findings emphasize that unexpected monoclonal antibody reactions must be interpreted with caution. It is clearly important to include both immunohistological tissue section and biochemical studies in the initial screening procedures for monoclonal antibodies in order to distinguish between specific target antigen activity and cross-reactions with unrelated molecules.

Antibodies, Monoclonal↗

Molecular variation of human major histocompatibility complex DQw3 beta-chains.

Histocompatibility leukocyte antigen DQ molecules exhibit polymorphism of both DQ alpha- and beta-chains. Histocompatibility leukocyte antigen-DQw3 is associated with both DR4 and DR5 and can be further subdivided by reactivity with the monoclonal antibody TA10. To determine the molecular nature of the DQ polymorphic alleles associated with the DR4 haplotype, we have sequenced and analyzed DQ alpha and beta cDNA clones obtained from a DR4, Dw4, DQw3 cell line which is TA10-positive. The DQ alpha-chain sequence was identical to previously published sequences from the DR4 haplotype, but the DQ beta sequence differed from published DR4-DQ beta sequences obtained from DQw3-positive TA10-negative cell lines by eight amino acids, six of which were located in the beta 1 domain. Thus, the TA10 serologic determinants reside on the DQ beta-chain. A TA10-specific oligonucleotide probe was constructed based on the DQ beta sequence, and its specificity was confirmed in a panel of TA10-positive and TA10-negative cell lines. An additional band was observed in Southern blotting experiments which may indicate a donor sequence for gene conversion.

Alleles↗

Identification of HLA-DP polymorphism with DP alpha and DP beta probes and monoclonal antibodies: correlation with primed lymphocyte typing.

Thirty-four lymphoblastoid cell lines that had been previously typed for HLA-DP antigens by primed lymphocyte typing (PLT) were tested by Southern blotting and by ELISA. Using two DP beta probes and a DP alpha probe with a series of enzymes, it is possible to identify restriction fragment length polymorphism (RFLP) patterns characteristic of DPw1, -2, -3, -4, and possibly -5. ELISA typing results, based on two polymorphic DP antibodies DP11.1 and ILR1, were compared with PLT-defined and RFLP-defined types. Thus, using a range of probes and enzymes it is possible to identify DP polymorphism. The value of monoclonal antibodies for such studies is demonstrated, and the molecular data can, in some cases, pinpoint the amino acids responsible for the specificity of the monoclonal antibodies.

Alleles↗