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M Sakatsume

Publications and source records attributed to M Sakatsume.

At least 19 recordsLinked to original sources

Expression of osteopontin in gentamicin-induced acute tubular necrosis and its recovery process.

BACKGROUND: There is controversy regarding the exact localization and roles of osteopontin (OPN), a multipotential chemokine, in renal injury. There is little information on the expression and role of OPN in gentamicin-induced acute tubular necrosis (ATN) and its recovery process. METHODS: A severe ATN model was made using male Wistar rats by injecting gentamicin (150 mg/kg/day) for five days and limiting the provision of water. The expression and localization of OPN mRNA and protein, ED1 as a macrophage marker, proliferating cellular nuclear antigen (PCNA), CD44 as an OPN receptor, megalin as a proximal tubule marker, and their relationships to each other were examined from the early tubular necrotic period to the late recovery period by Northern blotting, in situ hybridization, and double immunohistochemical staining. RESULTS: In the gentamicin group, OPN mRNA and protein were expressed in only the PCNA-positive proliferating cortical distal tubules, not in the necrotic proximal tubules, until day 6 after the first administration, but were found markedly in PCNA-positive regenerative proximal and distal tubules on days 10, 15, and 30. The localization of PCNA-positive cells was almost always accompanied with the up-regulated expression of OPN using quantitative analysis (P < 0.01). CD44 expression was markedly up-regulated in the renal cortical tubular epithelium from days 6 to 30. In the control group, no expression of OPN and CD44 in the cortical area was found throughout the experimental period. CONCLUSIONS: These results suggested that OPN is related to the proliferation and regeneration of tubular epithelial cells after tubular damage.

Animals↗

Novel glomerular lipoprotein deposits associated with apolipoprotein E2 homozygosity.

BACKGROUND: Hyperlipoproteinemia is occasionally associated with severe glomerular injury caused by abnormal accumulation of lipid in glomeruli, which occurs in conditions such as lipoprotein glomerulopathy (LPG). This study investigates the cases of two siblings with homozygous apolipoprotein (apo) E2 who show unique histologic features, massive proteinuria, and dysbetalipoproteinemia. METHODS: Histologic studies were performed using renal biopsy specimens. Plasma lipoproteins were extensively characterized. The exons of the apo E genes were sequenced to avoid missing any mutations. RESULTS: Histologically, the siblings' condition resembled LPG by light microscopy studies. Electron microscopy studies revealed large lipoid deposits in the paramesangium, subendothelium, and subepithelium of the glomeruli, which were different from LPG in terms of not forming the layered structure resembling a fingerprint even in large lipoprotein thrombi, and mesangial foam cells. Immunohistochemically, the lipoid deposits contained apo E and apo B. These patients did not have either diabetic nephropathy or other known forms of glomerulonephritis. The sequence of exons of the apo E genes revealed homozygosity for apo E2 in both cases. CONCLUSION: The extensive lipoprotein deposition in glomeruli, which resembles LPG, can also occur in apo E2 homozygous individuals, but in a distinct fashion. Because the two cases were siblings, they may have other shared alleles, in addition to the apo E2 allele, that negatively affect processing of lipoproteins and lead to abnormal accumulation of lipoprotein deposits in glomeruli.

Amino Acid Sequence↗

Association of gene polymorphism of polymeric immunoglobulin receptor and IgA nephropathy.

