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Biomedical subjects

J Dausset

Publications and source records attributed to J Dausset.

At least 19 recordsLinked to original sources

Altered binding of regulatory factors to HLA class I enhancer sequence in human tumor cell lines lacking class I antigen expression.

Class I antigens encoded in the major histocompatibility complex (MHC) (HLA in man, H-2 in the mouse) play a key role in the recognition of target cells by cytolytic T lymphocytes. Tumor cells frequently do not express class I MHC molecules, which strongly suggests that down-regulation of the latter facilitates escape of tumor cells from immune surveillance. The expression of class I MHC genes is tightly regulated. An enhancer element, conserved in the promoters of mouse and human MHC genes, has been shown to be important for mouse class I MHC gene expression. At least two related regulatory factors (KBF1 and NF-kappa B) bind to this regulatory element. We have analyzed the binding of these factors in cellular extracts of 23 human tumor cell lines displaying various levels of class I mRNA and surface expression. In this panel, combined deficiency of KBF1- and NF-kappa B-like DNA-binding activities was frequent among the class I-negative cell lines and correlated with the absence of class I mRNA. A few cell lines that lack KBF1 binding activity still display NF-kappa B-like activity and express normal levels of MHC class I mRNA. These results suggest (i) that, in the absence of KBF1, NF-kappa B or a related factor promotes MHC class I gene transcription; and (ii) that a combined defect in KBF1/NF-kappa B DNA-binding activity can cause a pleiotropic defect in class I gene expression, which may facilitate tumor progression.

Antibodies, Monoclonal

Genetic mapping of three human homologues of murine t-complex genes localizes TCP10 to 6q27, 15 cM distal to TCP1 and PLG.

Human homologues of mouse t-complex genes have been cloned and localized physically to chromosome 6p or 6q. TCP1, TCP10, and PLG are human homologues of genes located in the proximal portion of the t-complex on mouse chromosome 17. We present here results of genetic mapping of these human t-complex homologues previously localized to 6q25-q27, 6q21-q27, and 6q26-q27, respectively, by physical techniques. TCP1 and PLG do not recombine with each other and are separated from TCP10 by about 15 cM, while the corresponding mouse genes are no more than 4 cM apart. Genetic mapping with markers well localized cytogenetically places TCP1 and PLG proximal to TCP10 and localizes the latter to the cytogenetic band 6q27. It is likely that the organization of human t-complex homologues on 6q is similar to that of t haplotypes rather than that of wildtype murine chromosome 17.

Animals

The CEPH YAC library.

Because of their large size, YACs provide is a powerful tool for physical mapping studies of complex genomes. As it will be advantageous to have genomic libraries of clones with large inserts for analyzing megabase sized regions of the human genome, we have investigated a number of parameters in order to increase the insert size of the YACs. We constructed a genomic library currently containing more than 85,000 YAC clones. Mean sizes of YACs produced at several stages of construction of the library range from 430 kb to 1,200 kb, representing 13 haploid equivalents of the human genome. This library was organized in order to allow rapid screen of YACs for large scale physical mapping of the human genome.

Chromosome Walking

[Demonstration of a soluble factor capable of inhibiting allogenic lymphocyte proliferation in man].

During the secondary mixed lymphocyte reaction (MLR), i.e. after the double in vitro allogenic sensitization between responding and stimulating cells bearing at least one HLA-DR incompatibility, suppressor cells are developed [1]. They are able to inhibit a primary MLR provided that the stimulating cells possess the same DR incompatibility as the immunizing cells. We report here that this inhibition is due to the production by these cells of a soluble suppressor factor which acts on responding cells provided that they share at least one gene product of the HLA-D region with the cells producing the factor. This a feedback process of auto-inhibition occurring after hyperimmunization. The action of this suppressor factor seems to be genetically restricted to an as yet unknown locus in linkage disequilibrium with HLA-DR.

Cell Division

A simulation of HLA-DR matching in kidney transplantation.

