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Ken-ichi Sawada

Publications and source records attributed to Ken-ichi Sawada.

18 recordsLinked to original sources

Four novel mutations in the thiazide-sensitive Na-Cl co-transporter gene in Japanese patients with Gitelman's syndrome.

BACKGROUND: Gitelman's syndrome (GS) is an autosomal recessive disorder resulting from inactivating mutations in the thiazide-sensitive Na-Cl co-transporter (NCCT) gene. To date, almost 90 mutations have been identified. It is possible that there is a population-specific distribution of mutations. In this study, we analysed mutations in the NCCT gene of seven Japanese patients with GS. METHODS: Peripheral blood mononuclear cells were isolated from patients with GS, their family members and healthy control subjects. A mutation analysis of the NCCT gene was performed completely by direct automated sequencing of polymerase chain reaction-amplified DNA products. In patients with a deletion or splice site mutation, we undertook cDNA sequence analysis. RESULTS: We identified nine mutations. Five of them [c.185C>T (Thr60Met), c.1712C>T (Ala569Val), c.1930C>T (Arg642Cys), c.2552T>A (Leu849His) and c.1932delC] have been reported in Japanese patients, but not in GS patients from other ethnic groups. The remaining four mutations [c.7A>T (Met1Leu), c.1181_1186+20del26, c.1811_1812delAT and IVS16+1G>A] were novel. In cDNA derived from a patient with c.1181_1186+20del26, a deletion of exon 9 and a frameshift at the start of exon 10 were observed. In cDNA derived from patients with IVS16+1G>A, an additional 96 bp insertion between exons 16 and 17 was observed. Six out of seven patients were compound heterozygotes, and the remaining one carried a single heterozygous mutation. CONCLUSIONS: We found four novel mutations in the NCCT gene in seven Japanese patients with GS. Moreover, our study suggests that the distribution of mutations in the NCCT gene in Japanese GS patients potentially differs from that in other populations.

Adult↗

Effective high-dose chemotherapy combined with CD34+-selected peripheral blood stem cell transplantation in a patient with cutaneous involvement of nasal NK/T-cell lymphoma.

The prognosis of nasal natural killer (NK)/T-cell lymphoma with cutaneous involvement especially is morbid despite intensive chemotherapy and radiotherapy. We treated a 52-yr-old Japanese woman with cutaneous dissemination of nasal NK/T-cell lymphoma. Six cycles of chemotherapy, irradiation to skin lesion were administered and complete remission (CR) was attained. High-dose chemotherapy (HDC; etoposide 750 mg/m(2) x 2 d, cyclophosphamide 60 mg/kg x 2 d, total body irradiation 12 Gy two daily fractions x 3 d) followed by CD34(+)-selected autologous peripheral blood stem cell transplantation (CD34(+)-APBSCT) was then prescribed. Complete remission (CR) was obtained and she has been free of disease for 34 months since CD34(+)-APBSCT. We suggest that marrow-ablative chemotherapy facilitated by autologous stem cell transplantation should be considered part of the primary therapy for subjects with a poor prognosis for nasal NK/T-cell lymphoma with cutaneous involvement.

Antigens, CD34↗

Distribution of glomerular IgG subclass deposits in malignancy-associated membranous nephropathy.

BACKGROUND: Several studies have shown a predominant glomerular deposition of IgG4 in patients with idiopathic membranous nephropathy (MN), whereas significant depositions of other IgG subclasses have been shown in patients with lupus-associated MN and bucillamine-induced MN. METHODS: We examined the distribution patterns of glomerular IgG subclass deposits in 10 patients with malignancy-associated MN (M-MN) and in 15 patients with idiopathic MN by immunofluorescence (IF) microscopy. RESULTS: The glomerular IF intensities of IgG1 and IgG2 were significantly stronger in the malignancy group than in the idiopathic group (P<0.05). In contrast, there were no differences in glomerular IF intensities of IgG3 and IgG4 between the two groups. CONCLUSION: Our findings suggest that the distribution patterns of glomerular IgG subclass deposits are different in idiopathic MN and M-MN. The strong IF intensity of glomerular IgG1 and IgG2 in M-MN may provide a possible predictor for this condition.

