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Biomedical subjects

R Kamiyama

Publications and source records attributed to R Kamiyama.

At least 19 recordsLinked to original sources

A steroidogenic cell line with differentiation potential from mouse granulosa cells, transfected with Ad4BP and SV40 large T antigen genes.

Several steroidogenic cell lines of granulosa cells (GC) have been used to elucidate differentiation mechanisms of GC during folliculogenesis. These cell lines, however, are of limited usefulness since they have lost some of their differentiation potential. The transcription factor adrenal-4 binding protein (Ad4BP), also known as steroidogenic factor-1 or NR5A1, is essential for the expression of all P-450 steroidogenic enzymes. By transfection with the Ad4BP gene together with SV40 DNA, we have generated several steroidogenic cell lines. One selective clone, named 4B2, retained its steroidogenic potential and was therefore analyzed in depth. This cell line responded to 8-Br-cAMP by displaying differentiation characteristics similar to those occurring in the differentiation process of primary cultured GC, including enhanced progesterone secretion, a cell shape change from a fibroblastic to epithelioid conformation, elongated mitochondria, increased gap junction formation and inhibition of cell proliferation. Prostaglandin E2 (PGE2), an intraovarian regulator of GC, stimulated cAMP production, and this eicosanoid, like 8-Br-cAMP, induced differentiation properties with the exception of cell conformation in 4B2 cells. These results suggest that expression of Ad4BP may provide the basis for a repertoire of cAMP-sensitive differentiation properties, including morphological alterations and growth inhibition. Thus, the 4B2 cell line may serve as a tool for elucidation of differentiation mechanisms that are under the control of Ad4BP.

8-Bromo Cyclic Adenosine Monophosphate↗

Age-related hypermethylation of the hMLH1 promoter in gastric cancers.

To determine whether methylation of the hMLH1 promoter is related to increasing age and gastric carcinogenesis, we examined hMLH1 methylation and expression in 100 gastric cancers. hMLH1 methylation and aberrant protein expression were observed in 9 and 13 cancers, respectively. Normal and intestinal metaplastic tissues adjacent to cancers with hypermethylation did not exhibit any hMLH1 methylation, indicating that it may be specific to gastric cancers. The frequency of hMLH1 methylation significantly increased with age. These results suggest that hMLH1 methylation plays an important role in gastric carcinogenesis in old people.

Adaptor Proteins, Signal Transducing↗

Molecular characterization of the genomic breakpoint junction in the t(11;18) (q21;q21) translocation of a gastric MALT lymphoma.

The t(11;18) translocation, fusing the API2 and MALT1 genes, is one of the most frequent chromosomal translocations associated with mucosa-associated lymphoid tissue (MALT) lymphomas. The translocation breakpoints have been cloned and characterized at the mRNA sequence level. Although the genomic organization of the API2 gene has been described, hitherto the genomic sequence of MALT1 remains unknown. To gain some insight into the mechanism that generates this translocation, we cloned and sequenced an API2-MALT1 fused transcript as well as genomic DNA of the t(11;18) translocation from a MALT lymphoma. We localized the API2 breakpoint within intron 7. Nucleotide sequence analysis revealed that the genomic breakpoint junction possesses the consensus heptamers of immunoglobulin V(D)J recombination signal sequences, all the matches being completely present on the API2 allele and five of seven matches on the MALT1 allele. These data suggest that the translocation in the MALT lymphoma might have been mediated in part by an aberrant V(D)J recombination event.

Base Sequence↗

IQGAP1, a negative regulator of cell-cell adhesion, is upregulated by gene amplification at 15q26 in gastric cancer cell lines HSC39 and 40A.

