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Biomedical subjects

Y Arita

Publications and source records attributed to Y Arita.

At least 55 records · Page 3Linked to original sources

Tumor necrosis factor enhances GD3 ganglioside expression in cultured human melanocytes.

Human skin melanocytes and melanocytes cultured in vitro express GM3 ganglioside almost exclusively, whereas malignant melanomas express high levels of both GM3 and GD3. We now show that treatment of cultured melanocytes with tumor necrosis factor-alpha, particularly in the presence of tetradecanoylphorbol-13-acetate, results in a change in morphology from spindle-shaped to epithelioid and greatly enhanced expression of GD3 ganglioside. This effect is specific and no other ganglioside is affected, except that GM3 expression (which is already high) is also increased. In contrast, these agents did not enhance the already high expression of GD3 on melanoma cells. This result provides an example of the plasticity of glycolipid expression in mammalian cells and their susceptibility to the influence of biological agents.

Antibodies, Monoclonal↗

Frequent expression of myeloid antigen (CD13) on immature T cells in culture.

Leukemic cells from 12 patients with lymphoblastic lymphoma (LBL) and T cell acute lymphoblastic leukemia (T-ALL) were studied to determine the inducibility of myeloid antigens in culture in the presence and absence of 12-O-tetradecanoylphorbol-13-acetate (TPA) in association with discrete phenotypic and genotypic analyses on these cells. The investigation revealed that leukemic cells corresponding to common or mature thymocytes were never induced to express any myeloid antigens, and showed rearrangements of T cell antigen receptor (TcR) beta and gamma chain genes. Concomitant examination on leukemic cells from mature T cell malignancies, including adult T cell leukemia (ATL), T cell chronic lymphocytic leukemia (T-CLL) and T cell non-Hodgkin's lymphoma (T-NHL), also failed to express myeloid antigens in culture. By contrast, one of the panmyeloid antigens, CD13 (MCS-2) antigen was induced on leukemic cells corresponding to early thymocytes in 5 out of 7 cases in TPA-added culture and in 3 cases even in TPA-free culture. All of these CD13 antigen inducible cases exhibited the germ line configurations of TcR beta and gamma chain genes except for one case of T-ALL with sole TcR gamma chain gene rearrangement. These findings suggest that primitive T cells, still not undergoing TcR gene rearrangements, retain the characteristics of multipotent progenitor cells to possess different lineage markers and are able to express myeloid antigen not exceptionally. Both phenotypically and genotypically immature thymocytes are considered to be less restricted in the differentiation pathway of hematopoietic cells committed to T cell lineage.

Antigens, Differentiation, Myelomonocytic↗

Acute transformation of chronic large granular lymphocyte leukemia associated with additional chromosome abnormality.

A patient with large granular lymphocyte (LGL) leukemia that transformed into an acute or aggressive form after 20 months of the chronic phase is reported. The patient's leukemic cells were mature, medium-sized lymphocytes with sparse azurophil granules and the surface phenotypes of the cells were CD2+, CD3-, CD11+, and CD16+. Molecular analysis showed a germ line configuration in both T-cell receptor beta-chain genes and T-cell receptor tau-chain genes. A clonal anomaly of chromosome (trisomy 8) was demonstrated in peripheral blood cells. LGL after acute transformation of the disease displayed large blastic morphology with prominent nucleoli, intense basophilic cytoplasm, and numerous granules. Karyotypic analysis demonstrated a mosaic of trisomy 8 and trisomy 8 with an additional marker chromosome. Thus, transformation of chronic LGL leukemia into an acute or aggressive form in this patient was associated with morphologic and karyotypic changes of the leukemic cells. Patients with a stable form of chronic LGL leukemia should be examined carefully for the possible acute crisis associated with a clonal evolution.

Adult↗

Immunohistochemical analysis of peripheral T-cell lymphoma in Japanese patients.