OBJECTIVE: In order to explore the possibility that genetic predisposition to dysfunction of mucosal immunity and the IgA processing pathway plays a role in the pathogenesis of mesangial IgA1 deposition in IgAN, we examined the possible association of the gene polymorphism of pIgR in the patients with and without IgAN. SUBJECTS AND METHODS: Genomic DNA of peripheral blood cells was isolated from 372 individuals including 172 histologically confirmed IgAN patients. Segments of the pIgR gene were PCR amplified and restriction fragment length polymorphism was determined as A1 and A2 with and without Pvu II site, respectively. RESULTS: The pIgR genotype distribution was significantly different between the patients with IgAN and those without IgAN. Allele frequency of A2 was higher in IgAN than in other renal diseases (A1 and A2; 0.516 and 0.484 in IgAN, 0.641 and 0.359 in others, chi2 = 9.84, P = 0.0017, Odds ratio = 1.71). Moreover, the subjects with A2A2 genotype were associated with a relatively low level of serum IgA only in the patients with IgAN but not in other renal diseases. The difference of allele frequencies was more remarkable in the patients with a serum IgA level of less than 300 mg/dl (A1 and A2; 0.439 and 0.561 in IgAN, 0.702 and 0.298 in others, chi2 = 12.44, P = 0.0004, Odds ratio = 3.01). CONCLUSION: This is the first demonstration of the pIgR gene polymorphisms in IgAN which are associated with its clinical phenotype. Gene polymorphisms of pIgR may be candidate genetic markers of susceptibility to IgAN.

Alanine↗

Down-regulation of interferon-gamma signaling by gene transfer of Stat1 mutant in mesangial cells.

BACKGROUND: Interferon-gamma (IFN-gamma) is secreted by T lymphocytes and natural killer (NK) cells in the cellular immunity-mediated inflammatory lesion, including endocapillary or extracapillary proliferative glomerulonephritis. It induces and/or enhances multiple histocompatibility complex (MHC) class I and II, intercellular adhesion molecule-1 (ICAM-1), inducible nitric oxide synthase (iNOS), and Fc receptor expression in renal resident cells, resulting in the initiation and promotion of inflammation. Recently, the signaling mechanism of IFN-gamma has been investigated, and it appears that Stat1alpha is essential for signaling. We investigated Stat1alpha activation by IFN-gamma in mesangial cells and attempted to regulate the signal transduction by gene transfer. METHODS: Western blot with anti-Stat1 and antiphosphotyrosine after immunoprecipitation of Stat1 and Northern blot for detection of Stat1 mRNA were performed. The dominant negative form of Flag-tagged Stat1 was expressed in cultured rat mesangial cells. Flag was immunostained in transfectants, and luciferase reporter assay was carried out to measure the transcriptional activity of Stat1alpha. The expression of IFN-gamma-inducible genes such as MHC class II (Ia-Aalpha) and MHC class II transactivator (CIITA) was detected by reverse transcriptase-polymerase chain reaction (RT-PCR). RESULTS: Stat1alpha was tyrosine phosphorylated and activated by IFN-gamma in mesangial cells, and the mRNA and protein level of Stat1alpha increased upon stimulation by IFN-gamma. Overexpression of Stat1-mutant lacking 35 C-terminal amino acids strongly suppressed the IFN-gamma-induced signal transduction and inhibited the expression of MHC class II and CIITA genes in mesangial cells. CONCLUSIONS: Stat1alpha is a critical molecule in the signal transduction of IFN-gamma in mesangial cells. The inhibition of an endogenous function of Stat1alpha by gene transfer of the Stat1 mutant may be a new method to reduce the inflammatory effects of IFN-gamma in localized inflammation of the kidney.

Animals↗

Interleukin-10 inhibits expression of both interferon alpha- and interferon gamma- induced genes by suppressing tyrosine phosphorylation of STAT1.

Interleukin-10 (IL-10) helps maintain polarized T-helper cells in a T-helper lymphocyte 2 (Th2) phenotype. Part of this process involves the prevention of the development of Th1 cells, which are a primary source of interferon gamma (IFNgamma), a potent activator of monocytes and an inhibitor of Th2 proliferation. Because monocytes and macrophages are important mediators of Th1-type responses, such as delayed-type hypersensitivity, we sought to determine if IL-10 could directly mediate inhibition of IFNgamma- and IFNalpha-induced gene expression in these cells. Highly purified monocytes were incubated with IL-10 for 60 to 90 minutes before the addition of IFNgamma or IFNalpha. IL-10 preincubation resulted in the inhibition of gene expression for several IFN-induced genes, such as IP-10, ISG54, and intercellular adhesion molecule-1. The reduction in gene expression resulted from the ability of IL-10 to suppress IFN-induced assembly of signal transducer and activator of transcription (STAT) factors to specific promoter motifs on IFNalpha- and IFNgamma-inducible genes. This was accomplished by preventing the IFN-induced tyrosine phosphorylation of STAT1, a component of both IFNalpha- and IFNgamma-induced DNA binding complexes. Therefore, IL-10 can directly inhibit STAT-dependent early response gene expression induced by both IFNalpha and IFNgamma in monocytes by suppressing the tyrosine phosphorylation of STAT1. This may occur through the ability of IL-10 to induce expression of the gene, suppressor of cytokine signaling 3 (SOCS3).

