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Biomedical subjects

K Fujinaga

Publications and source records attributed to K Fujinaga.

At least 145 records · Page 8Linked to original sources

Methotrexate-resistant mechanisms in human choriocarcinoma cells.

Choriocarcinoma cells grown in the presence of methotrexate (MTX) developed resistance in two ways. HCCM-derived sublines (relatively high MTX resistance) produced enhanced levels of dihydrofolate reductase (DHFR) and had impaired transport of MTX. Altered transport was the primary determinant of response in CC1-derived sublines (low MTX resistance). Since the selection procedures used were identical, it was assumed that altered MTX transport was insufficient to account entirely for the various degrees of resistance. An increased level of DHFR activity was necessary for the development of high MTX resistance. The overproduction of DHFR was the consequence of amplification of the DHFR gene sequence. The incidence of double minutes (DMs) in metaphase paralleled the degree of resistance. However, DMs were also present in cells not showing DHFR gene amplification. Mechanisms other than DHFR gene multiplication were responsible for the de novo synthesis of DMs.

Blotting, Southern↗

The high sensitivity of cells transformed by E1A gene of adenovirus type 12 to diacylglycerol-mediated cell killing.

Viability of rat 3Y1 fibroblasts transformed by adenovirus type 12 (Ad12) was markedly impaired by the administration of dilinoleoylglycerol (DLG) to the culture medium. To identify the gene(s) of Ad12 responsible for the high sensitivity to DLG, we established several transformed sublines of 3Y1 induced by the viral E1A gene or by the mutants of Ad12 which have mutations in the E1A region. All of the transformed sublines of 3Y1 expressing either the 12S or the 13S message from the E1A region were highly sensitive to the cytotoxicity of DLG. We propose that the high sensitivity of Ad12-transformed cells to the DLG mediated cytotoxicity is attributable to the common function of E1A-12S and E1A-13S mRNA products.

Adenoviridae↗

A tandem repeat sequence found in a heterogeneous fragment of UL of herpes simplex virus type 1.

We found a tandem repeat sequence in the region (designated BS7) in which restriction fragments BamHI D and SalI B overlap each other, near the centre of the unique long sequence (UL) of the herpes simplex virus type 1 (HSV-1) strain F genome. The SmaI physical map of BS7 was constructed, and the position of a heterogeneous SmaI subfragment from HSV-1 isolates and plaque-purified clones from a single strain was defined on the map. The maximum size difference in the SmaI subfragment was estimated to be 600 bp between these isolates and 100 bp between the clones. The 0.23 kb SmaI subfragment recloned from BS7 was sequenced, and was shown to contain a tandem repeat sequence consisting of 15 units of 12 bp, 5' TTGGGGCTGGGG 3'. These results suggest that the fragment length heterogeneity in the UL of HSV-1 isolates and clones is attributable to copy number variation of the tandem repeat sequence.

Base Sequence↗

Conditional immortalization and/or transformation of rat cells carrying v-abl or EJras oncogene in the presence or absence of glucocorticoid hormone.

Early-passaged rat chondroblasts (RX cells) and embryonal fibroblasts (RE cells) are hardly transformed by transfection of activated human H-ras (EJras) or by Abelson murine leukemia virus v-abl oncogene. However, these cells were transformed by v-abl or EJras gene when dexamethasone (DX) was added in the culture medium as well as when co-transfected with retrovirus LTR-linked mouse c-myc gene. RX cell lines carrying v-abl (RXabl), RE cell lines carrying v-abl (REabl) and RX cell lines carrying EJras (RXEJ) were established from transformed colonies in the DX-added soft agar. In the absence and in the presence of DX, RXabl cells showed mortal and immortalized, REabl cells showed mortal and transformed, and RXEJ cells showed immortalized and transformed phenotypes, respectively. Especially, immortalization and transformation of REabl1 and REabl3 lines were switched on and off by addition and depletion of DX. v-abl or EJras mRNA levels in tested REabl, RXabl and RXEJ lines cultured without DX was not decreased compared to those cultured with the hormone. The above suggests that, like myc gene, glucocorticoid collaborates with v-abl or activated ras oncogene to transform unestablished rat cells and that the transformation phenotypes were determined not only by the introduced oncogene but by the cellular condition including their tissue origin. Transformation of senescent REabl cells in the absence of DX was tested by transfecting different oncogenes. Among nuclear oncogenes tested, only adenovirus 12 E1A gene could induce transformation of G0-arrested REabl cells in a cooperative fashion with the integrated v-abl gene.