The authors immunohistochemically analyzed the phenotype of 40 cases of peripheral T-cell lymphoma, including 12 adult T-cell leukemia/lymphoma (ATL) cases. Molecular genetic analysis of the T-cell receptor beta-chain and immunoglobulin heavy chain genes were also applied to cases of angioimmunoblastic lymphadenopathy with dysproteinemia (AILD)-like lymphoma and so-called Lennert's lymphoma. Twenty non-ATL lymphomas expressed a helper/inducer phenotype, whereas only one extranodal case expressed a suppressor/cytotoxic phenotype. Three cases had a CD4-CD8- phenotype, and two cases a CD4+CD8+phenotype. No specific relationship between morphologic characteristics (LSG classification) and phenotype was found among non-ATL lymphomas. Six of eight AILD-like lymphomas had a helper/inducer phenotype. Monoclonality of neoplastic T-cells was demonstrated in six of the seven cases of AILD-like lymphoma by molecular genetic analysis. Two cases of Lennert's lymphoma also showed a helper/inducer phenotype and rearrangement of the T-cell receptor beta-chain gene. Serologically defined ATL cases had a helper/inducer phenotype except in one case that expressed both CD4 and CD8. None of the ATL cases had the CD7 antigen in this study using WT 1 as a CD7 antibody, which is in contrast with the non-ATL lymphomas in which 13 of 25 cases expressed CD7. CD25, strongly detectable in all ATL cases, was negative or weakly expressed in non-ATL lymphomas. These facts suggest that non-ATL and ATL are in the different biologic state, probably resulting from the integration of human T-cell leukemia virus type I (HTLV-I), although both are derived from helper/inducer T-cells.

Antigens, Differentiation, T-Lymphocyte↗

The relationship between free cytosolic calcium and amylase release in rat pancreatic acini.

We have studied the effects of various pancreatic secretagogues on free cytosolic calcium ([Ca2+]i) and amylase release in dispersed rat pancreatic acini, to determine the role of [Ca2+]i in stimulated enzyme secretion from the exocrine pancreas. Dispersed rat pancreatic acini were loaded with the new Ca2+-sensitive fluorescent indicator, fura-2. Resting [Ca2+]i was 110 +/- 2 nM (a mean +/- S.E.). Carbachol, caerulein, bombesin, and neuromedin B and C each caused a rapid increase in [Ca2+]i; maximal increases of 100 to 400-500 nM were reached within 20s following the secretagogue addition, and this was followed by a return to a lower sustained level within 2 min. When enzyme secretion from the acini was monitored as a function of time using a perifusion system, secretagogue-induced amylase release took a biphasic pattern consisting of an initial burst phase for a several minutes and a second sustained phase during stimulation. Although sustained amylase secretion occurred at near resting [Ca2+]i, the peak [Ca2+]i correlated with the amount of stimulated amylase release as well as with the initial release, during submaximal and maximal stimulation by these agents. At supramaximal concentrations of carbachol and caerulein, amylase release, but not the increase in [Ca2+]i, was attenuated. On the other hand, in response to supramaximal concentrations of bombesin, and neuromedin B and C, both the amount of amylase released and the peak [Ca2+]i were similar to those obtained in response to maximal concentrations. From a standpoint of time course analysis of enzyme secretion, both the first burst phase and the second sustained phase were inhibited during stimulation by 10(-3) M carbachol, compared with 10(-5) M carbachol, while supramaximal stimulation by neuromedin C caused a pattern of amylase release similar to that produced by maximal stimulation. These data suggest that in pancreatic acinar cells an increase in [Ca2+]i plays an important role in stimulus-secretion coupling; however, other factors may be indispensable in regulating enzyme secretion. Furthermore, it is suggested that there is a difference in the intracellular messenger system between carbachol and caerulein, and neurotransmitters belonging to the bombesin family, especially during supramaximal stimulations.

Amylases↗

Cross-lineage gene rearrangements in human leukemic B-precursor cells occur frequently with V-DJ rearrangements of IgH genes.

