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J Delabie

Publications and source records attributed to J Delabie.

At least 37 records · Page 2Linked to original sources

Molecular cloning of a gene on chromosome 19q12 coding for a novel intracellular protein: analysis of expression in human and mouse tissues and in human tumor cells, particularly Reed-Sternberg cells in Hodgkin disease.

A novel protein, named NNX3, was molecularly characterized by cloning its cDNA, and its gene was mapped to chromosome 19q12. The equivalent mouse cDNA and gene were also cloned to allow us to analyze expression in murine in addition to human cells and tissues. Human and mouse NNX3 genes are composed of nine exons coding for proteins that are unrelated to any known protein. Signal peptides and hydrophobic domains are absent, corroborating their localization in the cytoplasm in transfected Cos cells. In Western blotting and immunoprecipitation, human NNX3 appeared as a doublet of Mr 64K-66K, while mouse NNX3 was a 70-kDa protein, both apparently much larger than the predicted 50 kDa, due in part to a stretch of 16-18 acidic residues hinging two nearly equally sized domains. In addition, phosphorylation of serine residues was demonstrated. Putative nuclear targeting signals were predicted, but NNX3 protein and two truncated versions remained localized in the cytoplasm of transfected Cos cells. NNX3 was expressed in embryonic and adult mouse tissues, particularly in brain, muscle, and lung. The expression of human NNX3 was most notable in human skeletal muscle and in ganglion cells and was also evident in human tumors and derived cell lines. This was confirmed by entries appearing in the GenBank EST database during the later phase of this study, representing partial NNX3 cDNA isolated from diverse neoplastic and developing tissues. Surprisingly, NNX3 was immunochemically detected in Reed-Sternberg cells of Hodgkin disease, in parallel with restin, a cytoplasmic protein we previously characterized (J. Delabie et al., 1993, Leuk. Lymphoma 12, 21-26). The cloning and comprehensive molecular analysis of NNX3 as presented will form the basis for elucidating its function and, conversely, will constitute a marker for Reed-Sternberg cells in Hodgkin disease.

Amino Acid Sequence↗

Representational difference analysis using minute quantities of DNA.

Representational difference analysis (RDA) is a differential hybridization method which can effectively isolate unique DNA sequences from complex and highly related genomes or cDNA libraries. A major drawback of the RDA analysis is the requirement for pure driver and relatively pure tester samples, ruling out the analysis of whole tissue biopsies. To circumvent this problem, we have modified the technique for the analysis of very small quantities of DNA so that pure cell populations isolated by micromanipulation from tissue sections can be analyzed. Using this modified technique, as few as 50 diploid cells ( approximately 500 pg of DNA) can be analyzed.

DNA↗

Mutation analysis of the rearranged immunoglobulin heavy chain genes of marginal zone cell lymphomas indicates an origin from different marginal zone B lymphocyte subsets.

Marginal zone cell lymphoma is a recently described entity among the non-Hodgkin's lymphomas. It likely originates from the marginal zone B cells in the spleen and equivalent cells in the lymph node and extranodal tissues. Recent evidence indicates that marginal zone B cells are functionally heterogeneous and may differ with respect to the pattern of somatic hypermutation in their Ig variable genes. To test whether marginal zone lymphomas may originate from different subsets of marginal zone B cells, we performed a sequence and mutation analysis of the rearranged Ig heavy chain (IgH) variable genes (VH) of a series of 14 cases of marginal zone lymphoma, occurring in the spleen (4), the lymph node (4), the stomach (2), the orbit (2), the tongue (1), and the skin (1). Our data show that marginal zone cell lymphomas preferentially rearrange the VH4, VH3, and VH1 family genes, without preference for any particular VH gene. Somatic mutations are present in 13 cases; one case of marginal zone cell lymphoma of the skin showed a germline configuration of the rearranged VH gene. Mutation analysis shows evidence of antigen selection in three cases of marginal zone cell lymphoma, one of the spleen, stomach, and orbit, respectively. No evidence of antigen selection was present in the other cases. These data indicate that marginal zone cell lymphomas may arise from different subsets of marginal zone B cells. In addition, lymphomagenesis may not be triggered by antigen in all cases of marginal zone cell lymphoma.

