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Biomedical subjects

M Osaki

Publications and source records attributed to M Osaki.

At least 19 recordsLinked to original sources

YY1 is a positive regulator of transcription of the Col1a1 gene.

Both cell-specific and ubiquitous transcription factors in fibroblasts have been identified as critical for expression of the Col1a1 gene, which encodes the alpha1 chain of type I collagen. Here, we report that Yin Yang 1 (YY1) binds to the Col1a1 promoter immediately upstream of the TATA box, and we examine the functional implications of YY1 binding for regulation of Col1a1 gene expression in BALBc/3T3 fibroblasts. The Col1a1 promoter region spanning base pairs (bp) -56 to -9 bound purified recombinant YY1 and the corresponding binding activity in nuclear extracts was supershifted using a YY1-specific antibody. Mutation of the TATA box to TgTA enhanced YY1 complex formation. Mutation analysis revealed two YY1 core binding sites at -40/-37 bp (YY1A) and, on the reverse strand, at -32/-29 bp (YY1B) immediately adjacent to the TATA box. In transfections using Col1a1-luciferase constructs, mutation of YY1A decreased activity completely (wild-type p350 (p350wt), -222/+113 bp) or partially (p130wt, -84 bp/+13 bp), whereas mutation of YY1B blocked the expression of both promoter constructs. Cotransfection with pCMV-YY1 increased p350wt and p130wt activities by as much as 10-fold, whereas antisense YY1 decreased constitutive expression and blocked the increased activity due to pCMV-YY1 overexpression. The mTgTA constructs were devoid of activity, arguing for a requirement for cognate binding of the TATA box-binding protein (TBP). Electrophoretic mobility shift assays performed under conditions permitting TBP binding showed that recombinant TBP/TFIID and YY1 could bind to the -56/-9 bp fragment and that YY1B was the preferred site for YY1 binding. Our results indicate that YY1 binds to the Col1a1 proximal promoter and functions as a positive regulator of constitutive activity in fibroblasts. Although YY1 is not sufficient for transcriptional initiation, it is a required component of the transcription machinery in this promoter.

3T3 Cells↗

SH2D1A mutations in Japanese males with severe Epstein-Barr virus--associated illnesses.

X-linked lymphoproliferative disease (XLP), a genetic disorder characterized by immunodeficiency to Epstein-Barr virus (EBV) infection, has been linked to mutations in the SH2D1A gene. To search for the occurrence of SH2D1A mutations in Japan, we performed genetic analysis of the SH2D1A gene in 40 males presenting with severe EBV-associated illnesses, including fulminant infectious mononucleosis, EBV-positive lymphoma, and severe chronic active EBV infection. SH2D1A mutations were detected in 10 of these 40 patients. Five of these 10 cases were sporadic. Patients with SH2D1A mutations displayed severe acute infectious mononucleosis with hyperimmunoglobulin M, hypogammaglobulinemia, and B-cell malignant lymphoma. By contrast, chronic active EBV infection was not associated with SH2D1A mutations. XLP survivors exhibited normal levels of circulating EBV-DNA during convalescence, suggesting that SH2D1A protein is not directly responsible for control of EBV replication. Thus, genetic analysis of the SH2D1A gene is particularly useful in the diagnosis of sporadic cases and carriers of XLP. (Blood. 2001;98:1268-1270)

Adolescent↗

Construction and characterization of Streptococcus suis-Escherichia coli shuttle cloning vectors.

pSSU1, a native plasmid of Streptococcus suis DAT1, was used to construct pSET-series shuttle vectors. In addition to the replication function of pSSU1, these vectors contain the multiple cloning sites and lacZ' gene from pUC19, which means that X-gal screening can be used to select recombinants in Escherichia coli. pSET1, pSET2, and pSET3 carry cat, spc, and both of these genes, respectively, as selectable markers. These vectors could be introduced into S. suis, E. coli, Salmonella typhimurium, S. pneumoniae, and S. equi ssp. equi by electrotransformation. The recA gene was cloned from S. suis and sequenced, and this information was used in the construction of a recA mutant of S. suis. Transformation frequencies and/or plasmid stability of all pSET vectors tested were decreased in both S. suis and E. coli recA mutants compared with the parental strains. These results suggested that functional RecA protein improved the maintenance of pSET vectors in both S. suis and E. coli. Moreover, cloning of the functional S. suis recA gene into pSET2 and complementation analysis of the recA mutant were successful in S. suis but not in E. coli. These results showed that pSET vectors are useful tools for cloning and analyzing S. suis genes in S. suis strains directly.