Our previous comparative genomic hybridization (CGH) study revealed a novel amplified region at 15q26 in two cell lines established from diffuse types of gastric cancer (GC). In this amplified region, FES and IGF1R, known targets on 15q26, were located telomeric to the amplicon in the two cell lines, HSC39 and 40A, suggesting that another tumor-associated gene exists in this region. While screening expressed sequence tags (ESTs) for novel genes in this region, we identified the IQGAP1 amplification. IQGAP1 has been reported to encode a ras GAP-related protein, and its interaction with cadherin and/or beta-catenin induces a dissociation of beta-catenin from the cadherin-catenin complex, one of the mechanisms for cell-cell adhesion. Northern and Western blot analyses revealed that amplification of this gene was accompanied by corresponding increases in mRNA and protein expression. Moreover, immunocytochemical staining showed that overexpressed IQGAP1 accumulated at the membrane, suggesting its colocalization with beta-catenin. Taken together, these findings suggest that IQGAP1 may be one of the target genes in the 15q26 amplicon correlated with a malignant phenotype of gastric cancer cells, such as diffuse and invasive characteristics, through the disruption of E-cadherin-mediated cell-cell adhesion.

Carrier Proteins↗

1alpha,25-dihydroxyvitamin D(3) and its potent synthetic analogs downregulate tissue factor and upregulate thrombomodulin expression in monocytic cells, counteracting the effects of tumor necrosis factor and oxidized LDL.

BACKGROUND: We have recently found that a hormonally active form of vitamin D, 1alpha,25-dihydroxyvitamin D(3) [1,25(OH)(2)D(3)], exerts anticoagulant effects by upregulating the expression of an anticoagulant glycoprotein, thrombomodulin (TM), and downregulating the expression of a critical coagulation factor, tissue factor (TF), in monocytic cells including human peripheral monocytes. In this study, we investigated the counteracting effects of 1,25(OH)(2)D(3) and its potent analogs on TF induction and TM downregulation by tumor necrosis factor and oxidized LDL in monocytic cells and the modulatory effects of potent analogs on TF and TM expression. METHODS AND RESULTS: Effects of 1,25(OH)(2)D(3) and its potent synthetic analogs (22R)-22-methyl-20-epi-1,25(OH)(2)D(3) (KY3) and 22-oxacalcitriol on TF and TM antigen levels, cell surface activities, and mRNA levels in monocytic cells were examined. 1, 25(OH)(2)D(3) and its potent analogs showed anticoagulant effects in monocytic cells by downregulating TF and upregulating TM expression, counteracting the effects of tumor necrosis factor and oxidized LDL. KY3 was most potent in its regulatory effect on TF and TM expression. CONCLUSIONS: Because KY3 has the highest affinity for vitamin D receptor, our findings suggest that TF and TM regulation by 1, 25(OH)(2)D(3) analogs is also mediated by vitamin D receptor. The 1, 25(OH)(2)D(3) analogs KY3 and 22-oxacalcitriol may have the potential to serve as an agent for preventing and treating atherosclerotic and other cytokine-mediated thrombotic diseases and as a tool for studying the molecular mechanisms of TF and TM regulation.

Calcitriol↗

Identification of negative regulatory regions within the first exon and intron of the BCL6 gene.

Chromosomal translocations involving BCL6 gene are frequent in human B-cell lymphomas. Chromosomal breaks preferentially occur within a 3-kb region containing the first exon and intron. Recent reports have revealed that internal deletions or point mutations also are common in this region, suggesting that structural alteration of this region may be a crucial event in the development of lymphomas. In this study, we identified two regions in the BCL6 gene that negatively regulate BCL6 expression. One region, ES, is located within the first exon between nucleotides +472 and +543, and a second region, IS, is located between +783 and + 918 of the first intron. A consensus nucleotide sequence for the binding of the BCL6 protein itself was found within the ES region. An electrophoretic mobility shift assay and a co-transfection experiment using a BCL6 expression vector showed that transcription of the BCL6 gene was negatively regulated by the BCL6 gene product. The IS region which is included in the regions commonly deleted in B-cell lymphomas had a silencer activity. Structural alterations of these two regions may play roles in the deregulated expression of the BCL6 gene in B-cell lymphomas.

Cell Transformation, Neoplastic↗

Cell dynamics and expression of tumor necrosis factor (TNF)-alpha, interleukin-6, and TNF receptors in angioimmunoblastic lymphadenopathy-type T cell lymphoma.

