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Biomedical subjects

K Umeki

Publications and source records attributed to K Umeki.

At least 37 records · Page 2Linked to original sources

Immunohistochemical loss of thyroid peroxidase in papillary thyroid carcinoma: strong suppression of peroxidase gene expression.

It is believed that qualitative changes in thyroid peroxidase (TPO) cause decreased enzyme activity in differentiated thyroid carcinoma. To re-evaluate TPO expression in thyroid cancer, TPO mRNA expression was compared with TPO protein expression in 38 samples of thyroid tissue obtained from patients with various thyroid diseases. In Northern blot studies, while TPO mRNA was highly expressed in tissues from all 18 benign lesions, it was strongly suppressed in 14 tumours, including 12 out of 12 papillary carcinomas, one of seven follicular carcinomas, and one medullary carcinoma. TPO mRNA was not detected in six carcinomas, of which four were papillary, one follicular, and one medullary, by the usual Northern blot method. The 14 cases with strong underexpression of TPO mRNA were very weakly stained with anti-TPO monoclonal antibody 38E, whereas all 18 benign tissues were strongly stained. Moreover, a comparative study of TPO expression by Northern blot and immunohistochemical analysis revealed a positive correlation between TPO mRNA expression and the staining intensity of TPO protein. These results suggest that strong suppression of TPO mRNA transcription causes low TPO activity in papillary carcinoma; immunohistochemical loss of TPO may be a useful diagnostic marker. TPO mRNA expression in differentiated thyroid carcinomas did not always correlate with the mRNA expression of thyroglobulin, thyroid stimulating hormone receptor, and thyroid transcription factor 1.

Biomarkers, Tumor↗

A keratin K14 gene mutation in a Japanese patient with the Dowling-Meara type of epidermolysis bullosa simplex.

Epidermolysis bullosa simplex (EBS) is caused by an aberration of the keratin intermediate filaments and recent studies indicated causal mutations in the keratin K14 and K5 genes. In this study, we examined keratin K14/5 gene mutation in a Japanese patient with EBS Dowling-Meara (EBSDM). The patient had a C to T transition at the first position of codon 125, which resulted in Arg-->Cys at the N-terminus of the rod domain in the keratin K14 gene. The mutation position described here was identical to those reported in some other EBSDM patients. Our result revealed mutation in the peptide initiating helical structure of keratin K14 and, together with the results of other workers, suggests that the mutation in the keratin K14 gene of EBSDM sufferers occurs in virtually every ethnic group and geographical area.

Alleles↗

A novel keratin K5 gene mutation in Dowling-Meara epidermolysis bullosa simplex.

We examined keratin K14 and K5 genes mutation in a Japanese Dowling-Meara epidermolysis bullosa simplex patient with severe generalized blistering and erosions at birth. The patient had a C to T transition at the first position of codon 174 in the keratin K5 gene, which resulted in a Leu->Phe substitution at the highly conserved 1A domain in keratin K5. Thus, our results revealed a novel mutation in the helix initiation peptide of keratin K5.

Amino Acid Sequence↗

Differential expression of dipeptidyl peptidase IV (CD26) and thyroid peroxidase in neoplastic thyroid tissues.

This paper reports the results of research to examine the possibility of using the differential expression of two enzymes, dipeptidyl peptidase IV (DPPIV/CD26, EC: 3.4.14.5) and thyroid peroxidase (TPO, EC: 1.11.1.7), as histochemical markers histopathologically to diagnose thyroid carcinomas. The research is based on previous reports that DPPIV/CD26 is overexpressed in differentiated thyroid carcinoma tissues, and that TPO activity is very low in thyroid carcinoma tissues. Differential expression of the two enzymes in 32 thyroid tissues of various thyroid diseases was studied by Northern blot analysis and histochemical analysis. On Northern blot analyses, all 14 differentiated thyroid carcinomas (11 papillary carcinomas and 3 follicular carcinomas) overexpressed DPPIV/CD26 mRNA, whereas all 17 benign thyroid tissues (4 normal thyroid tissues, 4 Graves' diseases, 2 adenomatous goiters and 7 follicular adenomas) showed faint mRNA expression of DPPIV/CD26. All 17 benign thyroid tissues expressed high levels of TPO mRNA, whereas all 11 papillary carcinomas strongly underexpressed TPO mRNA. Histochemically, all 17 benign tissues were DPPIV/CD26 negative and strongly TPO positive, while all 11 papillary carcinomas were strongly DPPIV/CD26 positive and TPO negative. Two of 3 follicular carcinomas were histochemically positive for the two enzymes. A medullary carcinoma did not show any mRNA expression of either enzyme. These results suggest that the differential expression of these two enzymes can be applied to study the thyroid tumorigenesis.