Base Sequence↗

Thermosensitive suicide vectors for gene replacement in Streptococcus suis.

Three thermosensitive (Ts) suicide vectors, pSET4s, pSET5s, and pSET6s, have been constructed for gene replacement in Streptococcus suis. Each vector contains an antibiotic-resistance gene (spc or cat), a Ts replication origin of pWV01 lineage, multiple cloning sites, lacZ', and the ColE1 replication origin of pUC19. These vectors could be propagated at 37 degrees C in Escherichia coli, but their replication was blocked above 37 degrees C in S. suis. Moreover, the thermosensitivity of the replication origin was confirmed in S. equi ssp. equi, S. equi ssp. zooepidemicus, and S. dysgalactiae by using pSET4s. For inactivation of the sly gene, which encodes a thiol-activated hemolysin of S. suis, pSLYK, in which the sly gene was interrupted by the cat gene, was constructed using pSET4s and introduced into S. suis DAT2. After growth at the nonpermissive temperature under the antibiotic pressure, the chromosomal sly gene was replaced with the sly::cat gene of pSLYK by a double-crossover event at a rate of 2.6% among chloramphenicol-resistant cells. Moreover, complementation of the sly gene by use of the previously reported S. suis-E. coli shuttle vector pSET2 was demonstrated. These results indicate that the Ts suicide vectors described here will facilitate the genetic analysis of S. suis and other streptococci of veterinary importance by means of allelic exchange of the genes of interest via homologous recombination.

Base Sequence↗

Expression of Fas and Fas ligand in human gastric adenomas and intestinal-type carcinomas: correlation with proliferation and apoptosis.

BACKGROUND: Fas (APO-1/CD95), a member of the tumor necrosis factor/nerve growth factor receptor superfamily, mediates apoptosis in response to agonistic antibodies or Fas ligand (FasL) binding. Previous reports indicated an up-regulation of FasL in gastric carcinomas to evade host immune attack. Fas/FasL expression, however, has not been analyzed in terms of apoptosis and proliferation in gastric adenoma and carcinoma. METHODS: This study was conducted on seven human gastric carcinoma cell lines, 47 gastric adenomas, and 75 intestinal-type adenocarcinomas (48 early and 27 advanced carcinomas). Fas/FasL expression was examined by immunohistochemistry, apoptosis by the terminal deoxynucleotidyl transferase-mediated dUTP-digoxigenin nick-end labeling (TUNEL) method, and Fas gene mutation by a reverse transcriptase (RT) polymerase chain reaction-single-strand conformation polymorphism (PCR-SSCP) and sequencing method. RESULTS: Fas and FasL expressions were noted in 18 (38.3%) and 17 (36.2%) adenomas, in 21 (43.8%) and 33 (68.8%) early carcinomas, and in 10 (37.0%) and 19 (70.4%) advanced carcinomas, respectively. The frequency of FasL expression was significantly higher in advanced carcinomas than in the early carcinomas and adenomas; in contrast, there was no significant difference in Fas expression among the three groups. The mean apoptotic index (AI) was 4.96+/-0.51 in the adenomas, 2.96+/-0.23 in the early carcinomas, and 1.67+/-0.17 in the advanced carcinomas. A significantly higher Al was noted in the lesions with Fas expression than in those without Fas expression in all three groups. No missense mutations of the Fas gene were detected in any of the gastric carcinoma cell lines, or in the gastric adenomas or carcinomas. CONCLUSIONS: Upregulation of FasL may correlate with the progression of gastric carcinoma. Apoptosis in gastric adenoma and carcinoma cells may occur via Fas-dependent and -independent pathways, but further clarification is needed.

Adenocarcinoma↗

Thymidine phosphorylase expression causes both the increase of intratumoral microvessels and decrease of apoptosis in human esophageal carcinomas.