Gene configurations of immunoglobulin (Ig), T-cell antigen receptor (TCR) beta chain, and T-cell rearranging gene gamma (TRG gamma) were studied in human B-precursor lymphoblastic leukemic cells. These cells were phenotypically classified into three developmental stages (stages II through IV) according to Nadler's criteria. All of them showed the Ig heavy chain (IgH) gene rearrangement, and 67% of the cells in stage IV had the rearranged TRG gamma, albeit seldom in other stages. We further analyzed IgH gene rearrangements in detail using upstream to DH (diversity region of IgH) region probe to distinguish DJ from V-DJ recombination. All dual genotyped cells in each stage except one case in stage II showed the V-DJ rearrangements. This suggests the cross-lineage involvement of the putative recombinase, particularly in the process of V-DJ rearrangements. We next examined the transcriptional status of Ig genes as an indirect reflection of the accessibility of these genes to the recombinase. Properly spliced IgH transcripts of normal size were observed in stage IV and surface Ig positive stage, but not in stage II nor III. However, IgH transcripts of aberrant sizes were seen in stage II, III, and also IV. Cross-lineage gene rearrangements were shown to occur frequently when normally spliced IgH gene begins to be transcribed or just before this. These findings may implicate that V-DJ or V-VDJ gene rearrangements forming functional IgH genes, induce frequently TCR or TRG gene rearrangements. We propose these dual genotypes are different in origin from those observed in stem cell leukemia.

Antigens, Differentiation, B-Lymphocyte↗

Fulminant clonal expansion of large granular lymphocytes. Characterization of their morphology, phenotype, genotype, and function.

A 39-year-old woman exhibited abrupt malignant transformation of the large granular lymphocytes (LGL) after a chronic course of T gamma-lymphoproliferative disease (T gamma-LPD). The T gamma-lymphocytes were CD2+, CD3-, CD8-, CD16+, Leu7-, and Leu19+ with morphologic characteristics of LGL. Newly appearing LGL were much larger and had more prominent azurophilic granules. Although fundamentally they had the same phenotype as the LGL in chronic stage, they showed increased Ia-like antigen and decreased CD16 antigen expressions. Immunoglobulin (Ig) G-kappa type monoclonal component was detected in the patient's serum. The LGL showed a germ-line configuration for T-cell receptor (TCR) beta and gamma chain genes, whereas the clonal chromosomal abnormalities indicated the neoplastic nature of the LGL. The LGL exhibited competent natural killer (NK), interleukin 2 (IL2) activated killer (AK), and antibody-dependent cell-mediated cytotoxicity (ADCC) activities. The LGL may have derived from NK cells at their mature stage with prethymic phenotype and may have influenced the homeostasis of the patient's humoral immune response.

Adult↗

Establishment of a peripheral T-cell lymphoma cell line showing amplification of the c-myc oncogene.

A new T-cell lymphoma cell line, designated T34, was established from freshly isolated lymph node tumor cells of a patient with non-Hodgkin's diffuse large cell lymphoma. The T34 cells, as well as the parental lymphoma cells, showed mature helper/inducer immunophenotypes in that they formed spontaneous sheep erythrocyte rosettes and reacted with OKT-3 and OKT-4 monoclonal antibodies. They were negative for OKT-6, OKT-8, terminal deoxynucleotidyl transferase, WT-1, and HLA-DR antigens. Molecular analysis revealed that the T34 cells contained 8- to 16-fold amplified c-myc DNA. The same genetic change was observed in parental lymphoma cells, indicating that the c-myc amplification had occurred in vivo. There was no gross rearrangement of the c-myc DNA. The c-myc gene of the T34 cell line was actively transcribed into normal-sized c-myc mRNA. Cytogenetic analysis showed that both the T34 and the parental lymphoma cells had a near-triploid karyotype with multiple structural chromosome changes. The terminal end of the long arm of chromosome No. 8, the chromosomal locus of single-copy c-myc, was elongated (8q+ chromosome), perhaps reflecting the site of c-myc amplification. These data suggested that amplification of the c-myc oncogene played some role in progression and proliferation of this peripheral T-cell neoplasm.

Aged↗

A novel B cell line established from Ki-1-positive diffuse large cell lymphoma.

A novel cell line, designated KIS-1, was established from a patient with Ki-1-positive diffuse large cell lymphoma. Multiple phenotypic analysis of the KIS-1 cells was carried out with a total of 22 monoclonal antibodies defining hematopoietic cell subsets and lineages. The KIS-1 cells were positive for Ki-1, B4, HLA-DR, and 2D1 (common leucocyte) antigens, but were negative for the antigens reportedly specific for T cells, natural killer cells, granulocytes, monocytes, interdigitating reticulum cells and dendritic reticulum cells. The genomic analysis of the KIS-1 cells showed not only the rearrangement of JH and J kappa genes but also the probable rearrangement of C lambda genes. Moreover, the cells produced immunoglobulin lambda chains. Thus, KIS-1 was considered to be of B-cell lineage. The lymphoma-cell derivation of KIS-1 was based on the following facts. The cytochemical, immunologic, cytogenetic properties and the results of the molecular genomic analysis in the KIS-1 cells were essentially the same as those of the original tumor cells, and the KIS-1 cells were negative for Epstein-Barr virus-associated nuclear antigen. KIS-1 is the only known B-cell line derived from Ki-1-positive diffuse large cell lymphoma, and should be useful for defining the biological implications of Ki-1 antigen.