Adenocarcinoma, Follicular↗

[CD26/dipeptidyl peptidase IV and thyroid peroxidase as molecular markers for differentiated thyroid carcinoma].

Differential expression of two enzymes, dipeptidyl peptidase IV (CD26/DPP IV) and thyroid peroxidase (TPO), in neoplastic thyroid tissues was studied by Northern blot analysis and histochemical analysis using 31 thyroid tissue specimens of various thyroid diseases. On Northern blot analysis, all 16 differentiated carcinomas (12 papillary and 4 follicular carcinomas) overexpressed CD26/DPP IV mRNA, whereas all 14 benign tissue specimens (4 normal thyroid, 4 Graves' disease, 2 adenomatous goiters and 4 follicular adenomas) showed faint expression of CD26/DPP IV mRNA. All 14 benign tissues expressed high levels of TPO mRNA, whereas all 12 papillary carcinomas strongly underexpressed TPO mRNA. A medullary carcinoma did not show any mRNA expression of either enzyme. TPO mRNA expression in differentiated carcinomas did not always correlate with mRNA expression of thyroglobulin, thyroid stimulating hormone receptor, and thyroid transcription factor-1. Northern blot analysis also revealed that CD26/DPP IV is a more specific marker of differentiated carcinoma than three proto-oncogenes previously reported to increase mRNA expression in thyroid carcinomas: c-met, c-erbB-2, and EGF-R. Histochemically, all 14 benign tissues were CD26/DPP IV negative and strongly TPO positive, while all 12 papillary carcinomas were strongly CD26/DPP IV positive and TPO negative. Three of 4 follicular carcinomas were histochemically positive for the two enzymes. These findings suggest that the differential expression of these two enzymes can be applied to study the thyroid tumorigenesis.

Adenocarcinoma, Follicular↗

CD26 (dipeptidyl peptidase IV/DPP IV) as a novel molecular marker for differentiated thyroid carcinoma.

In this report we show that CD26 (dipeptidyl peptidase IV/DPP IV) is a novel molecular marker for differentiated thyroid carcinoma. Northern-blot analysis of 22 various thyroid tissues revealed that CD26 is a more specific marker of differentiated thyroid carcinoma than 3 proto-oncogenes previously reported to increase mRNA expression in thyroid carcinomas: c-met, c-erbB-2 and EGF-R. A comparative study of 3 CD26 assays, Northern blotting, immunohistochemical staining and activity staining clearly showed that CD26 enzyme activity staining is the most specific assay for differentiated thyroid carcinoma, yet the easiest to perform. Activity staining of 216 thyroid tissues detected CD26 in all 52 papillary carcinomas and all 5 follicular carcinomas, while all 58 cases of Graves' disease were CD26-negative. Among benign neoplasms, 54 of 55 adenomatous goiters and 29 of 33 follicular adenomas were CD26 negative. Staining intensity of the enzyme activity was relative to the degree of CD26 mRNA expression. Southern-blot study showed no gene amplification or major translocation of the CD26 gene in 7 papillary carcinomas examined. Based on this study, ectopic expression of CD26 in differentiated thyroid carcinomas is thought to be mainly caused by increased CD26 mRNA expression. In conclusion, CD26 activity staining is a simple, specific assay which should be added to the usual pathological examinations in order to distinguish differentiated thyroid carcinomas from benign thyroid diseases.

Adolescent↗

c-Kit proto-oncogene is more likely to lose expression in differentiated thyroid carcinoma than three thyroid-specific genes: thyroid peroxidase, thyroglobulin, and thyroid stimulating hormone receptor.

Although c-kit proto-oncogene product is known to be weakly expressed on normal thyrocytes, its function is unclear. In order to investigate the significance of thyroid c-kit, c-kit gene expression in 37 various thyroid tissues was analyzed by comparing c-kit gene expression with the mRNA expression of three thyroid-specific genes: thyroid peroxidase, thyroglobulin, and thyroid stimulating hormone receptor, c-kit mRNA was hardly detected by the usual northern blot method in 2 of 7 follicular carcinomas, 11 of 12 papillary carcinomas, and a medullary carcinoma. On the other hand, a high level of c-kit mRNA expression was found in all 17 benign thyroid tissues (4 normal thyroid tissues, 4 Graves' disease, 2 adenomatous goiters, and 7 follicular adenomas). This study found that c-kit proto-oncogene is more likely to lose expression in differentiated thyroid carcinoma than any thyroid-specific gene. Decreased c-kit gene expression may serve as an indicator for the de-differentiation of thyrocytes.

