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H C Clevers

Publications and source records attributed to H C Clevers.

At least 37 records · Page 2Linked to original sources

Members of the novel WC1 gene family are differentially expressed on subsets of bovine CD4-CD8- gamma delta T lymphocytes.

CD4-CD8- gamma delta T cells of ruminants uniquely express a 220-kDa surface Ag recognized by several mAbs clustered as WC1. We recently reported the isolation of a cDNA clone encoding a WC1 Ag. Southern blotting suggested that the bovine genome contains multiple sequences highly related to the isolated WC1 cDNA. Here, we demonstrate that some of the clustered WC1 mAbs stain predominantly nonoverlapping subsets of bovine CD4-CD8- gamma delta T cells. By the isolation of two additional cDNA clones encoding molecules highly related to the original WC1 Ag, we provide a molecular basis for this phenomenon. Cells transfected with cDNAs encoding individual WC1 Ags are differentially recognized by various WC1 mAbs. Thus, expression of members of the WC1 gene family divides bovine CD4-CD8- gamma delta T cells into phenotypical subsets. Field inversion gel electrophoresis revealed that all WC1 genes map to a single, large (> 1 Mbp) Notl fragment. Although the function of WC1 remains unknown, it likely involves interaction with ligands that originate from a similarly complex genetic system.

Amino Acid Sequence↗

A novel multi-gene family of sheep gamma delta T cells.

The WC1 protein is a cell surface constituent of bovine gamma delta T cells and is absent from most or all CD4+, CD8+ T cells and from B cells. It is a single polypeptide chain of 1413 amino acids consisting of 11 non-identical repeats of a 110 amino acid consensus sequence, homologous to the macrophage scavenger receptor cysteine rich (SRCR) domain. A 1059 nucleotide segment of the bovine WC1 cDNA sequence was used as a probe to molecularly clone homologous DNA segments from a sheep genomic library in which the presence of numerous positive plaques was documented. The high representation of such recombinants (1-2/1000 clones) within the library suggested the existence of multiple genes for WC1 (called T19 in sheep) and supported Southern blotting data which revealed an unexpectedly high number of WC1/T19 restriction fragments in sheep genomic DNA. Restriction digests of 27 samples of T19 genomic recombinants were examined by electrophoresis and Southern blotting. All but two pairs of recombinants exhibited non-overlapping restriction digest patterns. Four recombinant DNA samples were partially sequenced and in all cases putative exons were identified and exhibited high homology to appropriate segments of the WC1 cDNA at the levels of both nucleotide and amino acid sequence. Furthermore, multiple nucleotide and amino acid differences occurred between all sequences compared, establishing the existence of a repertoire of non-identical T19 genes, each with the potential to encode a different protein.

Animals↗

Clustering of monoclonal antibodies recognizing different members of the WC1 gene family.

Mouse L cell lines expressing two different bovine WC1 glycoproteins were produced by transfection of the cells with the corresponding cDNAs. The cell lines were used to analyze the reactivities of 67 monoclonal antibodies (mAbs) which recognize bovine gamma/delta T cells. The results indicated that preliminary clustering of mAbs can be achieved based on their recognition of epitopes expressed on all gene products, or of epitopes encoded by individual members of the gene family. The studies also showed that at least three members of the WC1 gene family are expressed, although it is not yet known how many can be expressed by individual bovine gamma/delta T cells. Final clustering of the WC1 mAbs will not be possible until the exact number of expressed gene products is known, and the reactivities of the mAbs with these products have been analyzed.

Animals↗

Transcription factors in early T-cell development.

Characterization of the transcription control regions for most genes encoding the TCR-CD3 complex has been followed by identification of DNA-binding factors, some of which are restricted to lymphoid or T-lineage cells. The sequential expression of these factors is linked with the appearance of stage-specific T-cell markers, thus controlling the commitment of the elusive lymphoid progenitor cell and its progression along the T-lineage. Here, Hans Clevers, Mariëtte Oosterwegel and Katia Georgopoulos discuss recent progress made in the recognition of transcription factors that regulate these early events in T-cell ontogeny.

Animals↗

Thoughts on the thymus and the T-lymphocyte repertoire. Relevance to the tolerance of the immune response.