Antigens, Differentiation↗

Immunogenotypes of lymphoid malignancies; the rearrangement of T cell receptor beta chain gene can occur before the gamma chain gene rearrangement.

Immunoglobulin (Ig) and T cell receptor (TcR) gene rearrangements were analyzed in 101 cases of lymphoid malignancies in association with a surface phenotype study. In leukemias/lymphomas with mature phenotype, there is a good correlation between phenotypes and genotypes. However, in leukemias/lymphomas with immature phenotype, we found many discordances between phenotypes and genotypes, suggesting the stochastic nature of hematopoietic cell differentiation at the early stage. As for TcR beta and gamma chains, the rearrangement of gamma chain gene is considered to occur slightly prior to that of beta chain gene. However, we observed a mature T cell malignancy, adult T-cell leukemia, with rearranged beta chain gene and germ line gamma chain gene, showing the possible existence of another pathway of T cell differentiation.

Cell Differentiation↗

Receptors for fucose-binding proteins of Lotus tetragonolobus isolated from mouse embryonal carcinoma cells. Structural characteristics of the poly(N-acetyllactosamine)-type glycan.

Receptors for fucose-binding proteins of Lotus tetragonolobus were isolated from N4-1 and F9 embryonal carcinoma cells. They were glycoproteins, whose major components had apparent relative molecular masses of more than 100,000. Carbohydrates released from the receptors of N4-1 cells by hydrazinolysis were separated into three fractions by gel filtration. Binding activity to the lectin was detected in the high-molecular-mass fraction. The composition of the large glycan was characteristic of the poly (N-acetyllactosamine)-type, and glucosamine was identified as the sugar involved in the protein-carbohydrate linkage. The glycan has one fucosyl residue per four N-acetyllactosamine units. Most of the fucose was linked to the C-3 hydroxyl group of N-acetylglucosamine. No Fuc alpha 1----2Gal or Fuc alpha 1----4GlcNAc linkage was detected. The glycan had a relative molecular mass of 9000 or more and the poly(N-acetyllactosamine) units were branched. N-Acetylgalactosamine residues were detected in non-reducing ends of at least a part of the glycan. Therefore, the glycan has a more complex structure than the related one from human granulocytes, although both of them have Fuc alpha 1----3GlcNAc termini.

Animals↗

Correlation between glycoconjugate expression and fucosyltransferase activity in human colorectal carcinoma.

Using the surgically extirpated specimens from 9 patients with colorectal carcinoma, fucosyltransferase activities in the carcinoma tissue and the normal mucosa were measured and were compared with the histochemical findings of glycoconjugates which were shown by staining with lectins reacting with blood group antigens and related substances. The fucosyltransferase activities of the carcinoma tissue were well correlated with the overall findings of lectin stainings after neuraminidase treatment. The more intense the carcinoma tissue was stained, the higher the fucosyltransferase activity was shown. However, there were marked differences in the fucosyltransferase activities by the portions measured, depending upon the relative amount of carcinoma tissue and interstitial tissue; in the invasive portion with less carcinoma tissue, the activity was generally low in comparison with that in the surface area where carcinoma tissue was rather abundant. Thus, the morphological and lectin histochemical finding are of paramount importance for the evaluation of glycosyltransferase activity in human colorectal carcinoma.

Adult↗

Lymphoma cell line (FL-18) and Epstein-Barr virus-carrying cell line (FL-18-EB) obtained from a patient with follicular lymphoma: monoclonal derivation and different properties.

