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Biomedical subjects

N Tsuchida

Publications and source records attributed to N Tsuchida.

At least 37 records · Page 2Linked to original sources

Infrequent genetic alterations of p53, p16 genes and polymorphism in fhit gene in Indian myelodysplastic syndrome.

Alterations in the tumor suppressor genes p53, p16, and fhit were studied in myelodysplastic syndrome (MDS) samples of Indian patients. PCR-SSCP analysis showed evidence for the presence of polymorphism in fhit gene in 7 of 15 samples. We failed to get any evidence for mutation in the p53, p16, and fhit genes. These results indicate that mutational inactivation of these genes may not play a major role in the development of myelodysplastic syndrome.

Acid Anhydride Hydrolases↗

Association of germline p53 mutation with MLL segmental jumping translocation in treatment-related leukemia.

Segmental jumping translocations are chromosomal abnormalities in treatment-related leukemias characterized by multiple copies of the ABL and/or MLL oncogenes dispersed throughout the genome and extrachromosomally. Because gene amplification potential accompanies loss of wild-type p53, we examined the p53 gene in a case of treatment-related acute myeloid leukemia (t-AML) with MLL segmental jumping translocation. The child was diagnosed with ganglioneuroma and embryonal rhabdomyosarcoma (ERMS) at 2 years of age. Therapy for ERMS included alkylating agents, DNA topoisomerase I and DNA topoisomerase II inhibitors, and local radiation. t-AML was diagnosed at 4 years of age. The complex karyotype of the t-AML showed structural and numerical abnormalities. Fluorescence in situ hybridization analysis showed multiple copies of the MLL gene, consistent with segmental jumping translocation. A genomic region including CD3, MLL, and a segment of band 11q24 was unrearranged and amplified by Southern blot analysis. There was no family history of a cancer predisposing syndrome, but single-strand conformation polymorphism (SSCP) analysis detected identical band shifts in the leukemia, ganglioneuroma, ERMS, and normal tissues, consistent with a germline p53 mutation, and there was loss of heterozygosity in the ERMS and the t-AML. Sequencing showed a CGA-->TGA nonsense mutation at codon 306 in exon 8. The results of this analysis indicate that loss of wild-type p53 may be associated with genomic instability after DNA-damaging chemotherapy and radiation, manifest as a complex karyotype and gene amplification in some cases of t-AML.

Acute Disease↗

The status of human papillomavirus and tumor suppressor genes p53 and p16 in carcinomas of uterine cervix from India.

OBJECTIVES: Infection with the high-risk strain of human papillomaviruses (HPVs) and the inactivation of the tumor suppressor gene p53 through mutation are important factors in cervical carcinogenesis. To know whether such events would occur in cervical carcinomas of Indians, 43 tumors (consisting of 36 of stage III B and 6 of stage II B) were screened for p53 and p16 gene mutations. METHODS: PCR followed by single-strand conformation polymorphism (SSCP) analysis were used to detect mutations in p53 and p16 genes and PCR for the presence of human papillomavirus genome. HPV status was ascertained by PCR amplification of parts of E6 and E7 genes using primers pU-1M and pU-2R and typing was carried out by restriction analysis. RESULTS: Of the 43 samples analyzed, 4 samples (9%) showed mobility shifts for p53 mutations; PCR products of the p16 gene did not show band shifts in SSCP analysis. HPV DNA was detected in 70% of the 43 samples analyzed: HPV 16 in 23 cases (53%), HPV 18 in 4 cases (13.3%), and HPV 33 in 1 case (3.3%). Two amplified HPV DNAs that were difficult to type with various restriction enzymes were cloned and the amplified regions were sequenced. One of these was 93% close to HPV 35 and the other was 80% close to HPV 58. Three samples had both p53 mutations and HPV genome. CONCLUSIONS: Our results indicate that HPV 16 infection was more common than HPV 18, the p53 mutations and HPV infection were not mutually exclusive events in the genesis of carcinoma of uterine cervix among Indian women, and p16 gene may not play a role in Indian cervical carcinomas.

Adult↗

Purification of a novel muscle cell growth factor S-myotrophin from porcine skeletal muscle.