Blotting, Northern↗

A study of the steroid sulfatase gene in families with X-linked ichthyosis using polymerase chain reaction.

We have studied the steroid sulfatase (STS) gene in three Japanese families with X-linked ichthyosis (XLI), using polymerase chain reaction (PCR). PCR was performed using three sets of intraexonic primers covering exons 1, 5 and 10. In affected individuals from two of the families, DNA was not amplified in any of the three exons, suggesting that XLI in these families was due to the complete deletion of the STS gene. In affected individuals in the remaining family, DNA was amplified in predicted sizes in exons 1 and 5, but not in exon 10, suggesting that XLI in this family was due to partial deletion of the STS gene including exon 10. These results suggested that STS gene deficiency is heterogeneous in Japanese families with XLI. PCR is useful for the rapid diagnosis of XLI, the differentiation of XLI from ichthyosis vulgaris, and genetic counseling of XLI families. The PCR method was not applicable for carrier detection.

Adolescent↗

Hepatocyte growth factor and acute phase proteins in patients with chronic liver diseases.

Serum hepatocyte growth factor (HGF) levels are increased in patients with liver diseases. HGF has been recently reported to stimulate production of acute phase proteins such as alpha 2-macroglobulin and albumin of hepatocytes in primary culture. To clarify whether serum HGF concentrations have any relation to concentrations of acute phase proteins, we measured serum HGF and acute phase proteins in chronic liver diseases where the synthesis of many plasma proteins is decreased with the decline of liver function. Eighty three patients with chronic liver diseases and 20 normal individuals were examined for serum HGF, albumin, C-reactive protein (CRP), alpha-fetoprotein (AFP), alpha 1-acid glycoprotein (alpha 1-AG) and alpha 2-macroglobulin (alpha 2-MG). Mean values for serum HGF in chronic hepatitis (CH), liver cirrhosis (LC) and hepatocellular carcinoma (HCC) were 0.37, 0.79 and 0.66 ng/mL, which were significantly higher than those in controls (p < 0.05, p < 0.0001 and p < 0.0001, respectively). The levels of CRP increased in parallel with the progression of chronic liver diseases. Levels of alpha 2-MG were not changed in patients with CH Or LC, while those in patients with HCC were significantly higher than in controls or LC (p < 0.01 and p < 0.05, respectively). Serum HGF showed a positive correlation with CRP and a negative correlation with albumin. However, no relations between HGF and alpha 2-MG were observed. These data suggest that serum levels of acute phase proteins such as albumin and alpha 2-MG are more closely associated with the degree of hepatic dysfunction than serum HGF levels.

Acute-Phase Proteins↗

Type VII collagen DNA linkage analysis in a Japanese family with dominant dystrophic epidermolysis bullosa.

Type VII collagen, a major component of anchoring fibrils in the basement membrane zone, is now considered to be a primary genetic factor in the pathogenesis of dominant dystrophic epidermolysis bullosa (DDEB). In this study, we performed genetic linkage analysis in a Japanese family with DDEB using a PvuII polymorphism in the type VII collagen gene. The pedigree consisted of 10 affected and 13 unaffected living individuals and was diagnosed as having Cockayne-Touraine type of DDEB. Electron microscopic examination of the skin demonstrated a diminished number and rudimentary structure of anchoring fibrils. PCR-based detection of PvuII polymorphism resulted in 3 genotypes and co-segregated with DDEB phenotype in this pedigree. The maximum lod score was 2.10 at recombination fraction (theta) of 0. The absence of recombination between DDEB and type VII collagen gene locus, as well as the observation of altered anchoring fibrils, suggested that type VII collagen is a candidate gene for the Japanese family with DDEB, although the lod score was statistically not significant.

Base Sequence↗

Serum hepatocyte growth factor in acute hepatic failure in comparison with acute hepatitis.