A novel cell line, FL-18, was established from the pleural effusion of a patient with follicular small cleaved cell lymphoma. At the same time, an Epstein-Barr virus (EBV) nuclear antigen (EBNA)-positive cell line, FL-18-EB, was established from the EBV-infected culture of the same pleural effusion cells. Both cell lines had the same monoclonal surface immunoglobulin (IgG kappa), and they had the same karyotype as that of the fresh pleural effusion cells in which a reciprocal translocation between the long arm of chromosomes 14 and 18 [t(14;18)(q32;q21)] was detected. Gene rearrangement analysis of immunoglobulin heavy-chain gene (JH) and kappa light-chain gene (J kappa) showed the same rearranged configuration in the two cell lines; however, some morphological and phenotypic differences were found. The FL-18-EB cells, which were morphologically similar to common EBNA-positive lymphoblastoid cell lines of normal B cell origin at the initial phase of culture, were larger than the FL-18 cells and contained multinucleated giant cells. The FL-18 cells lacked cytoplasmic immunoglobulin and were positive for common acute lymphoblastic leukemia antigen (CALLA), whereas the FL-18-EB cells had cytoplasmic immunoglobulin and were negative for CALLA. Thus, the phenotype of FL-18-EB seems to be a result of a shift by EBV infection to a more mature stage in the B cell differentiation pathway than that of FL-18. The paired availability of EBV-free and EBV-infected cell lines of a neoplastic clone is unique and valuable in considering EBV infectibility of neoplastic B cells and resultant phenotypic changes.

Aged↗

Differential distribution of receptors for two fucose-binding lectins in embryos and adult tissues of the mouse.

Ulex europaeus agglutinin-I (UEA-I) recognizes the Fuc alpha 1----2 Gal linkage. Receptors for UEA-I were not detected in mouse embryos until the 13th day of embryo-genesis, except for their temporary expression in early trophectoderm cells. In adult mice, UEA-I receptors were detected at various sites, including cells of the digestive tracts, the bronchial epithelium, Hassall's corpuscle of the thymus, and the skin. The fucose-binding protein of Lotus tetragonolobus (FBP) is another lectin that recognizes fucosyl residues. The distribution of FBP receptors was significantly different from that of UEA-I receptors. FBP receptors were first detected in late 8-cell embryos and were expressed in the embryonic ectoderm, visceral endoderm, and trophoblastic giant cells in egg-cylinders. At later stages, the distribution of FBP receptors became restricted to certain parts of the embryo. In the adult, the distribution of FBP receptors was more restricted than that of UEA-I receptors. Particularly in embryos before the 11th day of gestation, the distribution of FBP receptors resembled that of SSEA-1, which is defined by the Gal beta 1----4(Fuc alpha 1----3) GlcNAc linkage. From the specificity of FBP, we inferred that the disappearance of SSEA-1 and FBP receptors during embryogenesis is not the result of alpha 1----2 fucosylation of the terminal galactosyl residue in the determinant. The fact that the expression of two fucose-related cell-surface markers, i.e., UEA-I receptors and SSEA-1 (or FBP receptors), is developmentally regulated in an entirely different fashion is an excellent example illustrating the precise control of differentiation-dependent alterations in cell-surface carbohydrates.

Aging↗

Establishment of a novel acute monoblastic leukemia cell line (YK-M2) having a near-triploid karyotype.

The YK-M2 cell line was established from the peripheral blood of a patient with acute monoblastic leukemia in whom an anterior mediastinal tumor preceded the peripheral blood manifestation. The established cells grew in a single cell suspension with a doubling time of 60 h and consisted of primitive monoblastic cells. The cells were 52% positive for peroxidase staining and manifested strongly positive activity of alpha-naphthyl acetate esterase, which was completely inhibited by sodium fluoride. The cells showed strong expression of Fc gamma receptors and phagocytosed sensitized ox erythrocytes. When the cells were incubated with 1 alpha,25-dihydroxy-vitamin D3, they were induced to differentiate into mature monocyte-macrophage-like cells, which reduced the nitroblue tetrazolium dye and released a small amount of the superoxide anion. Cytogenetic studies revealed that the cells had a near-triploid karyotype with a modal chromosome number of 68, and the short arm of one No. 17 chromosome was deleted [del(17)(p11)]. The YK-M2 cell line is particularly unique in that the cells retained the polyploid karyotype that may be an initial cytogenetic change in the malignant transformation of the parent leukemia cells.

Adult↗