A simulation of the matching for HLA-DR, B, A loci was achieved by taking into account the practical situation of kidney transplants for 89 donors and 322 potential recipients. A complete HLA-DR identical graft was theoretically possible in 52% of the cases. Conversely, if the identity for B or particularly the identities for both B and A were sought, the necessary pool of recipients would have to be much larger, requiring intense international cooperation.

ABO Blood-Group System

Role of Ia-like products of the main histocompatibility complex in conditioning skin allograft survival in man.

This report correlates the survival time of 93 intrafamilial skin allografts performed under conditions of main histocompatibility complex (HLA) haploidentity with donor-recipient compatibility for products of the HLA-A, -B, -C, and -DR, as well as C3 proactivator, Glyoxalase I, and P loci located on the human 6th chromosome. Incompatibilities for HLA-A and -B (and to a lesser extent for HLA-C) and(or) for HLA-DR products exerted a strong influence upon the fate of skin allografts. When HLA-A and -B were considered alone, the most compatible group of grafts had a mean survival time of 15.8 d, as compared with 11.3 d for the most incompatible transplants. HLA-DR compatibility alone was associated with a mean survival time of 15.3 d, whereas HLA-DR-incompatible grafts had a mean survival time of 11.5 d. Incompatibilities for C3 proactivator, Glyoxalase I, and P did not have a significant effect upon graft survival. There was no evidence of an association between donor-recipient incompatibility at HLA-A, -B, or -C or at HLA-DR; such incompatibilities occurred independently of each other, in spite of the state of linkage disequilibrium known to exist between HLA-B and -DR. Incompatibilities for HLA-A, -B, and for HLA-DR exerted a potent additive effect upon graft survival. Skin grafts bearing one, two, or three incompatibilities had a mean survival time of 16.2, 13.7, and 10.7 d, respectively (P <0.0005).The results point to the important role played by the Ia-like products of the HLA complex (HLA-DR) in conditioning skin allograft survival in man. This consideration may be of direct relevance to the potential clinical usefulness of in vitro serological techniques for the detection of donor-recipient compatibility for HLA-DR.

Female

[Genetic markers and disease susceptibility (author's transl)].

The HLA system includes several genes and each of them is polymorphic. Several associations between some HLA alleles and the susceptibility to various diseases are already described. Three kinds of associations are reported: [1] a constant association between an HLA allele and a disease whatever the tested population, [2] an association between the HLA allele and a disease varying according to the tested populations, [3] an association probably due to a mutation of metabolic gene closely linked to HLA. These three kinds of associations probably correspond to three different mechanisms.

Alleles

Insulin-dependent diabetes and HLA.

The study of a hundred and fifteen unrelated insulin-dependent diabetes and eight families with at least two insulin-dependent diabetes members made it possible to confirm the higher frequency of HLA-B8 and B18 (p less than 0.001) among patients, producing a RR of 2.24 and 2.47 respectively. The increased B15 frequency did not achieve statistical significance. B18 whose gametic association (delta = 0.0438) was significant only in diabetic patients was often related to Aw19-2 (Aw30 + Aw31). The B8/B18 genotype gave a relative risk (RR = 4.98) which was significantly higher than that of B8, B18 and B15 heterozygotes (1.50, 1.24 and 1.39 respectively). Pairs of diabetic siblings were more frequently HLA identical than would be expected by chance, and distribution of the pairs of affected sibs into the three categories, identical, semi-identical and different, was closer to the recessive model than to the dominant one. The fact that the B8/B18 individuals had a RR slightly higher than the B8 and B18 homozygotes and distinctly higher than the heterozygotes for only one of these genes, favours the hypothesis of two dominant genes, giving the appearance of recessivity. The gene associated with B18 in Southern Europe seems to play the same part as that of the gene associated with B15 in Northern Europe.

Adolescent

Seventh allele of the HLA-C series (Cve).