Angioimmunoblastic lymphadenopathy (AILD)-type T cell lymphoma is histologically characterized by a mixed infiltrate of atypical T cells and B cells including B immunoblasts and plasma cells as well as eosinophils accompanied by proliferation of high endothelial venules. These morphological peculiarities are widely believed to reflect an abnormal pattern of cytokine expression. To clarify the cell dynamics and cytokine expression pattern in the lymph nodes of AILD-type T cell lymphoma, the frequency of proliferating/apoptotic cells and localization of tumor necrosis factor (TNF)-alpha and interleukin (IL)-6 producing cells were determined. Double staining was performed for (1) cell markers and Ki-67 antigen, (2) cell markers and the terminal deoxytransferase-mediated dUTP nick end labeling (TUNEL) method, or (3) cell markers and cytokines. The proliferating cell ratio in atypical T cells of AILD-type T cell lymphoma determined by Ki-67 labeling was 20.2+/-5.0%, while other peripheral T cell lymphomas (PTL) exhibited a ratio of 32.9+/-2.5%. TUNEL-positive apoptotic cells were 0.8+/-0.1% of total cells in AILD-type T cell lymphoma. They were dominantly atypical cells with positive T cell markers. In contrast, lymphoma cells in other types of PTL or paracortical cells in reactive follicular hyperplasia had only 0.3+/-0.1 or 0.4+/-0.1% TUNEL-positive cells, respectively. Thus, lymphoma cells in AILD-type T cell lymphoma demonstrated suppressed proliferating activity and enhanced apoptosis when compared to other types of PTL. TNF-alpha-producing cells were observed in all of the lymph nodes from AILD-type T cell lymphoma cases (15/15) and positive staining was obtained in the majority of atypical T cells and scattered macrophages. In contrast, IL-6 was localized to clusters of atypical T cells in some of the cases (9/15). Further, the expression of TNF-alpha, IL-6, and TNF receptors I and II (TNFRI and TNFRII) was examined by RT-PCR. The TNF-alpha message (2/2) and IL-6 message (2/2) was present in the lymph nodes of AILD-type T cell lymphoma by examination using RT-PCR, while both messages were negative in control cases (0/7). As far as an expression of mRNA for TNF receptors in AILD-type T cell lymphoma cases, mRNA for TNFRI was definitely expressed in both of the cases (2/2) while TNFRII mRNA was weakly expressed in one case (1/2). Overexpression of TNF-alpha as well as TNFRI may play a role in controlling T cell proliferation through an autocrine (T cell-T cell interaction) and paracrine (macrophage-T cell interaction) fashion. IL-6, which was also expressed by part of lymphoma cells of AILD-type T cell lymphoma, facilitates the proliferation of B cells, plasma cells, and T cells or endothelial cells in the lymph nodes of AILD-type T cell lymphoma.

Adult↗

Physical interaction between interleukin-12 receptor beta 2 subunit and Jak2 tyrosine kinase: Jak2 associates with cytoplasmic membrane-proximal region of interleukin-12 receptor beta 2 via amino-terminus.

IL-12 is a heterodimeric cytokine, composed of p40 and p35 subunits, that exerts its biological effects by binding to specific cell surface receptors. Two human IL-12 receptor proteins, designated IL-12R beta 1 and IL-12R beta 2, have been previously identified. IL-12R beta 2 has box 1 motif, box 2 motif, and three tyrosine residues in its cytoplasmic domain. In response to IL-12, Jak2 and Tyk2, family members of Janus family protein tyrosine kinases, are phosphorylated in PHA-activated T lymphocytes. The present study demonstrates that Jak2 binds to the cytoplasmic membrane-proximal region of IL-12R beta 2, and box 2 motif and tyrosine residues in the cytoplasmic domain were not required for binding. The amino-terminus of Jak2 is necessary for association with IL-12R beta 2.

Amino Acid Substitution↗

The proto-oncogene Bc16 inhibits apoptotic cell death in differentiation-induced mouse myogenic cells.