Thymidine phosphorylase (dThdPase)/platelet-derived endothelial cell growth factor, is expressed at higher levels in tumor tissues compared to the adjacent normal tissues in a variety of human carcinomas. The higher expression is associated with an increase of intratumoral microvessel density (IMVD) and an unfavorable patient prognosis. We examined the role of dThdPase in apoptosis, IMVD, P53 expression and patient prognosis of human stages II and III esophageal squamous cell carcinomas (SCC). dThdPase expression was noted in 52 of the 78 esophageal SCC (66.7%), regardless of tumor stages and histologic grades. Mean IMVD was 117.9 +/- 32.6 in the dThdPase-positive cases and 103.1 +/- 21.5 in the dThdPase-negative cases, the value being significantly higher in the former (P < 0.05). Similarly, median (range) apoptotic index (AI: percentage of apoptotic cells) was significantly lower in the dThdPase-positive SCC, 1.8 (0.4-6.5), than in the dThdPase-negative SCC, 3.7 (0.6-7.0) (P < 0.01). AI and IMVD showed a significant inverse correlation (r = - 0.31, P = 0.005). There was also no significant difference in the frequency of P53 expression between the dThdPase-positive SCC and the negative SCC. No statistical difference was noted regarding the postoperative survival rate between the dThdPase-positive and the negative SCC. Although dThdPase expression was not associated with patient prognosis, the expression provided an advantage for tumor growth of human esophageal SCC, not only by increasing the intratumoral microvessels, but also attenuation of apoptosis, which might occur via a p53 gene-independent pathway.

Apoptosis↗

Differences in nitrogen economy of temperate trees.

Twenty-four temperate tree species were classified into three groups based on cluster analysis of relative growth rate, nitrogen concentration, nitrogen-production efficiency, nitrogen-distribution ratio and nitrogen-use efficiency as follows: Group I (Asteridae and Rosidae), Group II (Dilleniidae and Hamamelidae) and Group III (Coniferopsidae). Relative growth rate (RGR) was high in Group II, moderate in Group I and low in Group III. The regression coefficient for the relationship between RGR and leaf nitrogen concentration was higher in Group II than in Group I, and no relationship was observed in Group III. Parameter analysis of RGR indicated that RGR per unit leaf nitrogen was important for all three groups, but that the allocation of nitrogen to leaves was particularly important in Groups I and II. The ratio of dark respiratory rate (R) to net photosynthetic rate (A) was higher in Group I than in Group II. Neither A nor R was measured in the Group III species. A linear relationship was observed between leaf nitrogen concentration and A in Group II, but this relationship was not evident in Group I.

Abies↗

Distribution of the SsuDAT1I restriction-modification system among different serotypes of Streptococcus suis.

The SsuDAT1I restriction-modification (R-M) system, which contains two methyltransferases and two restriction endonucleases with recognition sequence 5'-GATC-3', was first found in a field isolate of Streptococcus suis serotype 2. Isoschizomers of the R-M system were found in the same locus between purH and purD in a field isolate of serotype 1/2 and the reference strains of serotypes 3, 7, 23, and 26 among 29 strains of different serotypes examined in this study. The R-M gene sequences in serotypes 1/2, 3, 7, and 23 were very similar to those of SsuDAT1I, whereas those in serotype 26 were less similar. These results indicate intraspecies recombination among them and genetic divergence through their evolution.

Amino Acid Sequence↗

Evidence for horizontal transfer of SsuDAT1I restriction-modification genes to the Streptococcus suis genome.