Serum VE reacting with 29.8% of French individuals seemed to define the seventh allele of the HLA-C series as shown by serologic and genetic investigations. The gene frequency of Cve is 0.163.

Alleles

Human T cell differentiation antigens and correlation of their expression with various markers of T cell maturation.

Two sets of differentiation antigens are demonstrated on human T cells by using 11 heterologous anti-human antisera raised against various normal and malignant T cells. The two antigenic determinants from the first set of differentiation antigens are expressed only on thymus cells and on T lymphoblasts, whereas the two antigenic determinants from the second set are expressed on blood T cells, Sezary cells, T.CLL cells, and thymus cells. Four T cell phenotypes are thus defined; two phenotypes are expressed only by T lymphoblasts, whereas the other two phenotypes are expressed both by normal and malignant T cells. Moreover, a clear-cut relationship exists between the four T cell antigenic phenotypes and two other markers of T cell differentiation: terminal deoxynucleotidyl transferase and peanut agglutinin. Two phenotypes are linked with the presence of TdT, one phenotype is linked with the affinity for PNA, and the fourth phenotype is correlated with the absence of both markers.

Acute Disease

Subsets of malignant lymphomas in children related to the cell phenotype.

We studied the lymphomatous cells of 39 children presenting with the classical features of malignant lymphoma. Twenty-two had T lymphoblasts. We could classify these patients into three subsets: The T lymphoblasts from children group 1 displayed antigen(s) shared by a thymocyte subpopulation, had terminal deoxynucleotidyl transferase (TDT), but no affinity for peanut agglutinin (PNA). The T lymphoblasts from children group 2 lacked the thymocyte antigen(s), had no TDT, but showed affinity for PNA. The T lymphoblasts from children group 3 displayed mature T-cell antigens, had no TDT, and no affinity for PNA. Children from the three groups were similar in terms of clinical presentation, age and sex distribution, and cell morphology; however patients from the three groups might have a different prognosis. Fourteen children had B lymphoblasts that, in half of the cases, had affinity for Helix pomatia agglutinin. Three patients had lymphoblasts lacking specific marker. Two of them had cells displaying an antigen found on common acute lymphoblastic leukemia cells and had TDT.

Adolescent

[The major OLA histocompatibility complex of sheep. Recent results in the genetic study of 11 factors previously defined by microlymphocytotoxicity].

The genetic study of 11 lymphocyte factors previously described in sheep was continued. 9 factors are the products of alleles at two closely linked loci OLA-A and B. The last two factors are the products of two genes at two distinct loci OL-X and OL-Z. Recombinations between the two closely linked loci are very rare (0.6%); but they are frequent between these two loci and OL-X (26%). The OL-Z locus seems to be independent of the two linked loci OLA-A and B. The allele frequencies at the four loci are given.

Alleles

Some chronic lymphocytic leukemia cells bearing surface immunoglobulins share determinants with T cells.

One set of antigens is common to some chronic lymphocytic leukemia (CLL) cells bearing surface immunoglobulins (Ig) and normal T cells. Proliferating cells from thirty-eight patients were studied with four antisera recognizing normal human T but not B cells. These antisera were raised in rabbits against (a) Sezary cells, (b) blood lymphocytes from a patient with sex-linked agammaglobulinemia, (c) T lymphoblasts and (d) thymus cells. In four CLL cases, the cells expressed the receptor for sheep erythrocytes and lacked surface Ig. Cells from thirty-four CLL cases bore monoclonal surface Ig and did not bind sheep erythrocytes. Twelve out of these thirty-four cases of CLL had cells which were lysed by one or, more frequently, by the four anti-human T cell xenoantisera. By absorption experiments, one set of at least three antigens common to the cells of some of these CLL and T cells was defined. Depending on the patient, the cells can either carry one, some or all of the antigens of this set. However, it was also demonstrated by absorption that these cells lacked antigens particular to the T cell lineage, while the cells from T CLL cases carried both sets of antigens.

Animals