The Bc16 gene is located at chromosomal band 3q27, a breakpoint for translocation that frequently occurs in B cell lymphomas. Bc16 has been found to be preferentially expressed in germinal center B cells, and expression of this gene has been shown to be essential for germinal center formation in vivo. The physiological function of Bc16 and its role in lymphomagenesis, however, are not yet known. Since significant expression of Bc16 has been demonstrated in skeletal muscle, we have utilized a differentiation-inducible mouse myogenic cell line, C2C12, to elucidate the function of the Bc16 gene product. Expression of Bc16 mRNA was very low in growing myocytes, but was increased in differentiating myocytes cultured in serum-starved medium. Incubation of these cells with cytokines or chemicals that are known to block differentiation suppressed this increased Bc16 message abundance, indicating that Bc16 induction is related to the process of terminal differentiation in muscle cells. While a fraction of myocytes is known to undergo apoptosis after serum-starvation to induce differentiation, adenovirus-mediated overexpression of Bc16 enhanced the viability of the differentiating cells by preventing the apoptosis. High levels of Bc16 antisense mRNA expression induced substantial apoptosis during the differentiation of C2C12 cells, but this was effectively prevented by infection with adenovirus that expressed Bc16 sense mRNA. These results indicate that Bc16 acts to prevent apoptotic cell death in differentiating myocytes. The deregulation of expression of this antiapoptotic gene may also contribute to the development of B cell lymphomas.

Animals↗

The human caspase-activated DNase gene (hCAD): genomic structure, exonic single-nucleotide polymorphisms, and a highly polymorphic dinucleotide repeat at the hCAD locus.

Caspase-activated DNase (CAD) cleaves chromosomal DNA during apoptosis. We determined its genomic structure and identified single-nucleotide polymorphisms (SNPs) within exons 5 and 7, as well as a highly polymorphic dinucleotide repeat of (CT)m(CA)n within the 5' region of the human CAD gene (hCAD). The genomic structure of hCAD presented here, together with information concerning SNPs within the gene, as well as a highly polymorphic (CT)m(CA)n repeat fragment at the hCAD locus, may assist in the construction of genetic maps for exploring gene(s) that play pivotal roles in carcinogenesis.

Deoxyribonucleases↗

Expression of inducible nitric oxide synthase (NOS) in bone marrow cells of myelodysplastic syndromes.

Nitric oxide (NO) is a biological mediator which is synthesized from L-arginine by a family of nitric oxide synthases (NOS). We have studied the expression of the inducible NOS (iNOS) by bone marrow cells from the patients with myelodysplastic syndromes (MDS) at the mRNA level by RT-PCR assay and at the protein level by immunohistochemical staining using a specific anti-iNOS monoclonal antibody. The iNOS message was present in 92% of bone marrow tissues from MDS patients (11 out of 12) by an examination using RT-PCR. Basically, iNOS message was negative or very weak in control (1/9) and AML (0/7) cases. This was supported by immunohistochemical findings that the iNOS was positive in most of the bone marrow samples from MDS patients (9 out of 12), while bone marrow cells of control (O out of 12) and AML (O out of 5) cases were basically negative. Double immunostaining for CD68 antigen, which is a marker for macrophage lineage cells, and iNOS was performed on MDS bone marrow sections. iNOS was dominantly localized to bone marrow macrophages, although a part of myeloid cells were also positively stained with anti-iNOS antibody in a part of cases. These results indicated that there is some in vivo induction of iNOS expression for local NO production that might be involved in the dysregulation of hematopoiesis in bone marrow of MDS.

Adult↗

Thrombomodulin with the Asp468Tyr mutation is expressed on the cell surface with normal cofactor activity for protein C activation.

Thrombomodulin (TM) is an endothelial cell glycoprotein that acts as an anticoagulant. Mutation in the TM gene is a potential risk factor for thrombosis. The first TM mutation identified was a heterozygous substitution of T for G at nucleotide position 1456, which predicted Asp468 with Tyr in a Ser/Thr-rich domain. To evaluate the reported TM gene mutation as a possible cause of thrombosis, we transiently tranfected a vector for TM gene carrying the mutation to mammalian COS7 cells. TM antigen levels in lysates of cells transfected with variant TM were comparable to those in preparations of normal TM. The TM cofactor activity for protein C (PC) activation on the variant TM-expressing cells was similar to that of the control. The Michaelis constant Km and Vmax. of variant TM for PC activation were shown to be similar compared to those of normal TM. The affinity of each TM for thrombin in PC activation was also similar. We obtained several stable cell lines expressing normal and variant TM. Lysate of the cell lines with normal and variant TM genes had a similar expression level of TM antigen. Pulse-chase analysis showed that normal and variant TM were glycosylated and resistant to endoglycosidase H, indicating that the variant TM was expressed on the cell surface in a mature form. Variant TM protein is apparently expressed on the cell surface with normal cofactor activity for PC activation. It is unlikely that the TM variant directly causes thrombosis by mechanism of reduced expression or impaired cofactor activity for PC activation, which comprises a major anticoagulant activity of TM.