Adenovirus Early Proteins↗

Identification of the transformation-associated cell surface antigen expressed on the rat fetus-derived fibroblast.

A WKA rat fetus-derived fibroblast cell line WFB showed strict nontransformant phenotypes in vitro such as anchorage dependency of cell growth in soft agar, contact inhibition, and serum dependency on the monolayer cell culture. Transfection of 6.6-kilobase EJras oncogene into WFB resulted in the acquisition of tumorigenicity in vitro and in vivo. The cell surface antigen that is moderately or highly expressed on these WFB transformants, designated as W14 and W31, was analyzed using monoclonal antibody 109 that was produced after the immunization of BALB/c mice with W31. Moab 109 recognized a glycoprotein with a molecular weight of 36,000 composed of a single polypeptide chain with 5.4 isoelectric point value. This antigen was highly expressed on WFB EJras and polyoma middle T-DNA transformants, but was undetectable or at the best only faintly recognized on WFB parental cells, transfectants of WFB with c-myc, and normal thymus, liver and kidney of WKA adult rats. It was also clearly expressed on the EJras transformants of Fisher rat fetus-derived 3Y1 fibroblast, but very faintly on parental 3Y1. Furthermore, this antigen was detected on some rat T-lymphoma and gliosarcoma lines. However, it was undetectable on EJras transformants on NRK-49F rat kidney cells and NIH3T3 and BALB3T3 mouse cells. In addition, this antigen appeared on the cell surface of concanavalin A-activated WKA rat lymphocytes and WKA rat on the 16th day of embryo but not on the 8th. These results suggested that the cell surface antigen detected by Moab 109 was clearly unrelated to the ras oncogene product p21 that was highly expressed on EJras-transformants of WFB or 3Y1 cells. Furthermore, it was shown that W14 and W31 cells but not parental WFB cells were susceptible to rat splenic NK cells that were induced by poly(I-C) treatment. Pretreatment of these W14 or W31 cells with Moab 109 could block the NK cell activity against W14 and W31. These data suggest that this antigen may act as one of the NK target structures, and plays an important role as a tumor antigen on the host tumor surveillance, since the antigen was expressed (a) on the cell surface after the cell transformation or enhanced DNA synthesis of some particular cells, and (b) in the W31 tumor developing progressively in the syngeneic rats.

Animals↗

Characterization of adenovirus type 40 E1 region.

The left-most 3.9 kb of adenovirus type 40 (Ad40) DNA has been sequenced using cloned viral DNA fragments. The Ad40 E1 region is deduced to code for at least four polypeptides, 221 and 249 amino acids as E1A products in addition to 166 and 475 amino acids as E1B products. E1B polypeptides share about 50% homology with well-defined adenovirus types, 2/5, 7, and 12, throughout the E1B sequences. E1A homology of Ad40 to these types is relatively lower than that of E1B, while highly conserved regions of E1A are retained to a certain level in Ad40 as well. Activity for morphological transformation of Ad40 E1A on 3Y1 cells is considerably lower when compared to that of Ad5 and Ad12 E1A genes. Transient chloramphenicol acetyltransferase (CAT) expression assay shows that Ad40 E1A has a trans-acting function, though lower than that of other E1A genes, on adenovirus early promoter. The Ad40 E1A promoter also holds only a little cis-acting activity in 3Y1 cells. Lower activities of both Ad40 E1A promoter and certain E1A functions may explain in part the difficulty in propagation of Ad40.

Adenoviridae↗

Decrease of oligo-2',5'-adenylate synthetase activity in BALB3T3 cell persistently infected with Moloney murine leukemia virus.

