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M Eray

Publications and source records attributed to M Eray.

8 recordsLinked to original sources

Follicular lymphoma cell lines, an in vitro model for antigenic selection and cytokine-mediated growth regulation of germinal centre B cells.

In the periphery, B cells differentiate in germinal centres (GCs) of secondary lymphoid organs. Isolated GC cells die quickly in vitro by apoptosis. Therefore, cell lines originating from follicular lymphomas, which are the malignant counterparts of GC B cells, would provide a stable in vitro model to study the immunobiology of GC B cells. We have established three novel human follicular lymphoma cell lines that were characterized with special reference to immunophenotypic features, response to B-cell receptor (BCR) triggering, response to cytokines and cytokine mRNA expression. One of the cell lines, HF-1A3, has a phenotype of a centrocyte. It expresses surface immunoglobulin G (sIgG) and dies by apoptosis following BCR cross-linking. Co-stimulation with interleukin-6 (IL-6), IL-15 or interferon-gamma (IFN-gamma) rescues HF-1A3 cells from BCR-induced apoptosis. The second cell line, HF-28, also represents phenotypically an IgG+ centrocyte. Ligation of its BCR leads to the cell-cycle arrest at G1 instead of apoptosis. HF-28 cells express both CD45RA and RO isoforms, which is unusual in B lymphocytes apart from plasma cells, thus suggesting a transition to plasma cell phenotype. The third cell line, HF-4.9, which phenotypically represents an sIgM+ centroblast, responds by proliferation to BCR cross-linking. These cell lines offer a unique in vitro model to study antigenic selection and cytokine-mediated growth regulation of human GC B cells.

Antigenic Variation↗

Flow cytometric analysis of apoptotic subpopulations with a combination of annexin V-FITC, propidium iodide, and SYTO 17.

BACKGROUND: We have previously characterized apoptotic cell death induced in a follicular lymphoma cell line, HF-1, after triggering via the B-cell receptor (BCR) or treatment with Ca(2+) Ionophore A23187. We analyzed the kinetics of apoptosis induced by these two treatments, as two alternative models of classical apoptosis, by flow cytometry using a novel combination of cytofluorometric stains. METHODS: Cells were stained with a combination of Annexin V-FITC, propidium iodide (PI), and SYTO 17 and analyzed by a two-laser flow cytometry system using 488-nm argon and 633-nm HeNe air-cooled lasers. RESULTS: In both apoptotic models, the first apoptotic cells were detected by SYTO 17 staining. The alteration in SYTO 17 staining intensity was followed by an increased uptake of PI. Finally, the apoptotic cells were labeled with Annexin V in BCR-induced apoptosis. On the contrary, on treatment with Ca(2+) Ionophore A23187, cells became positive for Annexin V earlier than for PI. CONCLUSIONS: The novel cytofluorometric dye, SYTO 17, discriminates apoptotic alterations before Annexin V and PI. PI also discriminates apoptotic alterations before the loss of plasma membrane asymmetry by BCR but not by Ca(2+) Ionophore A23187-induced apoptosis. Finally, the combination of these three cytofluorometric dyes allows effective detection of apoptotic subpopulations and ordering of apoptotic events by flow cytometry.

Annexin A5↗

p72syk protein tyrosine kinase: an early transducer of sIgG-triggered apoptotic signalling in human follicular lymphoma cells.

Cross-linking of B cell antigen receptor (sIg) elicits different biological responses, including cell activation, proliferation, differentiation, anergy and cell death depending on the maturational stage of the cell. We established the tumor cell lines HF-1.3.4 and HF-4-9 from two patients with follicular lymphoma. Both cell lines carry the characteristic t(14;18) chromosomal translocation and display constitutively overexpressed Bcl-2. HF-1.3.4 represents a mature B cell with sIgG and several somatic hypermutations in its Ig genes, while HF-4-9 is a less mature B cell, expressing sIgM and only a few mutations in its Ig genes. Cross-linking of sIg with antibodies leads to apoptosis in HF-1.3.4 cells but not in HF-4-9 cells. Triggering of sIg induced, within seconds, identical tyrosine phosphorylation of p53/56lyn protein tyrosine kinase (PTK) and p55blk PTK in both of the cell lines; however, a prominent tyrosine phosphorylation and activation of p72syk PTK only in HF-1.3.4 cells. We conclude that p72syk PTK is of importance in relaying apoptotic signalling upon sIg cross-linking in the HF-1.3.4 cell line. Given the mature phenotype of the HF-1.3.4 cell line it serves as a model for the late negative selection during B cell ontogeny. Moreover, our results question the current concept that a constitutive overexpression of BcI-2 confers resistance to sIg ligation-induced apoptosis in lymphoma cells.

Apoptosis↗

A highly stable and selective biosensor using modified nicotinic acetylcholine receptor (nAChR).

Methods for developing stable, sensitive and selective bilayer lipid membrane (BLM)-based biosensors are discussed. Stable BLMs were formed over micromachined polyimide apertures. Selective sensors were made by incorporating nicotinic acetylcholine receptors (nAChRs) modified with bispecific antibodies (BsAbs). When two BsAbs, attached to one nAChR, encounter antigen (Ag), channels are blocked. Sensitivity to single Ag molecules would be possible by monitoring closure of individual nAChRs.