Aged↗

Blastic variant of mantle cell lymphoma shows a heterogenous pattern of somatic mutations of the rearranged immunoglobulin heavy chain variable genes.

Mantle cell lymphoma is a distinct clinicopathological entity associated with t(11;14) and cyclin D1 overexpression. The majority of cases show uniform morphological and phenotypic features characterized by a monotonous proliferation of small-to-medium-sized irregular B cells that express CD5 and bright surface immunoglobulin IgM and IgD. By sequence analysis of the rearranged immunoglobulin heavy chain variable genes (VH), it has been shown that these lymphoma cells carry little if no somatic mutations, as described for the fetal CD5+ cells or B1 cells. Besides mantle cell lymphoma with classic histological features, a morphological variant of mantle cell lymphoma with blastic features and a more aggressive clinical course has been described. To investigate whether this variant is closely related, by the cell of origin, to typical cases, we analysed the presence and the pattern of somatic mutations of the VH genes in a series of nine cases diagnosed as such. Our cases of blastic mantle cell lymphomas rearrange most frequently VH4 and VH3 family genes. In three cases there was a complete homology to published germline genes, and a near complete homology was documented in another three. In contrast, the remaining three cases showed somatic mutations in their rearranged VH genes. Mutation analysis revealed evidence for antigen selection in one of these three cases. Taken together, these data are similar to those of normal adult-type B1 cells and those described for chronic lymphocytic leukaemia (CLL) but slightly different to those reported for classic mantle cell lymphoma. It is likely that blastic mantle cell lymphoma as well as CLL originates from adult-type B1 cells. More cases will need to be studied to determine whether classic mantle cell lymphoma is different from the blastic subtype and if it arises from fetal-type B1 cells.

Amino Acid Sequence↗

Human CTLA-4 is expressed in situ on T lymphocytes in germinal centers, in cutaneous graft-versus-host disease, and in Hodgkin's disease.

Cytotoxic T-lymphocyte-associated antigen-4 (CTLA-4, CD152) is a molecule expressed on in vitro activated T cells. CTLA-4 shares important sequence homology with CD28 and binds to the same ligands, CD80 (B7-1) and CD86 (B7-2). CTLA-4 probably functions as a negative regulator of T lymphocyte activation in the mouse, although this remains to be proven for human T lymphocytes. We have developed new monoclonal antibodies against human CTLA-4 and have investigated the in situ expression of CTLA-4 in a wide variety of normal and pathological human tissues expressing CD80 and CD86. As revealed in this study, CTLA-4 is expressed on thymocytes in thymic medulla, on a subset of CD4+ T lymphocytes in germinal centers of follicular hyperplasia, on T cells, mainly CD8+, infiltrating skin affected by graft-versus-host disease, and on T cells, mainly CD4+, infiltrating Hodgkin's disease lesions. In immunoelectron microscopy, CTLA-4 was found on the plasma membrane as well as in the hyaloplasm and cytoplasmic vesicles, in agreement with its pattern of expression on in vitro activated T cells. Interestingly, no or at most scarce expression of CTLA-4 was found in granulomatous lymph nodes, T-cell-mediated inflammatory diseases, or non-Hodgkin's lymphomas, regardless of their expression of CD80 or CD86. Thus, expression of CTLA-4 appears to be induced in selective pathological conditions in vivo. The pathways leading to selective induction of CTLA-4 and its role in the pathophysiology of these conditions need to be further investigated.

Abatacept↗

Primary low-grade B-cell lymphoma of MALT-type occurring in the liver: a study of two cases.