The induction of oligo-2',5'-adenylate synthetase (2-5AS) activity by interferon (IFN) was decreased in BALB3T3 cells persistently infected with Moloney murine leukemia virus (Mo-MLV) as compared with uninfected cells. Furthermore, the correlation between increased susceptibility to vesicular stomatitis virus (VSV) infection and reduced 2-5AS activity was recognized in the Mo-MLV persistently infected cells. The decrease of enzyme activity was confirmed by a solid phase reaction and an analysis of reaction products by Fast Polynucleotide Liquid Chromatography (FPLC) in addition to a liquid phase reaction. In a solid-phase reaction, the enzyme protein binds to polyinosinate-cytidylate (Poly I:C) agarose beads and other cellular proteins can be washed out from the reaction mixtures. Therefore, these results indicate that the decrease of IFN-induced enzyme activity is due to the suppression of transcription and/or translation of 2-5AS mRNA. A decreased amount of 2-5AS mRNA in persistently infected cells was observed by Northern blot and dot-blot hybridization. On the other hand, cell lysate of Mo-MLV infected cells inhibited the 2-5AS activity in liquid phase reaction. The inhibition may also be partly due to the degradation of oligo-2',5'-adenylate (2-5A) formed by 2-5AS.

2',5'-Oligoadenylate Synthetase↗

Oligo-2',5'-adenylate synthetase activity in K562 cell lines persistently infected with measles or mumps virus.

Fluctuation of oligo-2',5'-adenylate synthetase (2-5AS) activity was examined in K562 cells infected with vaccine strains of measles virus (strains AIK-C and CAM-70) and mumps virus (strains Torii and Miyahara). Persistent infection was easily established in the mumps virus-infected cells without significant cytolysis or cell killing. In contrast, most of the cells infected with measles virus were killed by extensive cytolysis within 3 to 4 days. The small number of cells that did survive became persistently infected. That these persistently infected cells carried a virus antigen was confirmed by fluorescein isothiocyanate-labelled anti-measles virus rabbit antiserum and anti-mumps virus rabbit antiserum. The cells produced infectious progeny virus as well as interferon (IFN). Little induction of 2-5AS activity by IFN was demonstrated during the early stages of infection by these viruses. Similar results were observed in some of the persistently infected cells but not, however, K-CMP cells (K562 cells persistently infected with CAM-70) or K-MMP cells (K562 cells persistently infected with Miyahara). Failure to induce 2-5AS activity was unchanged in cells cultured for more than 6 months. The decrease of 2-5AS activity observed in K-MTP cells (K562 cells persistently infected with Torii) was the result of suppression of transcription of 2-5AS mRNA. On the other hand, a normal level of mRNA was found in K-AKP cells (K562 cells persistently infected with AIK-C). Therefore, it is suggested that the decrease of 2-5AS activity in K-AKP cells may be due to a failure to translate 2-5AS mRNA.

2',5'-Oligoadenylate Synthetase↗

Nucleotide sequence of the adenovirus type 40 inverted terminal repeat: close relation to that of adenovirus type 5.

Human adenovirus type 40 (Ad40) is a pathogen that causes acute infantile gastroenteritis. Ad40 has the distinct characteristic of being difficult to propagate in conventional cultured human cells. The nucleotide sequence of the inverted terminal repeat (ITR) of Ad40, which includes the origin of adenoviral DNA replication, was determined using recombinant plasmid DNA. By using our newly developed program to express the ITR homologies simply, we found that the ITR of Ad40, which is 163 nucleotides long, was related most closely to that of adenovirus type 5, which replicates efficiently.

Adenoviruses, Human↗

Comparative studies on aetiology and epidemiology of viral conjunctivitis in three countries of East Asia--Japan, Taiwan and South Korea.

A total number of 1105 cases with viral conjunctivitis, mainly epidemic kerato-conjunctivitis (EKC) consisting of 354 cases from Sapporo, Japan, of 628 from Kaohsiung, Taiwan and of 123 from Busan, Korea, encountered during the periods, 1980-81 and/or 1983, were studied aetiologically and epidemiologically. Patients were aged from 27 days to 88 years with a peak in the 20-29 year age group. Aetiological diagnoses were established in 610 cases (55%), consisting of 536 cases (49%) caused by adenoviruses and of 74 (7%) by EV 70. The most frequently detected agent was Ad 8 (57%), followed by EV 70 (12%), Ad 3 (9%) and Ad 19 (7%). The aetiological profiles of viral conjunctivitis were generally similar in three cities of East Asia. EKC (70%) was mainly caused by Ad 8, Ad 19 and Ad 37, but AHC (13%) by EV 70 and PCF (5%) by Ad 3 and Ad 11. Ad 19 and Ad 37 isolates in three cities were compared with the cleavage patterns with restriction endonucleases, BamHl, Smal, Sall and Hindlll. All of the Ad 19 isolates tested were identical to Ad 19a reported by Wadell et al, and all but three isolates of Ad 37 were identical to the Ad 37 prototype prevalent in Europe and the US. The three isolates of Ad 37, different from the prototype in cleavage pattern with Hindlll, designated as Ad 37A, were detected in Sapporo and Kaohsiung in 1980. From the cleavage patterns with four restriction endonucleases, Hindlll, BamHl, Sa1l and Sstl, the Ad 8 isolates in 1983 were divided into three subtypes, which were associated with the cities isolated.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenoviridae↗