Animals↗

Cross-linking of surface IgG induces apoptosis in a bcl-2 expressing human follicular lymphoma line of mature B cell phenotype.

We have established three lymphoma cell lines, HF-1 from one follicular lymphoma (FL) patient, and HF-4 and HF-9 from another. All cell lines carry the characteristic t(14;18) chromosomal translocation and express constitutively the bcl-2 gene product (Bcl-2 protein). Cross-linking of their surface membrane Igs (sIgs) with relevant antibodies triggers a vigorous calcium signal in all three lines but only HF-1 is induced to apoptosis. Treatment with anti-Ig arrests the proliferation of HF-1 within 6-12 h, nucleosomal DNA fragmentation is evident in 18 h and a morphologically complete apoptosis is seen in 24-48 h. While bcl-2 was expressed at equal levels in all lines, the apoptosis-sensitive HF-1 line displayed a much lower expression of c-myc than seen in the apoptosis-resistant line. This finding challenges the concept that expression of bcl-2 per se renders resistance to apoptosis but that the balance between the expression of bcl-2 and c-myc may dictate the outcome of sIg cross-linking. HF-1 is a unique, phenotypically mature human B cell line expressing surface IgG. This cell line offers a new tool for investigations on apoptosis and induction of tolerance in mature B lymphocytes. Our results suggest that some FLs may be amenable to anti-cancer treatment based on anti-sIg antibody induced apoptosis.

Apoptosis↗

Somatic hypermutations in the immunoglobulin genes of two new human lymphoma lines of lymphatic follicle origin.

Variable immunoglobulin heavy-chain regions (VDJ) of two newly established human lymphoma cell lines (HF-1 and HF-4) were sequenced. The most homologous germline VH gene found for both the HF-1 and HF-4 sequences was VH26 of the VH3a (V gene) family (82% and 91% homologies, respectively). The JH region of the HF-4 heavy-chain sequence contained two nucleotide differences compared to the published germline JH3 gene. The DHJH region of the HF-1 gene had a record high number (20%) of somatic mutations. The numerous hypermutations found in the HF-1 cell line support the hypothesis that in some human follicular lymphomas, mutations continue to accumulate in immunoglobulin genes during the malignant growth. Follicular lymphoma cell lines, which have an active mutational machinery, in future may help to solve the molecular events behind the somatic hypermutations modifying immunoglobulin genes of B lymphocytes.

Base Sequence↗

Implanted solid human tumours grow under the renal capsule of cyclosporin-immunosuppressed rats.

Cyclosporin (CsA) is a potent immunosuppressive drug widely used in organ transplantation. We transplanted fresh surgical samples from human solid malignant tumours into 45 CsA-immunosuppressed rats. Eight out of nine tumour types grew and remained viable for 5 weeks or more in at least two of the transplanted rats. In 29 rats (64%) a distinct growth of primary human tumours was recorded. Five malignancies (intestinal-type gastric carcinoma, adenocarcinoma of the lung, lymph node metastasis of a testicular teratocarcinoma, soft tissue malignant fibrous histiocytoma (MFH), and small-cell sarcoma) showed invasive and progressive growth. In all five cases the largest tumours were 0.9 cm or over in diameter when the rats were killed 5-9 weeks after transplantation. In three cases (adenocarcinoma of the colon, hypernephroma, and a second MFH) the growth of the implants under the kidney capsule was slow, but small living tumour transplants were still found 3-6 weeks later. In every case the microscopic morphology of the xenograft tumour was identical with the original tumour. In two cases the primary xenografts (teratocarcinoma and small-cell sarcoma) were retransplanted into 11 CsA-immunosuppressed rats. In both types the second passage tumours grew, and the take-off and growth rates were comparable to the primary xenografts. Cyclosporin-treated laboratory rats are an alternative to immunodeficient nude and SCID mice for growing fresh human tumour transplants in vivo. Although a few infections were encountered, most of the rats survived the CsA treatment well for up to 2 months.

Animals↗

Two novel human B-cell lymphoma lines of lymphatic follicle origin: cytogenetic, molecular genetic and histopathological characterisation.

Two B-cell lines, designated as HF-1 and HF-4, were characterised. The cell lines have complicated karyotype abnormalities including a 14;18 translocation and an 8q24 breakpoint originating from t(2;8)(p11;q24) (HF-1) or t(1;8)(p21;q24) (HF-4). The lines have BCL2 rearrangement and they are positive for CD19, CD20, CD22, CD39. HF-1 is also positive for IgG, and HF-4 is positive for IgM and IgD. On Northern blot analyses, the 2.6-kb and 4.2-kb transcripts corresponding to the major transcripts of CMYC and BCL2, respectively, were seen. In Western blot as well as in FACS (fluorescence-activated cell sorting) analysis the presence of BCL2 protein in the both HF-1 and HF-4 cells was demonstrated. The cell lines are expected to serve as an important tool in the study of the chromosomal mechanism activating cellular oncogenes, the somatic hypermutation mechanism of antigen-activated B cells and the apoptosis of B cells.

Base Sequence↗