Different strains of Streptococcus suis serotypes 1 and 2 isolated from pigs either contained a restriction-modification (R-M) system or lacked it. The R-M system was an isoschizomer of Streptococcus pneumoniae DpnII, which recognizes nucleotide sequence 5'-GATC-3'. The nucleotide sequencing of the genes encoding the R-M system in S. suis DAT1, designated SsuDAT1I, showed that the SsuDAT1I gene region contained two methyltransferase genes, designated ssuMA and ssuMB, as does the DpnII system. The deduced amino acid sequences of M. SsuMA and M.SsuMB showed 70 and 90% identity to M.DpnII and M.DpnA, respectively. However, the SsuDAT1I system contained two isoschizomeric restriction endonuclease genes, designated ssuRA and ssuRB. The deduced amino acid sequence of R.SsuRA was 49% identical to that of R.DpnII, and R.SsuRB was 72% identical to R.LlaDCHI of Lactococcus lactis subsp. cremoris DCH-4. The four SsuDAT1I genes overlapped and were bounded by purine biosynthetic gene clusters in the following gene order: purF-purM-purN-purH-ssuMA-ssuMB-ssuRA++ +-ssuRB-purD-purE. The G+C content of the SsuDAT1I gene region (34.1%) was lower than that of the pur region (48.9%), suggesting horizontal transfer of the SsuDAT1I system. No transposable element or long-repeat sequence was found in the flanking regions. The SsuDAT1I genes were functional by themselves, as they were individually expressed in Escherichia coli. Comparison of the sequences between strains with and without the R-M system showed that only the region from 53 bp upstream of ssuMA to 5 bp downstream of ssuRB was inserted in the intergenic sequence between purH and purD and that the insertion target site was not the recognition site of SsuDAT1I. No notable substitutions or insertions could be found, and the structures were conserved among all the strains. These results suggest that the SsuDAT1I system could have been integrated into the S. suis chromosome by an illegitimate recombination mechanism.

Amino Acid Sequence↗

Expression of minichromosome maintenance 2 (MCM2), Ki-67, and cell-cycle-related molecules, and apoptosis in the normal-dysplasia-carcinoma sequence of the oral mucosa.

OBJECTIVE: We examined cell cycle and cell death biomarker trends with the normal-dysplasia-carcinoma sequence of the oral epithelia analyzing the pathological significance of a new biomarker, minichromosome maintenance 2 (MCM2). METHODS: This study analyzed 12 patients with normal oral epithelia, 69 with dysplasia, and 35 with squamous cell carcinoma (SCC); in 13 patients, SCCs were preceded by dysplasia. The sections were immunostained for MCM2, Ki-67, P53, P27(Kip1) and P21(CIP1/WAF1), and conducted by TUNEL methods. Western blot analysis of MCM2 was performed in the 4 human cultured oral SCCs, all of which showed the expression. RESULTS: Significantly higher labeling indices (LI; %) of MCM2, Ki-67, and P53, as well as lower LI of TUNEL indices (TI; %), P27, and P21 were noted in the SCCs than in the dysplasias. The 13 dysplasias developed SCC with significantly higher LI of MCM2 and P53, and lower LI of P21 than the other dysplasias (each p < 0.05). The LI of MCM2, P21 and the TI were not correlated with P53 expression. CONCLUSIONS: Oral dysplasia was characterized by lower cell proliferation and a higher frequency of cell death compared to SCCs. The higher LI of MCM2 and P53 and the lower LI of P21 might predict malignant transformation of oral dysplasia. MCM2 is regulated via a P53-independent pathway, and a useful biomarker of proliferating cells.

Apoptosis↗

Sequence analysis of a small cryptic plasmid isolated from Streptococcus suis serotype 2.

A small cryptic plasmid designated pSSU1 was isolated from Streptococcus suis serotype 2 strain DAT1. The complete sequence of pSSU1 was 4975 bp and contained six major open reading frames (ORFs). ORF1 and ORF2 encode for proteins highly homologous to CopG and RepB of the pMV158 family, respectively. ORF5 encodes for a protein highly homologous to Mob of pMV158. ORF4 encodes for a protein highly homologous to orf3 of pVA380-1 of S. ferus, but its function is unknown. There was no similarity between ORF3 and ORF6 and other protein sequences. In this plasmid, the ORF1 (CopG protein) was preceded by two multiples of direct repeat and the conserved nucleotides that could be the double-strand origin (DSO) of rolling circle replication (RCR) mechanism. The ORF5 (Mob protein) was followed by a potential hairpin loop that could be the single-strand origin (SSO) of RCR mechanism. The sequence, which was complementary to the leader region of Rep mRNA, was homologous to the countertranscribed RNA (ctRNA) of pLS1. Moreover, a 5-amino acid conserved sequence was found in C terminal of Rep and putative Rep proteins of several pMV158 family plasmids. These observations suggest that this plasmid replicates by use of the rolling circle mechanism.