Genomic comparison of herpes simplex virus type 1 isolates from Japan, Sweden and Kenya.

One-hundred and seventy-two epidemiologically unrelated herpes simplex virus type 1 (HSV-1) strains isolated in Japan (104 strains) and Sweden (68 strains) were compared by analysis of their genome structures using four restriction endonucleases, BamHI, KpnI, SalI and HindIII. In addition, 32 Kenyan HSV-1 isolates previously compared to Japanese isolates were included for further comparison with the Swedish isolates. Remarkable and statistically significant differences were found between the HSV-1 isolates from the three countries. One-hundred and thirty cleavage sites were examined, and it was shown that isolates from two of the three countries were statistically distinguishable at 27 of these loci. Pairwise comparison between isolates from Japan and Sweden, Kenya and Sweden, and Japan and Kenya revealed variation in 18, 16 and 23 sites, respectively. By considering gains and losses of 19 sites, the total of 204 strains could be classified into 92 distinct cleavage patterns. Isolates from the three countries could be distinguished from each other by the pattern, except for one Swedish and two Kenyan isolates which shared a pattern. Twenty-one fragments that were present or absent only in individual isolates from one or other of the three countries could be detected. These results show that HSV-1 strains from geographically separate countries or anthropologically different races have distinct distributions of endonuclease recognition sites.

DNA Restriction Enzymes↗

Genome variations in herpes simplex virus type 2 strains isolated in Japan and Sweden.

One-hundred and twenty-three epidemiologically unrelated strains of herpes simplex virus type 2 (HSV-2) isolated in Japan and Sweden (68 Japanese and 55 Swedish isolates) were compared by analysis of their genomes using five restriction endonucleases: BamHI, KpnI, EcoRI, HindIII and Bg/II. Seven of the 93 restriction sites examined showed statistically significant variation between isolates from the two countries. However, HSV-2 isolates were less variable than the HSV-1 isolates previously analysed from the same countries. Using 12 restriction sites as markers, the HSV-2 isolates were classified into 41 cleavage patterns; 17 were specific for Japanese isolates and 15 were specific for Swedish isolates. Correlation coefficients between some sets of 12 markers were significant, but significant correlations between Japanese and Swedish isolates were distinct for each country. Both Japanese and Swedish isolates were assigned to three major patterns with no significant difference in incidence. In contrast, in two other major patterns, differences in incidence between the isolates were statistically significant. These results suggest that HSV-2 populations in geographically separated countries have distinct cleavage site distributions.

DNA Restriction Enzymes↗

Analysis of retinoblastoma for human adenovirus and human JC virus genome integration.

Human adenovirus groups A and B have an oncogenic potential in newborn rodents. Especially, adenovirus type 12 is known to induce retinoblastoma-like tumor in baboons and transform human embryo retinoblast cells in vitro. Human JC virus is also known to produce a variety of tumors in newborn rodents, including retinoblastoma-like tumor. In this experiment, cell DNAs of human retinoblastomas were assayed for each of the transforming gene sequences of adenovirus groups A, B, C, D and E and for JC virus gene sequences, by using Southern blot hybridization. None of these viral gene sequences were detected at the level of 0.1-0.5 copy per diploid cell DNA in all of 11 retinoblastomas, including 6 retinoblastomas previously examined for adenovirus 12-transforming gene sequences. This led to a conclusion that most, if not all, adenoviruses and JC virus play no essential role in the etiology of human retinoblastoma, although there were experimental models of retinoblastoma induced by these viruses.

Adenoviruses, Human↗

Antigenic and restriction endonuclease analyses of new adenovirus types 19 and 37 causing acute conjunctivitis.