BACKGROUND/METHODS: Primary non-Hodgkin's lymphomas of the liver are rare. One specific clinico-pathological entity has been identified as hepatosplenic gamma/delta T-cell lymphoma. Recently, another distinct primary lymphoma of the liver has been recognised as primary low-grade hepatic B-cell lymphoma of mucosa-associated lymphoid tissue (MALT), based on a study comprising four cases. We analysed two additional cases of this particular non-Hodgkin's lymphoma, not only by morphology and phenotyping, but also by genotyping and cytogenetic analysis. RESULTS: This type of non-Hodgkin's lymphoma is characterised by a dense lymphoid infiltrate, localised in the portal tracts, and is associated with lympho-epithelial lesions of the bile ducts, thereby mimicking hepatitis or an inflammatory bile duct disorder. In one of our cases, translocation t(3;14)(q27;q32) was identified as the sole cytogenetic abnormality. A high incidence of trisomy 3 has been associated with marginal zone B-cell lymphomas, and fluorescence in situ hybridisation as well as comparative genomic hybridisation studies have shown frequent involvement of the long arm of chromosome 3. Nevertheless, t(3;14)(q27;q32) involving BCL6 gene, located at 3q27, has not yet been found. CONCLUSION: Our findings suggest a role for the BCL6 gene in the histogenesis of this particular lymphoma.

Antigens, CD↗

Expression of B7-2 (CD86) molecules by Reed-Sternberg cells of Hodgkin's disease.

Ligation of CD28 on T cells with its natural ligands B7-1 (CD80) or B7-2 (CD86) provides a major costimulatory signal for T cells and is of potential importance for tumor rejection. We previously reported a strong expression of B7-1 on Reed-Sternberg cells and anaplastic large cell lymphoma cells. We report here our findings on B7-2 expression by malignant lymphomas (n = 70). B7-2 was present on the neoplastic cells of anaplastic large cell lymphoma in two of three cases studied, and on a subpopulation of the malignant cells in one out of four cases of follicular lymphoma. B7-2 was not expressed by the neoplastic cells of the other non-Hodgkin's lymphomas (n = 32), including T cell-rich B cell lymphoma. In contrast, Reed-Sternberg cells in lymph nodes affected by Hodgkin's disease are strongly positive for B7-2 (n = 31). Evidence for a functional correlate of this expression was obtained by our findings that the combination of anti-B7-1 and anti-B7-2 monoclonal antibodies was more effective than each separately in blocking allogeneic T cell activation (proliferation and cytokine secretion) by Hodgkin's disease-derived cell lines as stimulators. The possible role of B7-1 and B7-2 expression for the course and symptomatology of Hodgkin's disease is discussed.

Antigens, CD↗

Molecular studies on single cells harvested by micromanipulation from archival tissue sections previously stained by immunohistochemistry or nonisotopic in situ hybridization.

Molecular analysis of isolated single cells is a powerful tool for analyzing heterogeneity within a population of cells and for clarifying issues of cell origin and clonality. Current techniques are limited by the availability of suitable fresh tissue. To broaden the applicability of molecular techniques at single-cell level, we have developed an approach that uses routinely processed archival tissue. Immunoglobulin heavy chain (IgH) gene rearrangement was analyzed in large tumor cells from four cases of diffuse large cell B-non-Hodgkin's lymphoma and in small reactive T and B lymphocytes from three cases of lymphocytic predominance Hodgkin's disease. One case of Epstein-Barr virus (EBV)-encoded RNA (EBER)-positive angiocentric pulmonary T-cell lymphoma was assayed for the presence of the BamHI-W multiple-copy fragment of the EBV genome. T- and B-lymphoid cells were immunostained with anti-CD3 and CD20, respectively. The tissue sections from the EBER-positive T-cell lymphoma were stained by nonisotopic in situ hybridization. Single cells were mobilized after proteolytic treatment under an inverted microscope using a hydraulic micromanipulator at a magnification of 400 x. Isolated cells were aspirated into a micropipette fixed to a second micromanipulator and transferred into a PCR tube. The IgH complementarity determining region (CDR)3 was successfully amplified in 17 of 52 (33%) small B-lymphocytes from lymphocytic predominance Hodgkin's disease using a previously reported semi-nested PCR method, and the products from each case differed in size as expected of a polyclonal population. None of the 49 small T lymphocytes demonstrated any amplifiable IgH CDR3 products, indicating no significant cellular contamination. The IgH CDR3 sequence analysis of the PCR products indicated a clonal relationship among harvested cells. In the T-cell lymphoma case, the harvested EBER-positive cells were amplifiable for the multiple-copy fragment BamHI-W of the EBV genome. Our study indicates that single-cell analysis can be performed on paraffin-embedded archival tissue after being subjected to immunoperoxidase and in situ hybridization procedures.