Cells, Cultured↗

[Apo-E phenotype].

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Apolipoproteins E↗

Interferon gamma activation of Raf-1 is Jak1-dependent and p21ras-independent.

Signal transduction through the interferongamma (IFNgamma) receptor involves the formation of a ligand-dependent multimolecular association of receptor chains (alpha and beta), Janus tyrosine kinases (Jak1 and Jak2), and the transcription factor (signal transducers and activators of transcription 1alpha (STAT1alpha)) in addition to activation of mitogen-activated protein kinases (MAPK). Interactions between components of the Jak/STAT cascade and the p21(ras)/Raf-1/MAPK cascade are unexplored. Treatment of HeLa cells with IFNgamma resulted in the rapid and transient activation of Raf-1 and MAPK. Parallel activation of cells resulted in essentially no enhancement of p21(ras) activation despite marked enhancement after treatment with epidermal growth factor. In HeLa (E1C3) and fibrosarcoma (U4A) cell lines, both of which are deficient in Jak1 kinase, Raf-1 activation by IFNgamma was absent. Reconstitution of Raf-1 activity was observed only with kinase active Jak1 in both cell lines. In COS cells, transient expression of wild type or kinase-inactive Jak1 coimmunoprecipitated with Raf-1, but activation of Raf-1 activity was only observed in cells expressing kinase-active Jak1. These observations suggest that a kinase-active Jak1 is required for IFNgamma activation of Raf-1 that is p21(ras)-independent.

Calcium-Calmodulin-Dependent Protein Kinases↗

Beta interferon and oncostatin M activate Raf-1 and mitogen-activated protein kinase through a JAK1-dependent pathway.

Activation of early response genes by interferons (IFNs) and other cytokines requires tyrosine phosphorylation of a family of transcription factors termed signal transducers and activators of transcription (Stats). The Janus family of tyrosine kinases (Jak1, Jak2, Jak3, and Tyk2) is required for cytokine-induced tyrosine phosphorylation and dimerization of the Stat proteins. In order for IFNs to stimulate maximal expression of Stat1alpha-regulated genes, phosphorylation of a serine residue in the carboxy terminus by mitogen-activated protein kinase (MAPK) is also required. In HeLa cells, both IFN-beta and oncostatin M (OSM) stimulated MAPK and Raf-1 enzyme activity, in addition to Stat1 and Stat3 tyrosine phosphorylation. OSM stimulation of Raf-1 correlated with GTP loading of Ras, whereas IFN-beta activation of Raf-1 was Ras independent. IFN-beta- and OSM-induced Raf-1 activity could be coimmunoprecipitated with either Jak1 or Tyk2. Furthermore, HeLa cells lacking Jak1 displayed no activation of STAT1alpha, STAT3, and Raf-1 by IFN-beta or OSM and also demonstrated no increase in the relative level of GTP-bound p21ras in response to OSM. The requirement for Jak1 for IFN-beta- and OSM-induced activation of Raf-1 was also seen in Jak1-deficient U4A fibrosarcoma cells. Interestingly, basal MAPK, but not Raf-1, activity was constitutively enhanced in Jak1-deficient HeLa cells. Transient expression of Jak1 in both Jak-deficient HeLa cells and U4A cells reconstituted the ability of IFN-beta and OSM to activate Raf-1 and decreased the basal activity of MAPK, while expression of a kinase-inactive form of the protein showed no effect. Moreover, U4A cells selected for stable expression of Jak1, or COS cells transiently expressing Jak1 or Tyk2 but not Jak3, exhibited enhanced Raf-1 activity. Therefore, it appears that Jak1 is required for Raf-1 activation by both IFN-beta and OSM. These results provide evidence for a link between the Jaks and the Raf/MAPK signaling pathways.

