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Biomedical subjects

M Raffeld

Publications and source records attributed to M Raffeld.

At least 145 records · Page 8Linked to original sources

Translocation of bcl-2 gene in non-Hodgkin's lymphomas in Hong Kong Chinese.

The close association between translocation of the proto-oncogene bcl-2 and follicular lymphomas has been well established in Caucasian patients and the de-regulation of bcl-2 has been implicated in follicular lymphomagenesis. Similar molecular structural alterations have also been detected in diffuse lymphomas with a previous history of a follicular pattern as well as in a smaller proportion of de novo diffuse lymphomas. There is a lower incidence of follicular lymphomas in Chinese. In order to investigate further this phenomenon, we used bcl-2 translocation as a genetic marker of follicular lymphomas, to study 31 cases of B cell non-Hodgkin's lymphomas in Chinese patients by Southern blot analysis. Eight out of 16 cases of follicular lymphomas showed bcl-2 translocation with involvement of the major breakpoint region (MBR). Six of these cases utilized breakpoints within the 4.3 kb HindIII fragment, while in two cases the breakpoints were more dispersed, but still within the BamHI fragment. An additional case of follicular lymphoma showed translocation of bcl-2 gene with involvement of the minor cluster region (mcr), making a total of nine out of 16. None of the 15 cases of diffuse lymphomas showed similar molecular structural alterations. These data show that bcl-2 translocation is present in 57% of follicular lymphomas in Chinese patients, and support the notion that bcl-2 translocation is a consistent marker for follicular lymphomas irrespective of ethnic differences. As the translocation is not detected in the diffuse lymphomas, there is no evidence to suggest that the low incidence of follicular lymphomas in Chinese patients is due to a greater tendency for follicular tumours to progress rapidly and present as diffuse lymphomas.

Blotting, Southern↗

Mechanism of bcl-2 activation in human follicular lymphoma.

The t(14; 18) chromosomal translocation of human follicular lymphoma recombines the bcl-2 gene from chromosome 18 with the immunoglobulin heavy chain joining region. In the t(14; 18) translocation bearing cell line SU-DHL-6, this results not only in an inappropriately high rate of bcl-2 transcription for a mature B cell, but also in two potentially critical point mutations. To determine the relative importance of these mutations, we searched for their presence in DNA from the involved lymph nodes of 12 patients with t(14; 18) follicular lymphoma. bcl-2 genomic sequences were specifically amplified by the polymerase chain reaction technique and then directly sequenced. None of the 12 samples analysed revealed the codon 7 or codon 129 mutation detected in SU-DHL-6. We conclude that abnormal expression of bcl-2 rather than structural alterations at codon 7 or 129 play an important role in the disordered growth and differentiation of follicular B-cell lymphoma.

B-Lymphocytes↗

Chromosomal translocation t(14;19) as indicated by bcl-3 rearrangement is a rare phenomenon in non-Hodgkin's lymphoma and chronic lymphocytic leukemia: a molecular genetic analysis of 176 cases.

Using a probe for the newly described bcl-3 gene near the breakpoint of the t(14;19), 176 cases of non-Hodgkin lymphoma and B cell chronic lymphocytic leukemia were analyzed. Rearrangement of the bcl-3 gene was found in only one case; a follicular lymphoma involving the salivary gland that had progressed to a diffuse large cell lymphoma. We conclude that rearrangement of the bcl-3 gene as detected by our method occurs rarely in mature B or T cell neoplasms.

B-Cell Lymphoma 3 Protein↗

Molecular genetics and the diagnosis of lymphoma.