Antigens, CD20↗

Phenotype, genotype and clonality of Reed-Sternberg cells in nodular sclerosis Hodgkin's disease: results of a single-cell study.

The genotype and clonality of Reed-Sternberg (RS) cells in Hodgkin's disease (HD) has remained a controversial issue, largely due to the scarcity of RS cells in tissues and the limitations of the techniques used to resolve this issue. Southern hybridization and polymerase chain reaction (PCR) assays using DNA extracted from tissues can only document clonal gene rearrangements, but do not indicate which cellular population is responsible for such rearrangements. To overcome the limitations of these previous techniques for studying the genotype and clonality of RS cells, we analysed single RS cells with a single-cell PCR assay to detect immunoglobulin heavy chain gene (IgH) rearrangements and X-chromosome inactivation. Six cases of nodular sclerosis (NS) HD were studied. The RS cells displayed a B-cell phenotype in three cases and a null-cell phenotype in the other three cases. IgH rearrangements were detected in the RS cells of the three cases with a B-cell phenotype, but not in the other cases. In these three cases the IgH rearrangements in the RS cells were polyclonal, although a subpopulation of clonal RS cells was documented in one case. The finding that the RS cells with IgH rearrangements were not monoclonal was supported in one case by studying the pattern of X-chromosome inactivation in single RS cells by a single-cell human androgen receptor gene (HUMARA) PCR assay. Our results indicate that NSHD begins as a polyclonal process in which a clonal RS cell population may arise; and that the RS cells in a subset of NSHD show evidence of B-lineage differentiation.

Base Sequence↗

Single cell analysis of H/RS cells.

The nature of the Hodgkin/Reed-Sternberg (H/RS) cells in Hodgkin's disease (HD) is still unclear. We have studied isolated H/RS cells from four cases of lymphocytic predominance (LP) HD and six cases of nodular sclerosis (NS) HD and assayed the cells for immunoglobulin heavy chain (IgH) gene rearrangement by the polymerase chain reaction (PCR). The H/RS cells in all four cases of LPHD had rearranged their IgH gene in a polyclonal pattern. The H/RS cells of three cases of NSHD where at least a fraction of the cells expressed the B-cell marker CD20 had also rearranged their IgH gene. In two of the cases, the rearrangements were totally unrelated while in one case, two out of six rearrangements were identical in sequence indicating the presence of a clonal subpopulation amid a polyclonal background. Clonality was assessed independently in one NSHD case by determining the pattern of X-chromosome inactivation. This technique also failed to show that the H/RS cells were monoclonal. Our studies suggest that in both LPHD and NSHD, the H/RS cells may be a polyclonal proliferation at presentation and clonal populations may emerge from this polyclonal background. There is also some evidence of a correlation between the immunophenotype and the genotype of the H/RS cells. Single cell assays show great potential in elucidating the cell lineage and clonality of H/RS cells, as well as their in vivo evolution during the disease process.

Gene Rearrangement↗

Concurrent lymphocyte predominance Hodgkin's disease and T-cell lymphoma. A report of three cases.