DNA restriction endonuclease cleavage analysis and serum neutralization test were performed in strains of adenovirus types 19 (Ad-19) and 37 (Ad-37) isolated from patients with acute conjunctivitis in Sapporo (Japan), Kaohsiung (Taiwan) and Pusan (South Korea) during the period of 1977 to 1984. Ad-19 and Ad-37 could be roughly differentiated, but a fair degree of cross reactivity was noted by serological test. By DNA restriction endonuclease analysis, Ad-19 isolates, Ad-19 prototype strain and Ad-37 strains were clearly differentiated. It was suggested by DNA cleavage patterns that both Ad-19 and Ad-37 isolates in East Asia are the same as those currently found in Europe and the USA. A new subtype of Ad-37 was found by DNA cleavage analysis among the isolates obtained in Sapporo and Kaohsiung in 1980.

Acute Disease↗

Structure of viral DNA in a rat cell line, GY1, transformed by Ad12 HindIII fragment-G.

The cell line GY1, established by transformation of a rat cell line 3Y1 with the Ad12 HindIII fragment-G (leftmost 6.8%, nucleotide 1 to 2322), contains more than 100 viral copies per haploid genome. The viral DNAs in this cell line were cloned into a phage vector, lambda gtWES lambda B, and recloned into pBR322 with their flanking cellular DNAs. Independently isolated 39 clones were analyzed by restriction enzyme cleavage and Southern blot hybridization experiment and divided into 11 classes. Some of classes contained multiple identical clones, at maximum 16 clones. It may be interpreted that amplification of some of the recombined sequences had occurred after the multiple integrations of transfected DNAs within cells. Using five clones from different classes the sequences of recombination sites were determined. Viral DNAs deleted with varying degrees at both ends were flanked by quite different cellular sequences in different clones and no common sequences were revealed around viral-cellular junctions. Tandemly repeated viral DNAs were found in one of the clones to be integrated in a head to tail manner into cellular DNA. The linkage of these two viral DNAs had occurred at the site where parental viral DNAs shared 2 bp. Palindrome structures could be constructed around viral-cellular and viral-viral junction sites and around the regions of parental viral DNAs corresponding to the junction sites in all of the cases investigated.

Adenoviridae↗

Generation of packaging-defective DNA molecules of equine adenovirus.

Equine adenovirus (EAd) DNA prepared from infected bovine kidney (MDBK) cells contained additional sequences of about 100 to 700 bp at the left-hand end of the genome. These aberrant viral genomes were produced even after the first passage of the wild type EAd in MDBK cells and their relative amounts did not change significantly during serial passage. The left terminal fragments of two defective viral DNAs were cloned into the plasmid vector pBR322 and the nucleotide sequences of their terminal regions were analyzed. The data indicate that one viral DNA contained a duplication of the inverted terminal repetition (ITR) and the other contained 270 bp of additional sequences derived from the right-terminal region of EAd genome added to the left-terminal, ITR. While the former DNA was packaged into virions, the latter was not, presumable due to the alteration of the distance from the left terminus to the putative DNA packaging signal, reported to be located between 290 and 390 bp (Hammarskjold and Winberg, 1980). The possible mechanism for the generation of these defective DNAs is discussed.

Adenoviridae↗

Two outbreaks of herpes simplex virus type 1 nosocomial infection among newborns.

Two outbreaks of herpes simplex virus type 1 (HSV-1) infection occurred in three newborns at each of two hospitals, and two of the infants in each case died of disseminated HSV-1 infection. Restriction endonuclease profiles of HSV-1 DNAs isolated from the three in each instance were essentially identical, indicating that they were epidemiologically related. In the first instance, each of three infants born in the same hospital at intervals of approximately 2 years or 1 year was infected with HSV-1. In this case, it was suggested that periodically reactivated HSV-1 strains from hospital personnel had been transmitted to three newborns. In the second instance (infants G-36, G-37, and G-38), the radiant warmer that had been occupied by infant G-36, who was infected with HSV-1, was used for infant G-37. Infant G-38 was in another radiant warmer 2 m from the radiant warmer occupied by infant G-37. Therefore, it was suggested that the virus had possibly been transmitted via radiant warmer and by hospital personnel in the two instances.

Cross Infection↗