A comparison of muscle weight between denerved and control rabbit hind legs revealed that a water-soluble 12 kDa substance was reduced in atrophied muscles after denervation. We hypothesised that a water-soluble growth factor exists which mediates a signal from motor nerves to muscles. To isolate this factor we modified the purification procedures of Sen et al. [S. Sen, G. Kundu, N. Mekhail, J. Castel, K. Misono, B. Healy, Myotrophin: purification of a novel peptide from spontaneously hypertensive rat heart that influences myocardial growth, J. Biol. Chem. 265 (1990) 16635-16643.], who originally purified a water-soluble growth factor from cardiac muscles. Four additional purification steps were added to the method. Using this technique, a novel muscle cell growth factor, named s-myotrophin, was purified from porcine skeletal muscle (M. longissimus thoracis). Purified s-myotrophin appeared as a single band (12 kDa) on SDS-PAGE and had a strong growth promoting activity (increase of protein synthesis) of cultured primary skeletal muscle cells. Almost no loss of growth promoting activity was observed after trypsin and chymotrypsin digestion. No fragmentation of s-myotrophin was observed after exposure to lysylendopeptidase, thermolysin, trypsin and chymotrypsin. Crude preparation of this molecule could be detected by periodic acid/Schiff (PAS) staining. Deglycosylation of s-myotrophin produced a smaller molecule having an approximately 7 kDa mass. These data indicate a novel 12 kDa protein has been isolated which has growth promoting properties on skeletal muscle cells.

Animals↗

Detection of a rare point mutation at codon 59 and relatively high incidence of H-ras mutation in Indian oral cancer.

Analysis of H-, K- and N-ras genes for point mutations by PCR-SSCP and direct sequencing of 46 oral SCCs that were previously analyzed for p53 mutations revealed that 9 (20%) had point mutations in either the H-ras or the N-ras. A novel mutation at codon 59 (GCC-ACC) of H-ras thus far reported only in v-H-ras of Harvey murine sarcoma virus was observed in a tumor of the cheek. Majority (8/9) of these mutations were observed in H-ras, one in N-ras and none in K-ras. This study indicated that the ras gene mutation was relatively high in oral cancers associated with tobacco chewing and the ras and p53 mutational events seem to be independent and mutually exclusive.

Carcinoma, Squamous Cell↗

Cytoplasmic retention of the p53 tumor suppressor gene product is observed in the hepatitis B virus X gene-transfected cells.

It has been suggested that hepatitis B virus (HBV) X gene activates X gene expression by disrupting the function of p53 tumor suppressor gene (Takada et al., 1996). To find out their connection, effect of X protein expression on the nuclear localization of p53 protein in human hepatoma cells was examined by the immunofluorescent double-staining technique. The location of transiently-expressed p53 protein was examined in X gene-transfected cells, where X protein was detected in the cytoplasm. The nuclear location of transiently-expressed p53 protein was changed to the cytoplasm by X protein co-expression. Endogenous p53 protein was also observed in the cytoplasm by X protein expression. The transcriptional activation domain of X protein and the carboxy-terminal region of p53 protein were found mutually responsible for the cytoplasmic retention of p53 protein in X gene-transfected cells. Therefore, the cytoplasmic retention of p53 protein may be closely correlated to the function of X protein expressed in transfected cells.

Biological Transport↗

Aberrant expression and function of p53 in T-cells immortalized by HTLV-I Tax1.

The expression and function of p53 tumor suppressor protein was investigated in T-cells immortalized by the Tax1 protein of HTLV-I. Conformationally wild-type p53 was expressed at elevated levels in Tax1-immortalized T-cells by post-transcriptional mechanisms when compared with normal T-cells. Luciferase assays with a reporter plasmid containing p53-binding sites revealed an impairment in the transactivating function of p53 in Tax1-immortalized T-cells. Our results suggest an important role for Tax1 in the aberrant expression and function of p53 observed in many HTLV-I transformed cells.

CD4-Positive T-Lymphocytes↗

Comparison of DNA copy numbers in original oral squamous cell carcinomas and corresponding cell lines by comparative genomic hybridization.

We analyzed regional DNA copy numbers in 4 oral squamous cell carcinomas (SCCs) by using comparative genomic hybridization, and compared them with those in cell lines derived from the SCCs. In the original tumors, DNA copy number increases were observed on chromosomes 5p (4/4 cases), 8q (4/4), 20p (3/4), 3q (2/4), 5q (2/4), 7p (2/4), 7q (2/4), 11p (2/4), 11q (2/4) and 13q (2/ 4). Although most of these changes have been described previously for SCC tumors in the head and neck, the incidence of increases in 8q and 20p was much higher in the present study; this may be important in relation to cell line establishment, since 8q contains e-myc, which is involved in immortalization. No common chromosomal region with DNA copy number decreases was observed, except for 18q (2/4). When the original tumors and the cell lines were compared, their profiles were essentially similar with one exception. Further, there was no region that commonly changed in the cell lines, but not in the original tumors, suggesting that the DNA copy number changes observed in the cell lines mostly represent those of the original tumors.

Adult↗

Changes in DNA copy number in primary gastric carcinomas by comparative genomic hybridization.