Animals↗

Identification of genes specifically expressed in chronic and progressive glomerulosclerosis.

To identify genes expressed predominantly in the kidney with chronic and progressive glomerulosclerosis but not in acute and transient form of glomerulonephritis, we induced progressive glomerulosclerosis in rats by applying unilateral nephrectomy prior to injection of monoclonal anti-Thy1.1 antibody (OX-7), which cause acute and transient glomerulonephritis with single injection. In rats with nephrectomy and OX-7 injection (Nx group), proteinuria increased with time and mesangial expansion accompanied with interstitial fibrosis was recognized, whereas transient proteinuria and mesangiolysis followed by mesangial hypercellularity were seen in rats with sham operation and OX-7 injection (Sham group). Four weeks after the induction of glomerulonephritis, mRNAs were isolated from kidney cortex of both groups and used for cDNA synthesis. By subtraction hybridization of cDNAs from Nx with excess amount of those from Sham, we isolated and sequenced several genes expressed specifically in the Nx group. These included genes, which contain identical sequences with serine protease inhibitors, cytokine receptors, osteopontin as well as genes with unknown function. These genes may play important roles in the process which promotes acute glomerular damage advance to chronic and progressive glomerulosclerosis.

Animals↗

Modulation of the expression of the IFN-gamma receptor beta-chain controls responsiveness to IFN-gamma in human peripheral blood T cells.

IFN-gamma has potent antiproliferative and apoptotic effects in T cells that are important in determining T cell development and polarized differentiation. Therefore, any event that enables T cells to become less responsive to IFN- gamma may potentially alter immune responsiveness to Ag. In this work, we show that human peripheral blood T cells that are stimulated through the TCR and expanded with IL-2 are unresponsive to IFN-gamma, as determined by a lack of activation of jak kinases and the transcription factor, STAT1(alpha), a signal transducer and activator of transcription. This nonresponsiveness occurs because of a lack of expression of the beta- chain (accessory factor) of the IFN-gamma receptor, while at the same time maintaining IFN-gamma receptor alpha-chain expression. Expression of the beta-chain can be restored by secondary TCR ligation or PMA treatment. T cell blasts treated with PMA are now responsive to IFN-gamma. When freshly isolated, highly enriched (>98%) T cells are examined for IFN-gamma responsiveness; these cells can respond to IFN-gamma and express beta-chain. Therefore, as T cells progress from primary TCR activation through IL-2-dependent proliferation, followed by secondary TCR stimulation, their responsiveness to IFN-gamma varies, and this may affect their ability to participate in an ongoing immune response.

Antigens, CD↗

The Jak kinases differentially associate with the alpha and beta (accessory factor) chains of the interferon gamma receptor to form a functional receptor unit capable of activating STAT transcription factors.

Interferon gamma (IFN gamma) induces the expression of early response genes by tyrosine phosphorylation of Jak kinases and transcription factors referred to as STAT proteins. The topology of the IFN gamma receptor is partially understood and the relationship between the alpha chain that binds the ligand and the beta chain that is required for signal transduction is undefined. In a cell line which expresses only the human alpha chain, we show that these cells did not activate Jak kinases or STAT proteins with human IFN gamma, even though Jak1 co-immunoprecipitated with the alpha chain. In cells unexposed to IFN gamma, Jak1 preferentially associated with the alpha chain, while Jak2 associated with the beta chain. There was evidence for Jak1 kinase activity in untreated cells. For Jak2, kinase activity was IFN gamma-dependent. Although the alpha chain was tyrosine-phosphorylated in response to ligand, we found no evidence for tyrosine phosphorylation of the beta chain. These data are consistent with a model of the IFN gamma receptor in which Jak1 associates with the alpha chain, whereas Jak2 associates with the beta chain. IFN gamma clusters at least two receptor units which results in the tyrosine phosphorylation of Jak1 and Jak2, the activation of Jak2 kinase activity, and the recruitment of STAT1 alpha resulting in its activation by tyrosine phosphorylation.