Gene rearrangement analysis has emerged as a precise laboratory aid in the diagnosis and classification of malignant lymphoma and leukemia. Both clonality and lineage can be identified in lymphoid neoplasms by the demonstration of rearrangements of antigen receptor genes of the immunoglobulin supergene family--immunoglobulin and T-cell receptor genes. Rearrangement analysis is not only useful in differential diagnosis and classification, but also serves as a sensitive unique clonal marker to detect early occult recurrence in patients after therapy. In a similar manner, chromosomal translocations associated with specific disease types can be detected with DNA probes in Southern blot analysis without the use of conventional cytogenetics. Using this approach, one may diagnose specific chromosomal translocations associated with histologic types of lymphoma and leukemia. When appropriately applied, DNA rearrangement analysis complements conventional histology, immunophenotyping, and cytogenetics.

Biomarkers, Tumor↗

Diagnostic interpretation of T gamma gene rearrangement: effect of polyclonal T cells.

Rearrangement of the T gamma gene, which encodes one chain of the second T-cell receptor, is an early event in the development of T lymphocytes. In contrast to the T-cell receptor beta chain gene, the T gamma gene contains a very limited V region gene repertoire, accounting for only 8 to 10 rearranging V gamma genes. As a consequence of the limited number of V gamma genes, only seven or eight nongermline restriction fragments are displayed, even by highly polyclonal T cells. Here, we demonstrate that T gamma gene analysis produces a picture of pseudoclonality among polyclonal T lymphocytes accompanying B-cell lymphoma, T-cell lymphoma, and Hodgkin's disease. As little as 10% contamination by polyclonal T lymphocytes is sufficient to detect rearrangements in both clinical samples and in a controlled sensitivity assay. Conversely, polyclonal T cells were found to obscure T-cell clones when polyclonal T cells represented as little as 30% of total cells. We conclude that, due to the unusual genomic structure of the T gamma gene, rearrangement analysis of the T gamma gene carries a significant limitation as a marker of clonality and lineage.

B-Lymphocytes↗

Detection of occult follicular lymphoma by specific DNA amplification.

To detect occult lymphoma, the polymerase chain reaction (PCR) technique was used to amplify joined bcl-2/JH DNA sequences at the juncture of the t(14:18) translocation in follicular lymphoma. Using the heat-stable DNA polymerase Taq and automated cycling of the reaction, we were able to detect as few as one to two copies of bcl-2/JH. Under these conditions, PCR proved to be at least 10,000-fold more sensitive than either conventional flow cytometry or Southern blot restriction analysis. In addition, genomic DNA sequences of four lymphomas confirmed that the size of the amplified segment serves as a tumor marker. Direct application of PCR to patient staging revealed occult malignant lymphoma in tissue otherwise considered uninvolved by standard criteria. We conclude that the striking enhancement in diagnostic sensitivity attained by DNA amplification can serve as a valuable adjunct to the staging and clinical monitoring of follicular lymphoma.

Chromosomes, Human, Pair 14↗

Detection of human B-lymphotropic virus (human herpesvirus 6) sequences in B cell lymphoma tissues of three patients.

A survey for HBLV (human B-lymphotropic herpesvirus or human herpesvirus 6) sequences by Southern blot analyses was performed on DNA obtained from a variety of pathologically defined tissues, including a number of lymphomas, leukemias, and tissues from other hematologic disorders. Of the over 50 specimens studied, viral sequences were detected in three lymphomas of B cell derivation: an Epstein-Barr virus-positive African Burkitt's lymphoma, a follicular large cell lymphoma (nodular histocytic lymphoma), and two Epstein-Barr virus-negative tumors from a patient with Sjogren's syndrome. These results are the first indication of HBLV sequences associated with B cell tumors in a limited number of cases and raise the possibility that the virus might be involved in the genesis of some B cell tumors.

Aged↗

Clonal evolution of t(14;18) follicular lymphomas demonstrated by immunoglobulin genes and the 18q21 major breakpoint region.