Amino Acid Sequence↗

Cloning and characterization of the gene encoding O-acetylserine lyase from Streptococcus suis.

We have cloned and sequenced a gene encoding O-acetylserine lyase from Streptococcus suis. The gene encodes a protein of 309 amino acids with a calculated molecular mass of 32,038 Da. The deduced amino acid sequence showed more extensive similarities to the CysK proteins than to the CysM proteins of other bacteria. The cloned gene was inserted into a pTrcHisB histidine hexamer expression vector. A 38-kDa fusion protein was expressed in a cysMK auxotrophic mutant of Salmonella typhimurium and complemented the auxotrophic properties of the mutant. Furthermore, the transformants could grow in minimal defined media supplemented with not only sulfide but also thiosulfate as a sole sulfur source. These data indicated that the cloned gene encodes a protein that was a functional homolog of the CysM in S. typhimurium.

Amino Acid Sequence↗

Thymidine phosphorylase expression results in a decrease in apoptosis and increase in intratumoral microvessel density in human gastric carcinomas.

Thymidine phosphorylase (dThdPase)/platelet-derived endothelial cell growth factor (PD-ECGF) is expressed at higher levels in a variety of human carcinomas than in adjacent normal tissue. The higher expression is associated with an increase in intratumoral microvessel density (IMVD) and an unfavorable patient prognosis. This study examined the role of dThdPase in apoptosis, IMVD and p53 expression in human gastric carcinomas, dThdPase expression was noted in 12 (35.3%) of 34 early carcinomas, and in 20 (55.6%) of 36 advanced carcinomas. At least 10 areas consisting of carcinoma cells with diffuse dThdPase expression from the 32 dThdPase-positive tumors (category I), and 10 areas without dThdPase expression from the 38 negative tumors (category II) were selected from each case. For early gastric carcinoma, the mean IMVD was 88.8+/-19.4 in category I and 61.4+/-17.3 in category II carcinomas, while for advanced gastric carcinoma, the mean IMVD was 98.8+/-21.0 in category I and 76.0+/-27.1 in category II carcinomas. The mean IMVD was significantly higher in category I than in category II tumors (P<0.05). The mean apoptotic index (AI: percentage of apoptotic cells) was 1.95+/-1.30 in category I, and 3.76+/-1.49 in category II carcinomas for early gastric carcinoma, and 1.51+/-0.98 in category I and 2.14+/-0.66 in category II carcinomas for advanced gastric carcinoma, the value of the mean AI being significantly (P<0.05) higher in dThdPase-negative tumors (category II) than in the positive tumors (category I), regardless of tumor stage or histological type. There was a significant inverse correlation (P<0.001) between AI and IMVD. These results indicate that dThdPase expression is associated with both an increase in intratumoral microvessels and a decrease in apoptosis in human gastric carcinomas.

Adenocarcinoma↗

Apoptosis of articular chondrocytes in rheumatoid arthritis and osteoarthritis: correlation of apoptosis with degree of cartilage destruction and expression of apoptosis-related proteins of p53 and c-myc.

To investigate the relationship of chondrocyte apoptosis and cartilage destruction, we performed in situ nick end labeling (ISNEL), electron microscopy, and immunohistochemistry against apoptosis-related proteins, p53 and c-myc, in the articular cartilages of patients with rheumatoid arthritis (RA; n = 12) and osteoarthritis (OA; n = 12), and in control articular cartilages from patients with femoral neck fracture (n = 8). The distribution of stained chondrocytes was evaluated semiquantitatively in relation to the degree of cartilage destruction. ISNEL-positive chondrocytes with apoptotic morphological features were identified in a relatively early phase of cartilage destruction, and correlated positively and significantly in a number with the degree of cartilage degeneration. Comparison of RA and OA revealed a significantly greater number of ISNEL-positive chondrocytes in RA cartilage. In contrast, the specimens of normal subjects contained few cells with apoptotic changes. Similarly to the distribution of ISNEL staining, the expression of p53 and c-myc proteins was observed in chondrocytes within the degraded lesions, and showed a positive correlation with the number of ISNEL-stained cells. These results suggest that the degree of chondrocyte apoptosis is closely related to cartilage destruction and that chondrocytes in RA more readily undergo apoptosis than those in OA. The expression of p53 and c-myc proteins in ISNEL-positive areas may reflect the involvement of these proteins in the apoptotic process in articular chondrocytes in inflammatory arthritis.