The thymus is a central lymphoid organ, and has one important function in the immune system. It generates immunocompetent T (= thymus-dependent) cells. 'Immunocompetence' is the single most important characteristic acquired during the differentiation process of T-cells, from progenitor cell in the bone marrow to mature cell in peripheral lymphoid organs and blood. The basis of competence is recognition, mediated by the T-cell receptor on the cell surface. Using this receptor, T-cells recognize antigens only in the form of antigenic fragments complexed with molecules of the major histocompatibility complex. Within the thymus, progenitor cells rearrange gene segments encoding the various parts of the receptor molecule. After expression of all possible receptors (the potentially available repertoire) selection processes occur, yielding only those T-cells that have a receptor by which antigens can be recognized together with molecules of the major histocompatibility complex, and that do not recognize autoantigens (the actual repertoire). This process of selection is considered as a unique function of the thymus. In this review, first some histophysiological aspects of the thymus are described. Next, the events that occur during the sojourn of the lymphocytes in the thymus are presented. Finally, these data are considered with regard to thymic abnormalities. These include acute and age-associated involution, and the generation of autoimmune reactivity due to disturbed intrathymic selection.

Antibody Diversity↗

Molecular characterization of the WC1 antigen expressed specifically on bovine CD4-CD8- gamma delta T lymphocytes.

Although gamma delta T lymphocytes were identified several years ago, the functional importance of these cells remains to be established. gamma delta T cells of ruminants are unique in two respects. First, they are present at much higher levels compared to man and rodents. Second, ruminant CD4-CD8- gamma delta T cells uniquely express a 220 kD surface Ag recognized by a panel of mAb, recently clustered as WC1. WC1 has been most extensively studied in sheep with the use of the mAb T19. Here, we report on the isolation of a full length cDNA clone, encoding the WC1 Ag, from a COS cell cDNA expression library prepared from a bovine gamma delta T cell line. The protein encoded by the pWC1 cDNA clone was reactive with the bovine mAb CC15 and IL.A29, and with T19. The cDNA clone consisted of 4475 bp and contained a single long open reading frame of 1436 amino acids. The pWC1 cDNA clone encoded a type 1 integral membrane protein with an extracellular domain consisting of 11 scavenger receptor cysteine-rich-repeats with homology to CD5 and CD6. Southern blotting suggested that the bovine genome contained multiple sequences highly related to the isolated WC1 cDNA. Furthermore, WC1-like sequences were present in the genomes of all mammals tested including mouse and man. The molecular characterization of the WC1 Ag as reported here provides a starting point for the definition of its role in gamma delta T cell biology.

Amino Acid Sequence↗

A common ancestor of the mammalian transcription factors TCF-1 and TCF-1 alpha/LEF-1 expressed in chicken T cells.

Several mammalian T cell-specific transcription factors have been cloned recently. Two of these, TCF-1 and TCF-1 alpha/LEF-1, display a moderate level of overall sequence similarity, and contain virtually identical versions of a novel type of DNA-binding domain, the HMG box. To study evolutionary aspects of the TCF transcription factors in relation to lymphoid differentiation, we have isolated chicken TCF clones from a spleen cDNA library. Low-stringency screening with human probes as well as a polymerase chain reaction-aided strategy resulted in the cloning of a single chicken TCF (chTCF) gene. Sequence comparison revealed that chTCF contained a TCF-1 alpha-like N terminus, and a TCF-1-like C terminus. Furthermore, TCF-1 and TCF-1 alpha were more homologous to chTCF than to each other. We postulate that chTCF is the direct descendant of a single ancestral gene, which has been duplicated in mammals to yield TCF-1 and TCF-1 alpha.

Amino Acid Sequence↗

CD63 antigen. A novel lysosomal membrane glycoprotein, cloned by a screening procedure for intracellular antigens in eukaryotic cells.

To clone the CD63 antigen, originally described as a blood platelet activation marker, we adapted the expression cloning procedure of Seed and Aruffo (Seed, B., and Aruffo, A. (1987) Proc. Natl. Acad. Sci. U.S. A. 84, 3365-3369) to allow cloning of intracellular antigens. A megakaryocyte expression cDNA library was transiently transfected into MOP-8 mouse fibroblasts cultured on polyvinylidene difluoride membranes. Individual cells expressing intracellular CD63 were identified by autoradiography. cDNA was extracted from positive spots and reintroduced into Escherichia coli. After two screening rounds, a CD63 cDNA clone was isolated as assessed by immunofluorescence and Western blot analysis. The single long open reading frame of 238 amino acids contained four putative transmembrane regions and three N-glycosylation sites. The CD63 gene was expressed in a wide variety of cells. Surprisingly, CD63 was identical to ME491, an antigen reported as a melanoma-associated antigen (Hotta, H., Ross, A. H., Huebner, K., Isobe, M., Wendeborn, S., Chao, M. V., Ricciardi, R. P., Tsujimoto, Y., Croce, C. M., and Koprowski, H. (1988) Cancer Res. 48, 2955-2962). By immunoelectron microscopy, co-localization with the lysosomal glycoproteins lamp-1 and -2 identified CD63 as a novel lysosomal membrane glycoprotein. CD63 was not related to the lysosomal glycoprotein family but contained the putative lysosomal targeting signal Gly-Tyr in its short cytoplasmic tail.