A 2.8-kilobase major breakpoint region on chromosome segment 18q21 is the site of most t(14;18) translocations typical of human follicular lymphomas. Breaks are focused at the 5' end of joining (JH) regions of immunoglobulin (Ig) on chromosome 14, indicating that the translocation occurs at a pre-B-cell stage during attempted heavy (H) chain joining. A new gene from 18q21 (Bcl-2) is placed in the H chain locus creating a unique, translocation-specific JH;18q21 rearrangement that presumably represents a transformation event. In addition, normal Ig gene joining occurs in a H before light (L) chain and K before lambda cascade, creating ordered clonal markers. These serial markers were examined to determine if variations in Ig gene patterns during the natural history of lymphomas represent the emergence of truly separate neoplasms or heterogeneity of a single neoplasm. We examined 45 serial biopsies from 16 B follicular lymphoma patients; six cases showed variation in Ig gene patterns over time. Seven individuals had a detectable JH;18q21 rearrangement present, and it remained unchanged over 5-10 years. Further rearrangements of H chain genes occurred on the normal chromosome 14 within evolving subclones of the original tumor. Lambda L chains also underwent additional rearrangements in two instances, while K gene patterns remained unchanged. All variations in the normal H and L chain genes were 2 degrees rearrangements occurring at a mature B-cell stage following the initial successful rearrangement of a H and L chain. In contrast the t(14;18) breakpoint was conserved in each individual, indicating that evolving neoplastic subpopulations arose from a common clonal progenitor cell.

Alleles↗

Effects of suramin on the function and structure of the adrenal cortex in the cynomolgus monkey.

There have been reports of adrenal failure in patients treated with suramin, an agent that has recently been used as therapy for acquired immune deficiency syndrome. We conducted this study to assess the effect of suramin on adrenal function and structure in a primate, the cynomolgus monkey. Five male monkeys were treated with suramin (800 mg/m2, im) once a week, for 5 weeks. Five other animals (controls) received saline. The treated animals had progressive elevations of plasma ACTH (P less than 0.05) and PRA (P less than 0.02) and decreased serum cortisol responses 30 min after the administration of synthetic ACTH (P less than 0.05) compared to controls. There was disruption of the architecture of the adrenal cortex, a diffuse inflammatory cell infiltrate, and thinning of the zona glomerulosa and zona fasciculata in the suramin-treated animals. We conclude that suramin is toxic to adrenal cortical tissue and might be useful in treating conditions with adrenal cortical hyperfunction, such as adrenal cortical carcinoma and Cushing's syndrome.

Adrenal Cortex↗

Refinement of lymphoma cytogenetics by the chromosome 18q21 major breakpoint region.

A small (2.8-kilobase, kb) major breakpoint region localized to segment 18q21 rearranges in greater than 70% of t(14;18)(q32;q21) lymphomas. This rearrangement interrupts the Bcl-2 gene and introduces it into the Ig locus at 14q32. The rearrangement between the joining region (JH) of Ig on chromosome 14 and the 18q21 region creates a translocation-specific DNA rearrangement. We generated probes that distinguish the 14;18 juncture on the derivative (der) 14 and der (18) chromosomes, providing a molecular approach to t(14;18) identification. Approximately 60% of unselected follicular lymphomas, 20% of diffuse large cell lymphomas, and 50% of adult undifferentiated non-Burkitt lymphomas demonstrated 14;18 rearrangements within the major breakpoint region. Examination of DNA for 14;18 rearrangements resolved the identity of 14q+ chromosomes in two patient's cells that lacked an obvious reciprocal partner. Identification of the exact restriction fragments that mediate translocations complements routine cytogenetics. The detection of DNA rearrangements does not require dividing cells or the presence of an identifiable reciprocal partner and can detect clonal translocation rearrangements when the neoplastic cells are only a minority of all cells present.

Chromosome Banding↗

Rearranged antigen receptor genes in Hodgkin's disease.