We examined 33 primary gastric carcinomas using comparative genomic hybridization to detect changes in the DNA copy number and the chromosomal location of these changes. Ninety-four percent (31 of 33) showed 1 or more DNA copy number changes, such as increases at 2p23-p25 (observed in 21% of the total cases), 3q26.3-q27 (24%), 7p15 (24%), 9p22-pter (18%), and 13q22-q34 (21%) and decreases at 1p34.2-p36.2 (18%) and Y (52%). Histological examination indicated that increases at 3q26.1-q26.3 and 7p15 and decreases at 1p36.1-p36. 2 and Y were commonly observed in both differentiated and undifferentiated types. Increases at 3q27, 6q23-q25, and 7cen-p14 and decreases at 1p34.2-p35 and 17p12 were predominantly observed in the differentiated type, and increases at 2p23-pter, 9p22-pter, and 13q31-qter and a decrease at 6p21.3 were predominantly observed in the undifferentiated type. In addition, clinical staging of tumors showed that increases at 2p23-p25, 7p14-p21, 7q31-q32, and 9p22-pter and a decrease at Y were observed in early-stage tumors, whereas increases at 9q32-q33 and 15q26 were observed only in late-stage tumors. Many of the abnormalities detected in this study were not previously reported in gastric carcinomas. Our comparative genomic hybridization results indicate the presence of genetic alterations that may play some important role in the development and progression of gastric carcinomas.

Adult↗

p53 gene mutations in oral carcinomas from India.

In this study, we analyzed 53 oral squamous-cell carcinomas among Indians for the presence of alterations in the tumor-suppressor gene p53 by PCR-SSCP and sequencing methods. Our results showed that 21% (11/53) of oral carcinomas analyzed carried mutations within the exons 5-8 of the p53 gene. We have identified 11 single-base pair substitutions consisting of 10 mis-sense mutations and one at the splice acceptor site, and one deletion mutation involving 4 consecutive bases. The majority of the base substitutions were transitions (5 TA to CG and 5 GC to AT), while only one transversion (TA to GC) was observed. Probable hot-spots for the mutation induction were identified at codons 149 and 274, which have not been observed before in head-and-neck cancers. The mutational spectrum might have originated from base alkylations at guanine and thymine residues, caused by some alkylating agents. The present results are thus consistent with the involvement of tobacco-related nitrosoamines in the etiology of oral squamous-cell carcinoma.

Base Sequence↗

Hepatitis B virus X gene expression is activated by X protein but repressed by p53 tumor suppressor gene product in the transient expression system.

Hepatitis B virus (HBV) X gene is known to exhibit a transcriptional activation function and is considered to play a major role in hepatocarcinogenesis. We determined a 20-bp promoter element for the HBV X gene transcription and found a binding protein to this promoter element, designated as an X-PBP. We then examined the effects of HBV X protein and p53 tumor suppressor gene product on X gene transcription from the 20-bp promoter element using the transient expression technique. Activity of the X gene promoter was stimulated by X protein expression, but, in contrast, was repressed by transfected normal p53 gene. On the other hand, mutant p53 gene product exhibited no repression. Moreover, the p53 repression of X gene transcription was canceled by X protein coexpression. Thus, the effects of X protein and normal p53 product appear to be mutually antagonistic in the regulation of X gene expression. However, mutated promoter elements which failed to bind to X-PBP still responded to X protein or p53, indicating that the process of X transactivation or p53 repression may be independent of X-PBP binding to the promoter element. Our data suggest that X protein could disrupt function of normal p53 protein in X gene-transfected cells.

Base Sequence↗

Cloning and sequence analysis of the aminopeptidase My gene from Mycoplasma salivarium.

The complete nucleotide sequence of a major component of aminopeptidase My purified from Mycoplasma salivarium was determined. The protein gene encoded a protein consisting of 520 amino acids with a molecular mass of 58079 Da. The protein contained two tryptophan residues, one of which was encoded by UGA. A computer-aided homology search suggested that aminopeptidase My had properties similar to those of leucine aminopeptidase (EC 3.4.11.1).

Amino Acid Sequence↗

A human temperature-sensitive p53 mutant p53Val-138: modulation of the cell cycle, viability and expression of p53-responsive genes.