Adult↗

Monitoring the expression profiles of doxorubicin-resistant K562 human leukemia cells by serial analysis of gene expression.

We examined the expression profiles of doxorubicin-resistant K562 cells by serial analysis of gene expression (SAGE) to identify novel and/or partially characterized genes that might be related to drug resistance in human leukemia. SAGE complementary DNA (cDNA) libraries were constructed from K562 and doxorubicin-resistant K562 (K562/ADM) cells, and concatamer sequences were analyzed with SAGE 2000 software. We used 9792 tags in the identification of 1076 different transcripts, 296 of which were similarly expressed in K562 and K562/ADM cells. There were 343 genes more actively expressed in K562/ADM than in parental K562 cells and 437 genes expressed less often in K562/ADM cells. K562/ADM cells showed increased expression of well-known genes, including the genes for spectrin beta, eukaryotic translation initiation factor 1A (EIF1A), RAD23 homolog B, laminin receptor 1, and polyA-, RAN-, and PAI-1 messenger RNA-binding proteins. K562/ADM cells showed decreased expression of the genes for fatty acid desaturase 1 (FADS1), hemoglobin epsilon 1, N-myristoyltransferase 1, hemoglobin alpha 2, NADH dehydrogenase Fe-S protein 6, heat shock 90-kDa protein, and karyopherin beta 1. Quantitative reverse transcription-polymerase chain reaction analysis confirmed the increased expression of EIF1A and the decreased expression of FADS1 in K562/ADM cells. Prior to this investigation, such differences in the expression of these genes in doxorubicin-resistant leukemia cells were unknown. Although we do not provide any evidence in the present report for the potential roles of these genes in drug resistance, SAGE may provide a perspective into our understanding of drug resistance in human leukemia that is different from that provided by cDNA microarray analysis.

Delta-5 Fatty Acid Desaturase↗

Contribution of Complementarity-Determining Region 3 of the T-Cell Receptor Vδ2 Chain to the Recognition of Aminobisphosphonates by Human γδ T-Cells.

Human gammadelta T-lymphocytes expressing Vgamma2Vdelta2 T-cell receptors (TCRs) can be stimulated by aminobisphosphonates and can kill certain tumor cells. Although germline-encoded lysine residues on the Jgamma1.2 segment have been demonstrated to be essential for the recognition of nonpeptide antigens by human gammadelta T-cells, the role of the junctional sequences of the TCR delta chain in the recognition of aminobisphosphonates by Vgamma2Vdelta2+ T-cells remains unknown. We examined the structure of complementarity-determining region 3 (CDR3) of Vdelta2 chains expressed by aminobisphosphonate-stimulated human gammadelta T-cells. CDR3 size-spectratyping analysis of Vdelta2 chains revealed that risedronate did not induce a CDR3 size distribution pattern of Vdelta2 cells that was distinct from that of Vdelta2 cells cultured without risedronate. The clonality of risedronate-expanded Vdelta2 T-cells was also determined by sequencing analysis, with the result that no particular consensus sequences were observed. However, most Vdelta2 T-cells freshly isolated from peripheral blood carried a distinctive junctional motif consisting of a hydrophobic amino acid residue (valine, leucine, or isoleucine [Val/Leu/Ile]) at conserved position 97, and this feature was not altered by risedronate stimulation. A significant proportion of Vdelta1 T-cells from the same individual had Leu at position 97, but Vdelta1 T-cells did not expand in response to risedronate. Moreover, Vdelta2 T-cells from the nonresponder against risedronate also carried a Val/Leu/Ile amino acid residue at position 97. These results suggest that the presence of a hydrophobic amino acid residue at position 97 in CDR3 of the TCR delta chain is not sufficient to account for the recognition of aminobisphosphonate by human gammadelta T-cells.

Amino Acid Sequence↗

Gene expression profiling of human erythroid progenitors by micro-serial analysis of gene expression.