Despite intensive efforts using a wide variety of approaches, the cellular lineage and clonality of the abnormal cells of Hodgkin's disease have remained an enigma. In the present study, cell separation techniques that enriched for Reed-Sternberg cells and their variants were used to generate sufficient percentages of abnormal cells to allow detection of rearrangements in these cell fractions. DNA from the involved tissues of eight Hodgkin's disease patients was subjected to Southern blot analysis to detect rearrangements of T cell antigen receptor genes and immunoglobulin genes. Immunoglobulin gene rearrangements were found in three of five cases in which Reed-Sternberg cells and their variants were enriched by cell separation techniques to cell frequencies greater than 1%. Rearrangements of immunoglobulin heavy chain genes occurred in two cases, and a lambda light chain gene rearrangement occurred in a third case. Rearrangements were not detected in lymphocyte fractions or in unseparated cells prepared from the same tissues. The putative Hodgkin's cell line, L428, also contained rearrangements of immunoglobulin heavy and kappa and lambda light chain genes and, in addition, harbored a single T cell receptor beta gene rearrangement. These findings indicate that Reed-Sternberg cell-enriched fractions contain clonal cell populations and provide a lead, at the molecular genetic level, to a possible lymphoid derivation of the Reed-Sternberg cell.

Antigens, Surface↗

3A1 (CD7) expression precedes T beta gene rearrangements in precursor T (lymphoblastic) neoplasms.

The phenotypes of early stages of T cell maturation are reflected by precursor T (lymphoblastic) neoplasms. In the present study, a series of such neoplasms was analyzed to reveal the developmental association of the expression of stage-related cell surface markers and T cell receptor gene rearrangement. Rearrangements of the T cell receptor beta-chain (T beta) gene were found in most, but not all, cases (88%) of T cell lymphoblastic neoplasms. T beta gene rearrangement preceded surface expression of the T cell receptor-linked molecular complex T3. Of all monoclonal anti-T cell antibodies tested, only antibody 3A1 was capable of reacting with neoplastic cells from all cases irrespective of the occurrence of T cell receptor gene rearrangements. In contrast, markers T1 and T11, normally expressed by mature T cells, were absent from the neoplastic cells in many cases (73% and 60% positive cases, respectively). Thus, antibody 3A1 is a valuable probe for the identification of T lymphoblastic neoplasms since its target antigen is consistently expressed and does not require prior T beta gene rearrangement. Furthermore, expression of 3A1 prior to T beta gene rearrangement suggests that it may be a cell surface protein that participates in the triggering of T cell receptor gene rearrangement and expression. It is concluded that precursor T cell neoplasms display an early T cell development hierarchy that, in sequence, consists of 3A1 expression, T beta gene rearrangements, and surface T3 expression.

Cell Differentiation↗

Spontaneous alteration of idiotype in a monoclonal B-cell lymphoma. Escape from detection by anti-idiotype.

The surface immunoglobulin of B-cell neoplasms provides a specific point of attack for potential antibody therapy. The capacity of anti-idiotype antibody to home to the target neoplasm requires that the idiotype be unique and that it be expressed by every cell in the neoplastic clone. We describe the evolution of an altered idiotype in a follicular lymphoma that resulted in escape from laboratory detection by monoclonal anti-idiotype antibody. This was not due to the emergence of a second (biclonal) lymphoma, since all the neoplastic cells were otherwise identical both phenotypically and genotypically, as determined by flow cytometry and genomic DNA (Southern blot) hybridization, respectively. All cells expressed the same B-cell immunotype and bore a constant amount of IgMk. The demonstration of a single configuration of immunoglobulin-gene DNA confirmed monoclonality and established that the change in idiotype was not a result of new gene rearrangements but was more likely due to somatic mutation of the variable region--a process presumed to occur naturally in B cells. These data demonstrate the lability of idiotype expression and define a mechanism by which B-cell neoplasms may become unresponsive to anti-idiotype therapy.

Adult↗

Azacytidine-induced tumorigenesis of CHEF/18 cells: correlated DNA methylation and chromosome changes.