Animals↗

Anticoagulant effects of 1alpha,25-dihydroxyvitamin D3 on human myelogenous leukemia cells and monocytes.

The hormonally active form of vitamin D is 1alpha, 25-dihydroxyvitamin D3 [1,25(OH)2D3], which is a principal regulator of calcium homeostasis. It also affects hormone secretion, cell differentiation, and proliferation by a mode of action that involves stereospecific interaction with an intracellular vitamin D receptor (VDR). We recently found that retinoids, which are vitamin A derivatives, exert anticoagulant effects by upregulating thrombomodulin (TM) and downregulating tissue factor (TF) expression in acute promyelocytic leukemia cells and monoblastic leukemia cells. Both the VDR and retinoid receptors belong to the same family of receptors. A heterodimer consisting of the retinoid X receptor and the VDR binds to vitamin D responsive elements on genes regulated by vitamin D. To determine whether 1,25(OH)2D3 would exhibit anticoagulant effects similar to retinoids, we measured the antigen level, activity, and mRNA level of TM and TF in human leukemic cells, vascular endothelial cells, and monocytes treated with 1,25(OH)2D3. We found that 1,25(OH)2D3 upregulates antigen expression, activity, and mRNA levels of TM and downregulates antigen expression, activity, and mRNA levels of TF in human monocytic leukemia cells, some acute myelogenous leukemia cells, and monocytes, but not in umbilical vein endothelial cells. Transient transfection studies with reporter plasmids in monocytic leukemia cells and mobility gel-shift assay showed interaction with 1,25(OH)2D3 and functional retinoic acid responsive elements present in the 5'-flanking region of the TM gene. However, auxiliary factors or other elements in the TM gene may contribute to VDR specificity and transactivation of the gene in specific target cells. These findings indicate that 1,25(OH)2D3 resembles the retinoids in its control of the transcription of the TM and TF genes in human monocytic cells. Analogs of 1,25(OH)2D3 with anticoagulant activity may serve as adjunctive antithrombotic agents in monocytic leukemia and atherosclerotic disease.

Anticoagulants↗

Lyn physically associates with the erythropoietin receptor and may play a role in activation of the Stat5 pathway.

Protein tyrosine phosphorylation plays a crucial role in signaling from the receptor for erythropoietin (Epo), although the Epo receptor (EpoR) lacks the tyrosine kinase domain. We have previously shown that the Jak2 tyrosine kinase couples with the EpoR to transduce a growth signal. In the present study, we demonstrate that Lyn, a Src family tyrosine kinase, physically associates with the EpoR in Epo-dependent hematopoietic cell lines, 32D/EpoR-Wt and F36E. Coexpression experiments in COS7 cells further showed that Lyn induces tyrosine phosphorylation of the EpoR and that both LynA and LynB, alternatively spliced forms of Lyn, bind with the membrane-proximal 91-amino acid region of the EpoR cytoplasmic domain. In vitro binding studies using GST-Lyn fusion proteins further showed that the Src homology (SH)-2 domain of Lyn specifically binds with the tyrosine-phosphorylated EpoR in lysate from Epo-stimulated cells, whereas the tyrosine kinase domain of Lyn binds with the unphosphorylated EpoR. Far-Western blotting and synthetic phosphopeptide competition assays further indicated that the Lyn SH2 domain directly binds to the tyrosine-phosphorylated EpoR, most likely through its interaction with phosphorylated Y-464 or Y-479 in the carboxy-terminal region of the EpoR. In vitro binding studies also demonstrated that the Lyn SH2 domain directly binds to tyrosine-phosphorylated Jak2. In vitro reconstitution experiments in COS7 cells further showed that Lyn induces tyrosine phosphorylation of Stat5, mainly on Y-694, and activates the DNA-binding and transcription-activating abilities of Stat5. In agreement with this, Lyn enhanced the Stat5-dependent transcriptional activation when overexpressed in 32D/EpoR-Wt cells. In addition, Lyn was demonstrated to phosphorylate the EpoR and Stat5 on tyrosines in vitro. These results suggest that Lyn may play a role in activation of the Jak2/Stat5 and other signaling pathways by the EpoR.