We compared the expression profiles of highly purified human CD34+ cells and erythroid progenitor cells by micro-serial analysis of gene expression (microSAGE). Human CD34+ cells were purified from granulocyte colony-stimulating factor-mobilized blood stem cells, and erythroid progenitors were obtained by cultivating these cells in the presence of stem cell factor, interleukin 3, and erythropoietin. Our 10,202 SAGE tags allowed us to identify 1354 different transcripts appearing more than once. Erythroid progenitor cells showed increased expression of LRBA, EEF1A1, HSPCA, PILRB, RANBP1, NACA, and SMURF. Overexpression of HSPCA was confirmed by real-time polymerase chain reaction analysis. MicroSAGE revealed an unexpected preferential expression of several genes in erythroid progenitor cells in addition to the known functional genes, including hemoglobins. Our results provide reference data for future studies of gene expression in various hematopoietic disorders, including myelodysplastic syndrome and leukemia.

Antigens, CD34↗

49, XXXXY syndrome with unilateral renal aplasia, proteinuria, and venous thromboembolism.

A 28-year-old man presented with mental retardation, peculiar facial features, radioulnar synostosis, hypogonadism, aplasia of the right kidney, a moderate degree of proteinuria, and peripheral cyanosis. The activated partial thromboplastin time was shortened, and the level of plasma factor VIII was high. A chromosomal analysis revealed a 49, XXXXY karyotype. From the 10th hospital day, he suffered from sudden dyspnea following swelling of the left leg. He was diagnosed as having deep vein thrombosis and pulmonary embolism, and was successfully treated with anticoagulant therapy. This is the first case of the 49, XXXXY syndrome complicated with unilateral renal aplasia, proteinuria, and venous thromboembolism.

Abnormalities, Multiple↗

Rapidly progressed secondary amyloidosis in a patient with mixed connective tissue disease.

A 39-year-old woman with mixed connective tissue disease suddenly developed repeated watery diarrhea two years after the onset of the disease. A colonic biopsy specimen revealed amyloid A protein deposition and the diagnosis of secondary amyloidosis was established. The amyloid deposition disappeared after the 8-month course of the treatment with prednisolone and azathioprine. Molecular genetic analysis showed the presence of the gamma-allele in her serum amyloid A protein 1 gene. This might be associated with the early onset and progression of secondary amyloidosis in our case, just like cases reported in rheumatoid arthritis.

Adult↗

[GVHD].

Explore the source record for details and available documents.

Antilymphocyte Serum↗

Migration and differentiation of nuclear fluorescence-labeled bone marrow stromal cells after transplantation into cerebral infarct and spinal cord injury in mice.

There is increasing evidence that bone marrow stromal cells (BMSC) have the potential to migrate into the injured neural tissue and to differentiate into the CNS cells, indicating the possibility of autograft transplantation therapy. The present study was aimed to clarify whether the mouse BMSC can migrate into the lesion and differentiate into the CNS cells when transplanted into the mice subjected to focal cerebral infarct or spinal cord injury. The BMSC were harvested from mice and characterized by flow cytometry. Then, the BMSC were labeled by bis-benzimide, a nuclear fluorescence dye, over 24 h, and were stereotactically transplanted into the brain or spinal cord of the mice. The cultured BMSC expressed low levels of CD45 and high levels of CD90 and Sca-1 on flow cytometry. A large number of grafted cells survived in the normal brain 4 weeks after transplantation, many of which were located close to the transplanted sites. They expressed the neuronal marker including NeuN, MAP2, and doublecortin on fluorescent immunohistochemistry. However, when the BMSC were transplanted into the ipsilateral striatum of the mice subjected to middle cerebral artery occlusion, many of the grafted cells migrated into the corpus callosum and injured cortex, and also expressed the neuronal markers 4 weeks after transplantation. In particular, NeuN was very useful to validate the differentiation of the grafted cells, because the marker was expressed in the nuclei and was overlapped with bis-benzimide. Similar results were obtained in the mice subjected to spinal cord injury. However, many of the transplanted BMSC expressed GFAP, an astrocytic protein, in injured spinal cord. The present results indicate that the mouse BMSC can migrate into the CNS lesion and differentiate into the neurons or astrocytes, and that bis-benzimide is a simple and useful marker to label the donor cells and to evaluate their migration and differentiation in the host neural tissues over a long period.