Serum hepatocyte growth factor (HGF) levels in patients with acute hepatic failure has been reported to increase. However, possible mechanisms responsible for HGF elevation in this syndrome remains to be determined. To explore the possible mechanisms, we measured serum HGF in patients with acute hepatic failure and self-limited acute hepatitis, using an immunoradiometric assay. Serum HGF levels in acute hepatic failure were 36-fold higher compared with those in acute hepatitis. Serum HGF values in acute hepatitis were significantly correlated with serum bilirubin and gamma-GTP levels, whereas those in acute hepatic failure were not. These clinical findings suggest that serum HGF levels in acute hepatic failure may be regulated by different mechanisms from those in self-limited acute hepatitis.

Acute Disease↗

[Measurement of human thyroid peroxidase autoantibodies by enzyme immunoassay using recombinant human TPO].

An EIA for measuring anti-TPO autoantibodies (rhTPO-EIA) was developed using recombinant human TPO expressed in CHO cells and was compared with MC-HA generally used in laboratory routine work. rhTPO-EIA showed a satisfactory reproducibility in the intra-assay test and did not have an accidental error of lots. Almost equal number of healthy females and males were measured for their IgG binding to TPO to define a normal range of anti-TPO autoantibodies. After setting 20 IU/ml as an upper limit of normal range, sera from patient with thyroid disorders were measured for their anti-TPO autoantibodies. Chronic thyroiditis and Graves' disease were highly positive, while adenoma, thyroid cancer, SLE, and RA were low in their positivity. The positive rate of anti-TPO autoantibodies was compatible to those of previous reports in each disorder. Seventy-two sera from patients with chronic thyroiditis or Graves' disease were measured for their autoantibodies by both rhTPO-EIA and MC-HA and the results were compared between both methods. A correlation coefficient was 0.486. Following absorption with thyroglobulin, sera were measured again and as the results, the correlation coefficient increased to 0.723. Therefore, MC-HA was thought to be influenced in the presence of anti-thyroglobulin autoantibodies. Since rhTPO-EIA is excellent in quality and not affected by anti-thyroglobulin antibodies, it is useful and applicable to clinical diagnosis and observation of thyroid disorders.

Autoantibodies↗

Nucleotide sequence of the cDNA encoding mouse thyroid peroxidase.

The nucleotide (nt) sequence of the cDNA encoding mouse thyroid peroxidase (TPO) has been determined. The TPO cDNA is 3281 nt long and its open reading frame encodes a protein composed of 914 amino acids (aa), including a putative initiation Met. The mouse TPO cDNA shows 75.3, 70.8, and 93.5% homology in the coding nt sequence with human, porcine, and rat TPO cDNAs, respectively. In the aa sequence, mouse TPO shows 73.4, 68.4, and 93.9% homology with human, porcine, and rat TPOs, respectively. Specifically, the aa sequence surrounding the proximal His residue, probably essential for TPO activity, is well conserved among these four organisms.

Amino Acid Sequence↗

Identification of thyroiditogenic epitope on porcine thyroid peroxidase for C57BL/6 mice.

C57BL/6 mice show thyroid lesions when immunized with porcine thyroid peroxidase (pTPO) emulsified in CFA. We attempted to clarify a thyroiditogenic epitope on pTPO. Thyroid peroxidase treated with cyanogen bromide was fractionated by reverse phase chromatography, and six fractions (A to F) were obtained. Two of these fractions (D and E) stimulated lymph node cells (LNC) primed with pTPO in vitro and induced thyroiditis in vivo. Tricine-SDS-PAGE and rechromatography showed that fraction D consisted solely of a fragment of Mr 9500 Da and that fraction E contained mainly fragments of Mr of 5400 and 9500 Da. The fragment of fraction D was rechromatographed and 20 NH2-terminal amino acids were analyzed. This segment was found to correspond to residue 726-745 of pTPO deduced from cDNA at a probability of 80%. Four peptides ranging from residue 746-827 were first synthesized and tested for their thyroiditogenicity. Only Pep-2 (29 amino acids) could stimulate LNC primed with pTPO and induce thyroiditis. Pep-2 was divided into two smaller peptides (Pep-2-1 and -2-2) and their thyroiditogenicity was tested again. Pep-2-1 corresponding to residue 774-788, GPA-QITCTPRGWDSP, had thyroiditogenicity as well as the ability to stimulate LNC. It was thought that this segment was at least one of the thyroiditogenic epitopes on porcine thyroid peroxidase for C57BL/6 mice.

Amino Acid Sequence↗