Base Sequence↗

Reaction of hydroxyapatite-sol in bone marrow.

Hydroxyapatite-sol was prepared by dispersing hydroxyapatite microcrystals into saline. The hydroxyapatite microcrystals were synthesized by neutralization reaction of calcium hydroxide suspension and phosphoric acid solution. Sizes of the hydroxyapatite microcrystals were less than 0.1 microns, and the mean value was 0.05 microm. The 0.2 ml hydroxyapatite-sol with a concentration of 14.8 mg/ml was injected into medullary cavities of rat femurs. Both sintered hydroxyapatite powder suspension and saline as comparative materials were injected into the medullary cavities in the same way. Reaction of the hydroxyapatite-sol in the bone medullary cavities was investigated histologically using light and transmission electron microscopes. After 3 days, new bone formation was observed by injection of hydroxyapatite-sol, while no bone formation was observed by injection of sintered hydroxyapatite powder and saline. Osteoblasts were observed endocytosing the hydroxyapatite-sol in the medullary cavities of the rats. Macrophages and undifferentiated osteoblasts were found around the hydroxyapatite-sol aggregation by transmission electron microscope. After 5 days, amounts of new bone increased and matured, forming trabeculae. Many osteoblasts were observed in a line along the surface of the bone. On the other hand, 5 days after injection of sintered hydroxyapatite powder and saline to bone formation was observed while at 10 days after injection, some immature new bone formation started to be observed. New bone increased and matured at 15 days postoperatively. From these results, it was concluded that hydroxyapatite-sol only quickly promotes the formation of new bone in bone marrow and can be used as injection liquid of new biomaterials for bone formation.

Animals↗

A deletion mutation in the 3' end of the alpha 5(IV) collagen gene in juvenile-onset Alport syndrome.

Alport syndrome is a hereditary progressive glomerular basement membrane disorder in which juvenile-or adult-onset renal failure is often accompanied by sensorineural deafness and ocular abnormalities. Recently, mutations have been found in the type IV collagen alpha 5 chain gene in patients with X-linked Alport syndrome. This study searched for gene mutations in seven unrelated Japanese patients by the use of conventional Southern blot analysis with cDNA probes for the carboxyl-terminal noncollagenous domain that is encoded by exons 46 to 51. A deletion mutation was found in a patient who developed juvenile-onset (age 15) ESRD with typical ultrastructural glomerular basement membrane destruction and sensorineural hearing loss but no characteristic ocular abnormalities. His mother showed hematuria and proteinuria with normal renal function, suggesting that she may be the heterozygous carrier. Exon-specific polymerase chain reaction amplified the coding sequence of exon 48 but not exons 49 to 51. Analysis with pulsed-field gel electrophoresis revealed that the deletion is approximately 10 kb in length and does not involve the CpG island, which is located in the 3' distal site of the gene. Identification of this novel deletion causing juvenile-type Alport syndrome would contribute to elucidating the mechanisms of renal failure progression in the syndrome.

Base Sequence↗

Alternative splicing in the alpha 5(IV) collagen gene in human kidney and skin tissues.

Type IV collagen is a complex molecule composed of three alpha chains that can be of types alpha 1(IV) to alpha 5(IV). Each alpha chain contains an amino-terminal collagenous domain and a carboxyl-terminal noncollagenous (NC) domain consisting of 229 amino acids, which is involved in intermolecular cross-linking to construct the basement membrane network. Specific localization of alpha 5(IV) collagen in glomerular basement membranes (GBM) in the kidney indicates its crucial role for that construction. In human kidney cortex and skin RNA, we found an alternative splicing transcript which skips exon 50 of the alpha 5(IV) collagen gene using reverse transcription-polymerase chain reaction and direct sequencing of the PCR products. This alternative splicing introduces a stop codon at the first codon of exon 51, resulting in an mRNA encoding a protein lacking the 84 NC domain carboxylterminal amino acid residues encoded by exons 50 and 51. Recently, gene mutations affecting the alpha 5(IV) collagen NC domain have been reported in patients with X-linked Alport syndrome who display GBM destruction and progressive renal failure, which are usually milder in female patients. Therefore, the alternative splicing, if its truncated products are dominantly expressed in glomeruli, may cause GBM impairment and renal failure progression.