Animals↗

Analysis of mutations in alpha-actinin 4 and podocin genes of patients with chronic renal failure due to sporadic focal segmental glomerulosclerosis.

Although the pathogenesis of idiopathic focal segmental glomerulosclerosis (FSGS) may be heterogeneous, autosomal dominant and recessive forms of FSGS are recognized. Recently, mutations in alpha-actinin 4 (ACTN4) and podocin genes were reported in patients with such familial FSGS. However, whether mutations in ACTN4 and podocin genes are associated with sporadic FSGS has not been determined. In the present study, we clarified the relation between mutations in ACTN4 and podocin genes and sporadic FSGS. We analyzed these reported mutations in ACTN4 and podocin in five patients with chronic renal failure due to therapy-resistant FSGS by direct sequencing of polymerase chain reaction products of ACTN4 and podocin. We found a C to T transition at nucleotide 465 in the ACTN4 gene in all of patients, and a T to C transition at nucleotide 954 in exon eight of podocin gene in two of five patients, resulting in no amino acid substitutions. Other mutations were not found in ACTN4 and podocin genes. Our findings suggest that sporadic FSGS is a heterogeneous disease, since ACTN4 and podocin genes are not found in our patients with sporadic FSGS.

Actinin↗

Renal alpha-actinin-4: purification and puromycin aminonucleoside-binding property.

Mutations in the gene encoding nonmuscle alpha-actinin-4 (actinin-4), an actin cross-linking protein, lead to congenital nephrosis. This suggests that actinin-4 is an essential component of the glomerular filtration barrier. In the present study, we attempted to purify actinin-4 from the mammalian kidney. We also examined an interaction of the protein with puromycin aminonucleoside (PAN), which can induce nephrosis in animals. A 100-kD protein reactive with antibody against muscle alpha-actinin was purified from the Triton-insoluble cytoskeleton of porcine kidney, by MgCl2 treatment, ammonium sulfate fractionation, and subsequent DEAE-cellulose chromatography and hydroxyapatite chromatography. Its partial amino acid sequence was then determined. A filamentous actin (F-actin)-binding activity of the purified protein was examined by a cosedimentation assay. Interactions of the purified protein and its fragments with PAN were analyzed by an affinity assay using PAN-Sepharose. Determined 134 amino acid sequences of the purified porcine renal 100-kD protein were completely identical with those deduced from nucleotide sequence of the cDNA encoding human actinin-4. The purified protein possessed the known function of alpha-actinin, the F-actin-binding activity, and was tightly bound to PAN. The PAN-binding site was mapped within a central rod domain of the protein, which is a possible interaction site for various cytoskeletal and transmembrane proteins. We have established an efficient purification method for renal actinin-4. Moreover, our findings indicate that the central rod domain of actinin-4 has a high affinity to PAN. In the PAN nephrosis animal model, actinin-4 might be a target protein from PAN nephrotoxicity.

Actinin↗

Amyloid arthropathy resembling seronegative rheumatoid arthritis in a patient with IgD-kappa multiple myeloma.

A 67-year-old woman suffered from symmetrical polyarthralgia and multiple joint swelling simulating rheumatoid arthritis (RA). Laboratory examination showed negative results for rheumatoid factor, decreased levels of IgG, IgA, and IgM, and an increased level of IgD. Immunoelectrophoresis in her serum and urine revealed an IgD-kappa monoclonal component and Bence Jones protein (kappa), respectively. A bone marrow biopsy showed an excess of atypical plasma cells. A synovial biopsy revealed amyloid deposition composed of IgD-kappa. She was diagnosed with amyloid arthropathy (AmyA) secondary to IgD-kappa multiple myeloma. It is important to pay attention to AmyA due to multiple myeloma in patients with seronegative RA.

Aged↗

[Hemolytic uremic syndrome-like episode following nonmyeloablative hematopoietic stem cell transplantation in a patient with chronic myeloid leukemia].