Amino Acid Sequence↗

Towards a molecular understanding of T-cell differentiation.

Lymphoid differentiation is one of the best studied examples of mammalian development. Here Hans Clevers and Michael Owen describe how the cloning of the genes that encode T-cell-specific membrane proteins allows the identification of transcription factors that control the expression of these T-cell genes. Such transcription factors play a key role in the development of the mature T-cell phenotype by functioning as 'master regulators of T-cell differentiation'.

Animals↗

TCF-1, a T cell-specific transcription factor of the HMG box family, interacts with sequence motifs in the TCR beta and TCR delta enhancers.

We have recently identified and cloned TCF-1, a T cell-specific transcription factor with specificity for the AACAAAG motif in the CD3 epsilon enhancer and for the TTCAAAG motif in the TCR alpha enhancer. TCF-1 belongs to the family of transcription-regulating proteins which share a region of homology termed the HMG-box. Here, we show by gel retardation analysis that TCF-1 specifically recognizes the T beta 5 element of the TCR beta enhancer and the T delta 7 element of the TCR delta enhancer. Comparison of the sequences of all elements recognized by TCF-1 defines a consensus motif A/T A/T C A A/G A G. These observations imply that TCF-1 is involved in the control of several T cell-specific genes and might thus play an important role in the establishment and maintenance of the mature T cell phenotype.

Base Sequence↗

Molecules relevant for T cell-target cell interaction are present in cytolytic granules of human T lymphocytes.

An ultrastructural analysis of human cytotoxic T lymphocyte-target cell (CTL-TC) interaction has been undertaken to enable a better understanding of the killing mechanism. Attention was focused on granules in the CTL, which are known to contain lethal compounds. Within the membrane-delimited cytotoxic granule an electron-dense core as well as numerous membrane vesicles were identified. In CTL-TC conjugates, specific membrane interactions take place, allowing the formation of intercellular clefts into which the granule cores and internal vesicles are released. T cell surface membrane molecules known to be involved in CTL-TC interaction (T cell receptor, CD3 and CD8) are present on the membranes of the granule cores and internal vesicles, facing outward. An explanation for this localization of the membrane may be found in the fact that the granule is connected with an endocytotic pathway. Moreover, the lumen of the granule is rich in the enzyme cathepsin D, which indicates an association with a lysosomal compartment. Exocytosed vesicles and cores are seen to adhere to the plasma membrane of the TC. Although the exact contents of the granule vesicles and core remain to be identified, we suggest that specific interaction of CTL membrane molecules on the cytolytic granule components with molecules on the plasma membrane of the TC may ensure the unidirectional delivery of the lethal hit.

Clone Cells↗

Human CD3-epsilon gene contains three miniexons and is transcribed from a non-TATA promoter.

The antigen receptor of the T lymphocyte consists of two variable T-cell receptor chains (either TCR-alpha, TCR-beta or TCR-gamma, TCR-delta) noncovalently linked to four different invariant membrane proteins (CD3-gamma, CD3-delta, CD3-epsilon, and the CD3-zeta homodimer). The CD3 genes are expressed early in thymocyte development, preceding the rearrangement and expression of the T-cell receptor genes. Here we report the isolation and structural analysis of the human CD3-epsilon gene. The gene consisted of nine exons. Three exons, encoding the junction of leader peptide and mature protein, were extremely small (21, 15, and 18 base pairs, respectively). The murine gene contained only two such miniexons, the sequences of which were not homologous to those of the three human miniexons. But from comparisons of intron sequences the regions surrounding the human miniexons III and IV appeared to be closely related to those surrounding the murine miniexons III and IV. The most-3' miniexon in the human gene (IVa) had no murine counterpart and appeared not to duplicate any of the other miniexons. Sequence analysis of CD3-epsilon cDNA clones isolated from four independent libraries gave no evidence for alternative use of these miniexons. Like CD3-delta, the CD3-epsilon gene was transcribed from a weak, nontissue-specific, TATA-less promoter. Pulsed-field electrophoresis showed that the human CD3-epsilon gene was separated from the CD3-gamma, CD3-delta gene pair by at least 30 kilobases, but by no more than 300 kilobases.