Animals↗

Localization of Fas and Fas ligand in bone marrow cells demonstrating myelodysplasia.

Frequent apoptosis in the bone marrow of patients with myelodysplastic syndromes (MDS) was demonstrated on frozen sections using the terminal deoxytransferase (TdT)-mediated dUTP nick end labeling (TUNEL) method. The overall mean percentage of TUNEL-positive cells was about 17% in the bone marrow of MDS, while bone marrow from control cases exhibited a mean of 3.4% (P < 0.001). To elucidate the mechanism of apoptosis in bone marrow cells of MDS, the expression of Fas antigen and Fas ligand (FasL) was examined by RT-PCR and immunohistochemistry. All MDS cases showed expression of Fas mRNA (12/12) and most exhibited an expression of FasL mRNA (10/12) by RT-PCR. Basically, control cases did not show positive signals for Fas and FasL mRNA, however, a very weak band was detected in three cases (3/10) for Fas and in one case (1/10) for FasL mRNA by RT-PCR. Immunohistochemical examination revealed positive staining for Fas (11/12) and FasL (12/12) in the bone marrow of MDS, while all the bone marrow samples from control cases were negative for anti-Fas (0/15) and for anti-FasL (0/15) antibody. Double staining clarified that TUNEL-positive apoptotic cells expressed Fas antigen on the cell surface, although not all Fas-positive cells were TUNEL positive. The Fas-positive cells of MDS bone marrow included hematopoietic cells expressing CD34 antigen, neutrophil elastase, a marker for myeloid series of cells, or glycophorin A, a marker for erythroid cells. However, CD68-positive cells which were macrophage lineage cells, did not express Fas antigen strongly. In contrast, positive staining for FasL was detected in hematopoietic cells and CD68-positive cells in the bone marrow of MDS. These results suggest that the Fas-FasL system plays an important role in inducing apoptosis in the bone marrow of MDS and works in an autocrine (hematopoietic cell-hematopoietic cell interaction) and/or paracrine (hematopoietic cell-stromal cell interaction) manner.

Adult↗

Erythropoietin and IL-3 induce tyrosine phosphorylation of CrkL and its association with Shc, SHP-2, and Cbl in hematopoietic cells.

The present study demonstrates that erythropoietin (Epo) and IL-3 induce tyrosine phosphorylation of the SH2/SH3-containing adapter protein CrkL and its transient association with tyrosine-phosphorylated SHP-2, Shc, and Cbl in a murine IL-3-dependent cell line, 32D, expressing the Epo receptor (EpoR). In these cells, CrkL was constitutively complexed with the guanine nucleotide exchange factor C3G, which was found to coimmunoprecipitate with Shc from Epo- or IL-3-stimulated cells. Studies using cells expressing mutant EpoRs showed that the Epo-induced tyrosine phosphorylation of CrkL is dependent on the membrane-proximal EpoR cytoplasmic region involved in the activation of Jak2 as well as the C-terminal 145 amino acid region which is required for tyrosine phosphorylation of SHP-2 and Shc. It was further revealed that CrkL is recruited to the tyrosine-phosphorylated EpoR, most likely through its interaction with tyrosine-phosphorylated Shc and SHP-2. These results suggest that CrkL is involved in the signaling pathways from the receptors for Epo and IL-3, most likely by modulating the activity of the Ras family GTPases through its interaction with C3G.

Adaptor Proteins, Signal Transducing↗