We report on a 61-year-old woman with chronic myeloid leukemia (CML) who developed a hemolytic uremic syndrome (HUS)-like episode following nonmyeloablative allogeneic hematopoietic stem cell transplantation. Macrohematuria, hypertension, hemolytic anemia with red cell fragmentation, thrombocytopenia, and progressive renal insufficiency were observed after thawed peripheral blood stem cell (PBSC) infusion. Although transient systemic hemolysis is known to occur during dimethylsulfoxide (DMSO)-cryopreserved stem cell infusion, HUS caused by DMSO has not been described in the literature. We speculate that one of the triggers of the HUS-like episode could have been renal microangiopathy caused by the long-term administration of interferon-alpha before the stem cell transplantation.

Cryopreservation↗

Bone marrow stromal cells prepared using AB serum and bFGF for hematopoietic stem cells expansion.

BACKGROUND: An ex vivo culture system was previously established for stem cell expansion using human marrow stromal cells and serum-free medium. However, the stromal cells were prepared using long-term culture medium containing horse serum and FCS, which may transmit infectious diseases of xenogeneic origin. In this study, therefore, a method was established to prepare stromal cells using an AB serum-based medium. In the case that serum from a transplant recipient or PBPC donor is available, additional infectious diseases would not be transmitted. STUDY DESIGN AND METHODS: Cord blood CD34+ cells were cultured with thrombopoietin, stem cell factor, and flt3/flk2 ligand on a monolayer of human marrow primary stromal cells prepared using long-term culture medium or AB serum-based medium. After 2 weeks, clonogenic progenitor activity and SCID mouse-reconstituting cell activity were assayed. mRNA expression of cytokines and Notch ligand by stromal cells was also examined. RESULTS: There were no remarkable differences in expansion-supporting activity and mRNA expression between stromal cells established by the two methods. CONCLUSION: An ex vivo expansion system completely based on AB serum has been established.

ABO Blood-Group System↗

[Science in atherosclerosis].

Ischemic heart disease and cerebral vascular accident are major cause of death in Japan. Development of these diseases is based on atherosclerosis, which would become evident in the middle-aged. Atherosclerosis is a process of aging, because its progression is closely associated with increase in age. Other factors such as smoking, eating habits and obesity are known to facilitate it. Therefore, it is very important for each one of us to learn the risk factors of atherosclerosis and to prevent it by paying attention to our life style. In this citizen joint symposium, we focused on the strategy for treatment and prevention of atherosclerosis by summarizing its mechanisms and consequences. Participation in the symposium could hopefully stimulate our civil activities against atherosclerosis and help promoting our health care in Hokkaido.

Arteriosclerosis↗

Thrombopoietin regulates Bcl-xL gene expression through Stat5 and phosphatidylinositol 3-kinase activation pathways.

Thrombopoietin (TPO), an essential factor for megakaryopoiesis and thrombopoiesis, works as a survival factor for megakaryocytic lineage cells. However, little is known about the molecular mechanism in detail. We show here that TPO supports the survival of TPO-dependent leukemia cell line UT-7/TPO and normal megakaryocytic progenitors via the induction of Bcl-xL, an anti-apoptotic member of the Bcl-2 family. We further analyzed the signal transduction pathways required for TPO-induced Bcl-xL gene expression. A reporter assay with various lengths of Bcl-x gene promoter revealed that both Stat- and nuclear factor kappa B-binding sites are prerequisites for TPO-induced promoter activity. Consistent with these results, TPO induced the binding of Stat5 and subunits of nuclear factor kappa B, p50, and c-Rel to the Bcl-x gene promoter. AG490, a specific inhibitor for Jak2, and LY294002, a specific inhibitor for phosphatidylinositol (PI) 3-kinase, reduced the protein level of Bcl-xL in UT-7/TPO cells, accompanied by an increase in the ratio of apoptotic cells. Interestingly, LY294002 enhanced the TPO-induced DNA binding activity of Stat5 without affecting the Jak2 activation and tyrosine phosphorylation of Stat5. Concomitantly, confocal microscopy revealed that LY294002 clearly inhibited the nuclear export of Stat5, suggesting that PI 3-kinase regulates the subcellular localization of Stat5. Taken together, our results suggest that both Jak-Stat and PI 3-kinase activation pathways regulate the TPO-induced survival of megakaryocytic cells via Bcl-xL gene expression. In addition, our data suggest possible cross-talk between these two signaling pathways.

Apoptosis↗