Amino Acid Sequence↗

Wheat germ agglutinin activates human T lymphocytes by stimulation of phosphoinositide hydrolysis.

Recently, it has become evident that stimulated phosphoinositide (PI) hydrolysis plays a crucial role in early T lymphocyte activation. We have investigated the effects of the nonmitogenic lectin wheat germ agglutinin (WGA) on several parameters associated with PI hydrolysis in human T cells. It was found that WGA was as effective as anti-T3 antibody and PHA in producing a rise in cytosolic free Ca++ ((Ca++)i) in blood T cells and in cells of the T cell line CCRF-CEM. It was inferred that identical cells within the blood T cell preparation responded to each of the three agents, refuting the contention that WGA only stimulated a subfraction of circulating mature T lymphocytes. WGA-induced, but not PHA-induced rises in (Ca++)i could be blocked completely by N-acetyl-D-glucosamine, demonstrating that the sugar-binding characteristics of the lectin dictate its action on T lymphocytes. Anti-T3 antibody, PHA, and WGA all initiated inositol phosphate formation in blood T cells, indicating that each of the agents stimulated PI hydrolysis. The combination of WGA with nonmitogenic amounts of phorbol-12-myristate-13-acetate resulted in strong mitogenicity. It is concluded that WGA, like anti-T3 antibody and PHA, is a pan-T activator of PI hydrolysis.

Aminoquinolines↗

Ligands of surface Ig raise cytoplasmic free Ca++ in human B cells.

With the use of the fluorescent Ca++ indicator Quin-2, we have measured changes in intracellular calcium levels in human B cells in response to anti-Ig antibodies, to Staphylococcus aureus (Staph) or to protein A. Cells of an Epstein-Barr virus-transformed mu lambda-carrying B-cell line, AZU-1, increased free cytosolic calcium after addition of anti-mu or anti-lambda antibodies; F (ab')2 fragments with anti-mu specificity were equally effective. Fab fragments of sheep anti-Ig antibodies only induced a rise in calcium levels after addition of a second anti-sheep Ig antiserum. Cross-linking of non-Ig surface determinants did not influence calcium homeostasis. The calcium channel blockers verapamil (100 microM), nifedipine (20 microM), and LaCl3 (200 microM) inhibited the anti-mu-induced calcium influx. Peripheral blood B cells reacted in essentially the same way in response to anti-mu antibodies. The B cell mitogens protein A and Staph also induced a rise in intracellular calcium. These observations indicate that Ca++ may play a role as a messenger in the activation of human B cells via surface Ig.

Aminoquinolines↗

Calcium ionophore A23187 induces interleukin 2 reactivity in human T cells.

In the present study the activation of purified human T lymphocytes by the calcium ionophore A23187 was analysed in the light of current concepts of receptor-linked inositol lipid metabolism. It was found that A23187 was only slightly mitogenic, with a narrow optimum at 400-500 nM. The proliferation could be blocked by anti-Tac ascites at 10(-3) dilution, suggesting an interleukin 2 (IL-2)-dependent pathway of activation. However, an unexpectedly large proportion of A23187-stimulated cells expressed the IL-2 receptor. Reculturing the cells with exogenous IL-2 after removal of A23187 resulted in strongly enhanced proliferation. Phorbol myristic acetate (PMA) at non-mitogenic concentrations exerted an extremely strong synergistic effect on A23187-induced cell proliferation, which was, again, mediated via an IL-2-dependent pathway. Supernatants of A23187-stimulated T cells did not contain detectable amounts of IL-2. Combination of PMA and A23187 resulted in considerable IL-2 production. It is concluded that A23187 induces the expression of IL-2 receptors without concurrent stimulation of IL-2 production, thus allowing only low levels of proliferation. Addition of exogenous IL-2 or of PMA restores the imbalance between the occurrence of IL-2 and its receptor and results in high rates of proliferation.

Calcimycin↗