Lymphocyte predominance Hodgkin's disease (LPHD) is a B-cell lymphoproliferative disorder; patients with LPHD have an increased risk of developing synchronous or metachronous B-cell non-Hodgkin's lymphoma. The synchronous presence of LPHD and B-cell lymphoma in the same lymph node in some cases lends support to the argument that the B-cell lymphoma arises as a consequence of transformation or progression of LPHD. We have recently identified three cases of LPHD occurring simultaneously with T-cell lymphoma in a series of 76 cases of LPHD in the files of the Nebraska Lymphoma Study Group Registry. In large areas of the lymph nodes, atypical T cells with large, irregular, and hyperchromatic nuclei were admixed with Reed-Sternberg variants characteristic of LPHD (L&H cells). However, in all cases, areas of typical nodular LPHD without obvious T-cell lymphoma were also evident. In one case, frozen-section immunohistochemistry demonstrated the absence of expression of CD5, CD4, or CD8 by the T-cell lymphoma. The L&H cells in all cases expressed CD45 and CD20, as expected. In all three cases, clonal T-cell receptor (TCR)-gamma gene and TCR-beta gene rearrangements were documented by polymerase chain reaction analysis and Southern blotting, respectively. No clonally rearranged immunoglobulin genes were detected by either technique. To our knowledge, this represents the first report of the simultaneous occurrence of LPHD and T-cell lymphoma. Although B-cell lymphoma occurring in the setting of LPHD is a well-recognized phenomenon, previous reports of T-cell lymphoma occurring after a diagnosis of LPHD, as well as our cases with synchronous disease, suggest that the association of T-cell lymphoma and LPHD may not be uncommon as well. Furthermore, our cases indicate that T-cell lymphoma occurring in LPHD is not therapy related. However, the underlying mechanisms by which these composite lymphomas occur remain unknown.

Adult↗

The antigen-presenting cell function of Reed-Sternberg cells.

Reed-Sternberg cells, the neoplastic cells of Hodgkin's disease, express all membrane molecules required to function as antigen-presenting cells (APCs), such as major histocompatibility complex (MHC) class II antigens and the recently characterized B7 proteins, which are of critical importance for APC to adequately stimulate CD4+ T cells. As APC do, Reed-Sternberg cells also express the adhesion molecules ICAM-1 (CD54) and LFA-3 (CD58), via which T cells are able to adhere to the cell. MHC antigens, B7 proteins as well as the adhesion molecules are expressed by Reed-Sternberg cells in virtually all cases of Hodgkin's disease, irrespective of the subtype. In vitro studies have shown that Hodgkin's disease-derived cell lines are potent stimulators of mixed lymphocyte cultures and that the MHC antigens, B7 proteins and the adhesion molecules, expressed by Hodgkin's disease-derived cell lines, are essential for such a function. Taken together, these data strongly suggest that Reed-Sternberg cells function as APC in vivo, and that the APC function of the cell is a major common denominator of Hodgkin's disease. The APC function of Reed-Sternberg cells does not support the hypothesis that they derive from dendritic cells, since activated B and T cells may also exert an APC function. Analysis of the antigens that are potentially expressed by Reed-Sternberg cells may greatly advance our knowledge on the pathogenesis of Hodgkin's disease and may allow the development of immunotherapy as an alternative treatment method.

Antigen-Presenting Cells↗

Lymphocyte predominance Hodgkin's disease: lineage and clonality determination using a single-cell assay.

Lymphocyte predominance Hodgkin's disease (LPHD) is a clinically indolent condition. Although there is evidence that the putative neoplastic cell in this disease, the "L&H" cell, is of B-cell lineage, there is conflicting data concerning the clonality of these cells. Our study was aimed at clarifying the issue of lineage and clonality of the L&H cells of LPHD using a single-cell assay. Four cases of LPHD were studied. To circumvent the difficulties of obtaining fresh tissue and to be able to study representative cases, a new method was developed to obtain single-cell suspensions of L&H cells from archival formalin-fixed paraffin-embedded tissue. Single L&H cells were identified by morphology and immunostaining for epithelial membrane antigen, isolated using a micropipette, and subjected to polymerase chain reaction (PCR) amplification of the complematarity determining region 3 (CDR3) of the Ig heavy chain (IgH) gene, which is B-cell clone-specific. The PCR products were size-fractionated by polyacrylamide gel electrophoresis and representative products were directly sequenced. Single T cells and small B cells were also isolated from the tissues and used as negative and positive controls, respectively. In all four cases of LPHD, the IgH CDR3 of single L&H cells could be amplified. Within each case, the IgH CDR3 of single L&H cells was found to be of different length or of different sequence. Therefore, our results provide strong evidence for the B-cell origin of the L&H cells and the polyclonal nature of LPHD.