5-Azacytidine (azaC), a drug that induces decreased methylation of DNA in mammalian cells, was shown previously to induce differentiation of mesenchymal cell types in CHEF/18 cells (Chinese hamster embryo fibroblasts). This paper describes the effectiveness of azaC in inducing tumorigenicity in CHEF/18 cells, previously shown to be nontumorigenic stable diploids. A short exposure of growing cells to 3 microM azaC induced tumor-forming ability in CHEF/18 stem cells. Pre-adipocyte clones and subclones derived from CHEF/18 by prior treatment with azaC were also found to be tumorigenic. Pre-adipocytes previously induced by insulin in the absence of azaC were mostly nontumorigenic, but one clone produced tumors and gave rise to both tumorigenic and nontumorigenic subclones. Karyotype analysis of 41 clones and subclones from azaC-induced and insulin-induced pre-adipocytes revealed a complete correlation between tumor-forming ability and the presence of trisomy for chromosome 3q. In addition, the tumorigenic and tumor-derived lines were demethylated at specific C-C-G-G sites in the preproinsulin, Ha-ras, and Ki-ras genes as revealed by blot hybridization to Msp I- and Hpa II-digested DNAs, whereas the nontumorigenic lines resembled the CHEF/18 controls. This three-way correlation between tumorigenicity, trisomy for 3q, and specific demethylation suggests that decreased DNA methylation may be involved both in differentiation and in tumorigenicity, and that azaC may induce chromosomal aberrations as well as altering DNA methylation.

Adipose Tissue↗

Rearranging antigen-receptor genes in enriched Reed-Sternberg cell fractions of Hodgkin's disease.

Molecular genetic analysis of rearranging antigen-receptor genes in non-Hodgkin's lymphomas has revealed the clonality and lineage in the majority of cases. In an analogous approach, we sought to apply gene rearrangement analysis to Hodgkin's disease to understand better the clonality and origin of this disorder. However, the putative neoplastic cell of Hodgkin's disease, the Reed-Sternberg cell and its variants, is extraordinarily rare in most cases of Hodgkin's disease. On the average, Reed-Sternberg cells and variants represent 0.1 per cent of total cell suspensions of nodular sclerosing Hodgkin's disease. As this frequency is below the minimum threshold of sensitivity of the Southern blot assay, we attempted to enrich for Reed-Sternberg cells before DNA extraction and analysis. Using either elutrition or Percoll density gradient centrifugation, we were able to enrich the percentage of Reed-Sternberg cells and variants to above 1 per cent in five cases of nodular sclerosing Hodgkin's disease. In three of these cases, immunoglobulin gene rearrangements were identified, but no T cell receptor gene rearrangements were seen. No rearrangements were detected in unseparated cells or in the Reed-Sternberg cell-depleted fractions. In addition, the L428 Hodgkin's disease cell line was found to have one rearranged and one deleted heavy-chain gene, a rearranged kappa gene, a rearranged lambda gene, and a single rearranged beta allele. No rearrangements of the T gamma gene were found in L428. Taken together, these findings indicate that clonal cell populations are present in Hodgkin's disease and suggest the possibility of a clonally expanded lymphoid cell in this disorder.

Genes, Immunoglobulin↗

Molecular analysis of an ataxia telangiectasia T-cell clone with a chromosomal translocation t(14;18)--evidence for a breakpoint in the T-cell receptor delta-chain gene.

We established a clonal T-cell line with a reciprocal chromosomal translocation t(14;18)(q11;q23) from a patient with ataxia telangiectasia (AT) and T-cell chronic lymphocytic leukemia (T-CLL). The tumor cells and the derived T-cell line were compared with respect to phenotype, karyotype, and rearrangement pattern. Restriction fragment analyses of the T-cell receptor (TCR)-delta gene, which is located within the TCR-alpha gene on chromosome 14q11, indicated that the breakpoint is located within the TCR-delta locus, splitting the TCR-delta gene between the variable and joining segments. This specific chromosomal translocation was only detected in the derived T-cell line and may be involved in the genesis of T-cell malignancies in AT.

Ataxia Telangiectasia↗