A human p53 mutant, p53Val-138 (amino acid 138, Alanine-->Valine), generated by in vitro mutagenesis was introduced into Saos-2 human osteosarcoma and Jurkat acute T-lymphoblastic leukemia cell lines, both lacking p53 protein expression. p53Val-138 caused growth arrest in Saos-2 cell line and apoptosis in Jurkat cell line at 32.5 degrees C while it allowed both cell lines to grow continuously at 37.5 degrees C. p53Val-138 activated expression of p53-responsive genes including MDM2, GADD45 and WAF1/CIP1/SD11 in Saos-2 cell line upon the temperature shift-down from 37.5 degrees C to 32.5 degrees C. Thus, p53Val-138 acted as a temperature-sensitive p53 mutant. Taking advantage of these human cell systems, we demonstrated that p53-mediated cell cycle arrest occurred in G1 and G2/M phases of Saos-2 cell line but not in Jurkat cell line. The induced level of WAF1/CIP1/SDI1 mRNA by p53 was extremely lower in Jurkat cell line than that of Saos-2 cell line. However, MDM2 mRNA accumulated to the similar levels in these two cell lines. These results suggest that a factor(s) other than p53 may be involved in differential expression of WAF1/CIP1/SDI1 and MDM2 mRNA.

Apoptosis↗

A temperature sensitive mutant of the human p53, Val138, arrests rat cell growth without induced expression of cip1/waf1/sdi1 after temperature shift-down.

To investigate functions of wild type p53 in human cells, we introduced a (Ala-->Val) mutation at the 138th codon of the human p53 (Val138), which corresponds to the Val135 mutation of the temperature sensitive mouse p53. The human Val138 mutant showed temperature-sensitive transformation of rat embryo fibroblasts (REFs) in collaboration assay with activated ras, and arrested cell proliferation of transformed clones in G1 at 32.5 degrees C. Transient CAT assay for transcriptional activation in human Saos2 cells revealed activity equivalent to that of wild type at 32.5 degrees C but undetectable at 37.5 degrees C. These results suggest that the human Val138 mutant also exhibited the wild type phenotype at the permissive temperature as is for the mouse Val135 mutant, although we observed differences between the two mutants such as in transactivational activities in CV-1 and HeLa cells. Further, the role of cip1/waf1/sdi1 in the cell growth arrest of the Val138/ras-transformed REFs and Val138-introduced Saos2 cells was studied by northern hybridization analysis. Although rapid induction of cip1/waf1/sdi1 mRNA was observed in the Saos2 cells, no detectable induction of mRNAs for cip1/waf1/sdi1 and gadd45 was observed in the transformed REFs upon temperature shift-down, while mdm2 mRNA was enhanced, suggesting that the p53 gene could arrest cell growth by a mechanism other than that with induced expression of the gene for p21 cdk-cycline inhibitor.

Animals↗

Interaction between hsp70 and hsp40, eukaryotic homologues of DnaK and DnaJ, in human cells expressing mutant-type p53.

We have recently identified a novel 40-kDa heatshock protein hsp40 as a mammalian homologue of bacterial DnaJ protein. Here we demonstrate the physical interaction between hsp70 (DnaK homologue) and hsp40 in human cells as determined by immunoprecipitation methods. Co-immunoprecipitation of hsp70 with hsp40 was dependent on the presence of ATP or unfolded protein (reduced carboxymethylated alpha-lactalbumin). A mutant type of tumor suppressor gene product, mtp53, was co-immunoprecipitated not only with hsp70 but also with hsp40. These results suggest the existence of a hsp70(DnaK)/hsp40(DnaJ) chaperone system in mammalian cells.

Escherichia coli Proteins↗

Apoptosis is induced in BHK cells by the tsBN462/13 mutation in the CCG1/TAFII250 subunit of the TFIID basal transcription factor.

A temperature-sensitive (ts) mutant of the BHK21 cell line derived from golden hamsters, tsBN462 has a mutation in the gene encoding the largest subunit of the TFIID complex, TAFII250/p230/CCG1, and arrests in the G1 phase at the nonpermissive temperature, 39.5 degrees C. We found that tsBN462 cells underwent apoptosis following growth arrest at 39.5 degrees C, suggesting a role for CCG1 as a repressor of apoptosis. By electron microscopic observation, tsBN462 cells at 39.5 degrees C showed characteristic features of apoptosis. Apoptosis was not suppressed by expression of Bc1-2 or the adenovirus E1B 19 kDa protein. Cell death was suppressed completely by expression of wild-type CCG1 and partially by wild-type p53, a growth suppressor protein. Cell cycle arrest induced by p53 may help survival of tsBN462 cells at 39.5 degrees C. Apoptosis was accelerated in SV40 large T antigen-transformed tsBN462 cells at 39.5 degrees C where SV40 large T antigen formed a complex with p53, implying that the apoptosis of tsBN462 cells at 39.5 degrees C occurred in a p53-independent manner. Our results suggest that CCG1/TAFII250 is required for the expression of factors regulating apoptosis.

Adenovirus E1B Proteins↗