Antigens, CD↗

Some desmoid tumors are characterized by trisomy 8.

Ten desmoid tumors were examined by chromosome banding analysis and by in situ hybridization on short-term cultures and frozen sections. Trisomy 8 was detected in four out of ten tumors, of which only one had shown trisomy 8 by karyotype analysis. Since trisomy 8 has been reported in superficial fibromatoses, which are clinically distinct but histologically similar to desmoid tumors, the occurrence of trisomy 8 in both may be a further indication of a close relationship.

Adolescent↗

Distribution of mRNA coding for alpha-2-macroglobulin, the murinoglobulins, the alpha-2-macroglobulin receptor and the alpha-2-macroglobulin receptor associated protein during mouse embryogenesis and in adult tissues.

The distribution of mRNA coding for the members of the wide-spectrum proteinase scavenging system of the alpha-2-macroglobulin family was examined in the mouse: Alpha-2-macroglobulin (MAM), the murinoglobulins (MUG), the alpha-2-macroglobulin receptor (alpha 2MR) and the receptor associated protein, the heparin binding protein-44 (alpha 2MRAP/HBP-44), a component of unknown function. The results demonstrate that MAM is expressed in the mouse embryo exclusively in the liver and not before day 13 of gestation. MUG mRNA was never detected during embryogenesis. On the other hand, both the alpha 2MR and the alpha 2MRAP/HBP-44 messages were present throughout all embryonal stages examined. The distribution of the alpha 2MR mRNA was widespread in most tissues, with stronger signals observed in developing mouse brain, in whisker follicles and in the perifollicular mesenchyme, in lung, liver, kidney, intestine and placenta. The alpha 2MRAP/HBP-44 mRNA was detected predominantly in brain, lung, liver, kidney and placenta. Interestingly, within each tissue the cellular distribution of the alpha 2MR and alpha 2MRAP/HBP-44 mRNA was quite different with the most remarkable extremes observed in kidney and in placenta. The implication of these observations for receptor expression and function are discussed. Northern analysis of adult tissues extended these observations: major signals for MAM and MUG were seen only in liver, while the expression of the alpha 2MR and the alpha 2MRAP/HBP-44 was widespread with highest levels of the 15-kb alpha 2MR mRNA in liver. Kidney was the most abundant source of alpha 2MRAP/HBP-44 mRNA with the 1.8- and 3.6-kb mRNAs, derived from the same gene by alternative mRNA splicing, present in nearly constant ratios in most tissues, except in testis. The notable absence of expression of MAM in the first half of gestation indicates that during this period the receptor is scavenging for proteinases complexed to MAM derived from the maternal circulation or is being used for endocytosis of the other documented ligands, such as plasminogen activator complexes or apolipoprotein E-containing lipoprotein particles.

Animals↗

Localization of the gene (RSN) coding for restin, a marker for Reed-Sternberg cells in Hodgkin's disease, to human chromosome band 12q24.3 and YAC cloning of the locus.

A novel 160-kDa intermediate filament associated protein, named restin (Reed-Sternberg intermediate filament associated protein), is specifically expressed in the malignant cells of Hodgkin's disease and anaplastic large cell lymphoma (Ki-1 lymphoma). The combination of chromosomal R-banding and fluorescence in situ hybridization (FISH) with the use of two fluorescent dyes, fluorescein isothiocyanate and propidium iodide, allowed simultaneous detection of the hybridized DNA sequence and chromosomal R-banding. By this technique, the gene coding for restin (RSN) was assigned to chromosome region 12q24.31-->q24.33, while localization of the alpha-2-macroglobulin receptor (A2MR) was refined to 12q13.1-->q13.3. To further analyze the restin gene, a 500-kb YAC clone containing the gene was isolated and analyzed. A restriction map of this area is presented.

Chromosome Banding↗