Aged↗

Autoreactive T-cell clones which suppress cytotoxic T cell responses.

Autoreactive T-cell clones (Thy 1+, CD4+, CD3+) which suppress generation of cytotoxic T lymphocytes (CTL) were established in long-term in vitro culture by stimulation with GM3-liposomes or soluble melanoma (B16) antigen composed of GM3. The T-cell receptors (TCR) of two representative clones analyzed used the same TCR alpha- and V13+ beta-chains. The clones produce only interferon gamma(IFN-gamma) but not interleukins (IL)2 and 4, despite their CD4+ phenotype, suggesting that they are not a typical TH1 or TH2 type. The clones are effectively stimulated by IFN-gamma treated (I-Ab/GM3+) B16 melanoma or I-Ab-transfected GM3+ L cells, but not by GM3-/I-Ab mutant melanoma, EL 4, or I-Ad/k-transfected L cells. This strongly suggested the involvement of GM3/class II in T-cell recognition. Antigen specificity was required for stimulation of the clones. However, once stimulated, they suppressed CTL generation in an antigen non-specific fashion. As class II+ B16 melanoma cells effectively function as antigen-presenting cells to stimulate the autoreactive suppressor T cell (Ts) clones of this type, this negative circuit between class II+ tumor cells and IFN-gamma-producing Ts would be a possible mechanism whereby tumor cells could escape the immune system.

Animals↗

Induction of mouse anti-melanoma cytotoxic and suppressor T cells in vitro by an artificial antigen, GM3-lactone.

We investigated the ability of GM3-lactone liposomes to induce anti-melanoma T cell responses in mice. GM3-lactone liposomes, like murine B16 melanoma cells, induced anti-melanoma cytotoxic T cells (CTL) and also suppressor T cells (Ts). A small dose of GM3-lactone (0.0003 micrograms/ml) was enough to generate CTL in the in vitro primary response, whereas relatively large amounts of the antigen (0.03-0.3 microgram/ml) were required for anti-melanoma Ts induction. As the epitope for anti-melanoma Ts is NeuAc but not NeuGc residue on GM3, and anti-melanoma CTL are effectively induced by either GM3(NeuAc) or GM3(NeuGc)-lactone liposomes, GM3(NeuGc)-lactone or GM3(NeuGc) liposomes have potent activity as an artificial melanoma antigen to induce anti-melanoma CTL in vitro.

Animals↗

Density of GM3 with normal primary structure determines mouse melanoma antigenicity; a new concept of tumor antigen.

We attempted to induce anti-melanoma cytotoxic T cells (CTL) and suppressor T cells (Ts) inhibiting CTL generation by using liposomes carrying various densities of GM3 as tumor antigens. We found that liposomes carrying 6-16 mol% of GM3 with normal primary structure successfully generated anti-melanoma CTL and suppressor T cells, while liposomes with GM3 outside this range had little or no such activity. Anti-melanoma CTL induced by GM3(NeuGc)-liposomes belonged to CD4-/CD8- double-negative CD3+ CTL while GM3(NeuAc)-liposomes induced two types of T cells, CD4+ T cells and double-negative I-J positive T cells which mediated inhibition of the induction of anti-melanoma CTL responses. These cell types were the same as those induced by mitomycin C-treated melanoma cells for CTL induction and soluble melanoma antigen for Ts generation. The results clearly demonstrate that even GM3 with normal primary structure can, at a certain density, generate melanoma antigenicity.

Animals↗