Adult↗

Activation of specific MEK-ERK cascade is necessary for TGFbeta signaling and crosstalk with PKA and PKC pathways in cultured rat articular chondrocytes.

OBJECTIVE: TGFbeta is a potent stimulator of cell growth in cultured rat articular chondrocytes (CRAC). The stimulatory effect is mediated through the immediate induction of c-fos gene by activating ERK of MAPK. The present study was undertaken to investigate the upstream regulators involved in TGFbeta-induced ERK activation in CRAC and to compare the results with the events in HepG2 cells. RESULTS: In vitro kinase and trans-reporting assays showed that TGFbeta preferentially activated ERK and JNK pathways in CRAC and HepG2, respectively. ERK activation in CRAC was selectively inhibited by PD98059, a MEK inhibitor. Overexpression of wild or active forms of MEKK1, the upstream activator of ERK and JNK, decreased the TGFbeta-induced 3TP-luciferase activity in CRAC. In contrast, in HepG2 dominant negative form of MEKK1 or SEK1 ligand-dependent reporter activity was diminished. Transfection of TAK1, another MAPKKK, also positively and negatively regulated 3TP transcriptional activity of HepG2 and CRAC, respectively. Activation of PKA by 8-bromo-cyclic AMP or forskolin, and inhibition of PKC by calphostin C, resulted in a significant decrease in 3TP activity as well as in vitro ERK kinase activity in CRAC. CONCLUSIONS: The results indicate that TGFbeta transduces a predominant signal pathway through MEK-ERK-Elk1, independent of MEKK1 or TAK1 pathway in CRAC. However, in HepG2, activation of MEKK1 and TAK1 is essential for TGFbeta-induced signal transmission. The results also demonstrated that in CRAC, MEK-ERK pathway activated by TGFbeta is negatively regulated by PKA cascade but transactivated by PKC.

8-Bromo Cyclic Adenosine Monophosphate↗

Dexamethasone inhibition of TGF beta-induced cell growth and type II collagen mRNA expression through ERK-integrated AP-1 activity in cultured rat articular chondrocytes.

Intraarticular injection of dexamethasone (DEX) accelerates cartilage degradation due to the suppression of chondrocyte proliferation and extracellular matrix formation. The present study first demonstrated the interaction between DEX and TGF beta, a potent growth factor for cultured rat articular chondrocytes (CRAC), and then investigated the molecular mechanism by which DEX counteracts TGF beta-induced chondrocyte proliferation and differentiation through the regulation of AP-1 activity. DEX reduced serum-deprived and TGF beta-stimulated cell growth and [(3)H]-thymidine incorporation of CRAC. DEX also inhibited the expression of (alpha)1 type II collagen with concomitant suppression of the promoter activity. Transfection studies using a reporter vector with AP-1 responsive elements showed that DEX reduced TGF beta-activated but not basal luciferase activities. Activation of 3TP-luc, another AP-1 responsive element containing reporter was also blocked by DEX. GAL4-Elk1 studies revealed that DEX suppressed TGF beta-induced ERK activation which led to c-fos gene expression followed by increase in AP-1 complex formation, whereas the Smad pathway was not involved in DEX-dependent negative regulation of AP-1 in a reporter assay that requires FAST1-Smad2 for the activation. DEX also eliminated TGF beta-induced c-fos mRNA expression and ERK activation in Northern analysis and in vitro kinase assay, respectively. Further, DNA synthesis and transactivation of type II collagen by TGF beta were inhibited by PD98059, an inhibitor of MEK. Our results indicate that DEX suppressed TGF beta-induced chondrocyte proliferation and type II collagen expression, probably through selective inhibition of ERK integrated AP-1 activation.

Animals↗