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K Fujinaga

Publications and source records attributed to K Fujinaga.

At least 73 records · Page 4Linked to original sources

A single ets-related transcription factor, E1AF, confers invasive phenotype on human cancer cells.

Invasion of cancer cells is the first step of metastasis. The invasive activity is thought to be dependent on the production of matrix metalloproteinases (MMPs). The transcription regulatory regions of MMP genes often contain binding sites for Ets and AP-1 transcription factors and they mediate oncogene- and growth factor-induced transcription of the genes. We recently isolated the cDNA encoding human E1AF, a new member of ets oncogene family. E1AF highly stimulated transcription from three different subclasses of MMP genes in transient expression assays. Here we show that transfection of the non-invasive human breast cancer cell line MCF-7 with the E1AF expression plasmid results in induction of invasive and motile activities, accompanied by an increase of 92 kD type IV collagenase (MMP-9) gene expression. Tumors derived from the E1AF transfectant were highly invasive and produced MMP-9. Expression of E1AF and MMP-9 genes was elevated in several invasive tumor cell lines. These results provide evidence for an important role of ets-related E1AF in tumor cell invasion.

Collagenases↗

Fusion of an ETS-family gene, EIAF, to EWS by t(17;22)(q12;q12) chromosome translocation in an undifferentiated sarcoma of infancy.

EIAF is a newly isolated ETS-family gene that is located on 17q21 and codes for the adenovirus EIA enhancer-binding protein. In our chromosome analysis of 18 of the Ewing family of tumors and undifferentiated sarcomas, we found t(17;22)(q12;q12) in an MIC2 antigen-positive undifferentiated sarcoma of infancy. On Southern blot analysis, EWS and EIAF cDNA probes hybridized to the same rearranged band, indicating that an EWS-EIAF fusion gene was formed in the tumor. Further Southern blot analysis using four EIAF cDNA probes of different sizes showed that the breakpoint lies in the region upstream to the ETS domain of the EIAF gene. EIAF may be the fourth ETS-family gene to be identified forming a fusion gene with EWS. We assume that the RNA binding domain of EWS may have been replaced by the DNA binding domain of EIAF in the EWS-EIAF fusion protein as in other fusion proteins previously characterized in Ewing sarcoma and other types of sarcomas.

Adenovirus E1A Proteins↗

High susceptibility of U937-derived subclones to human immunodeficiency virus type 1 infection correlates with accumulation of unintegrated circular viral DNA.

Our previous report showed that U937-derived subclones were differentiated into at least three types (high, middle, and low types), even in the subclones expressing similar levels of surface CD4, in terms of the kinetics of the appearance of viral antigens and virus production after infection with human immunodeficiency virus type 1 (HIV-1). Here we showed the evidence that high susceptibility to HIV-1 infection, which was confirmed by the profound expression of viral messages and antigens, was exclusively associated with a high number of the unintegrated extrachromosomal form of viral DNA, but not with the amounts of adsorbed virus RNA nor those of integrated DNA form. The difference in the amounts of extrachromosomal form of viral DNA was also observed in the culture with 3'-azido-3'-deoxythymidine (AZT), indicating that the susceptibility is essentially unrelated to multiple infection events. Thus, the susceptibility of U937-derived subclones to HIV-1 infection seems to be affected by the occurrence of specific events involved in the accumulation of unintegrated viral DNA after viral adsorption.

DNA, Circular↗

Serial passage of human immunodeficiency virus type 1 generates misalignment deletions in non-essential accessory genes.

Human immunodeficiency virus type 1 (HIV-1) derived from an infectious molecular clone pNL432 was extensively passaged in tissue culture by repeated rounds of acute infection. We previously showed the natural occurrence of a nonsense mutation in the vpr gene during continued passage of this virus. In this report, we show that two forms of large deletions (561 and 518 base pairs containing short direct repeats at the deletion junctions) occur after passage 50 in the region that spans the vif and vpr open reading frames. One model to explain the occurrence of these deletion regions is that such mutations result from misalignment of the growing point at a limited number of nucleotide positions. Infection of CD4+ T-cells with a recombinant HIV-1 construct containing the same vif to vpr deletion showed virtually no cytopathogenic phenotype. Thus, misalignment deletions at non-essential accessory genes of HIV-1 might be induced during replication, which result in the generation of virus with a low cytopathogenic potential.

Base Sequence↗

Investigation of IFN type-I receptor and IFN regulatory factor expression relating to induction of 2', 5'-oligoadenylate synthetase in cells persistently infected with the mumps virus.

Poor induction of interferon-induced 2', 5'-oligoadenylate synthetase (2-5AS) activity has been demonstrated in cells persistently infected with the mumps virus or human T-lymphotropic virus type-I (HTLV-I). The suppression of 2-5AS induction is the result of the repression of 2-5AS gene expression at the transcription level. In a general way, after the binding of interferon-alpha (IFN-alpha) to cell surface-specific receptors, expression of 2-5AS gene is thought to be regulated by some transacting factors, IFN-regulatory factors (IRF-1 and IRF-2) and the IFN-stimulated gene factor (ISGF-3, a complex consisting of STAT-1 alpha, STAT-2 and p48). To clarify the cause of the suppression mechanism(s), fluctuation in the number of IFN receptors and the levels of mRNAs in both IRF-1 and IRF-2 were examined in cells persistently infected with the mumps virus (FLMT and KBMT). There were few differences in the number of IFN receptors and the level of IRF-2 mRNA between persistently infected cells and uninfected control cells. After the treatment of cells with IFN, a slight reduction of IRF-1 mRNA was found in persistently infected cells as compared with that of the uninfected control cells.

2',5'-Oligoadenylate Synthetase↗

[PCR machine].

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Polymerase Chain Reaction↗

Correlated expression of matrix metalloproteinases and ets family transcription factor E1A-F in invasive oral squamous-cell-carcinoma-derived cell lines.

Matrix metalloproteinases (MMPs) have been implicated in invasion and metastasis of tumor cells. Transcription regulatory regions of MMP genes often contain binding sites for ets transcription factors. We recently isolated a cDNA encoding human E1A-F, a member of the ets oncogene family, and showed that E1A-F can upregulate MMP genes by CAT assay. We attempted to investigate the relationship between E1A-F mRNA expression and MMP protein expression in four different types of oral squamous-cell-carcinoma-derived cell lines (HSC 3, SAS, KB, and Ca 9.22). HSC 3 and SAS are highly invasive cell lines when they are injected in the tongue of nude mice. Raft culture of HSC 3 and SAS revealed the same characteristics as seen in tumors implanted in vivo. Both type I collagenase (MMP-1) and 92-kd type IV collagenase (MMP-9) were detected in cultured HSC 3 and SAS cells. E1A-F mRNA was demonstrated to be highly expressed in HSC 3 and SAS by Northern blotting, and in situ hybridization confirmed E1A-F mRNA expression at the invasion front of tumor cells seeded on collagen gel. On the other hand, KB and Ca 9.22 have little potential for invasion, and MMP-1 and MMP-9 protein and E1A-F mRNA could not be detected. These results suggest that the ets-related E1A-F participates in the regulation of invasion-associated MMP genes and is involved in presenting invasive activity in tumor cells of oral squamous cell carcinoma.

Blotting, Northern↗

[Molecular mechanisms of cancer metastasis--ets-related nuclear transcription factor play an important role in cancer metastasis].

Significant progress has been made in the field of cancer metastasis, and the molecular mechanism of cancer metastasis is being studied extensively. Recent studies revealed that some oncogenes and metastasis-associated genes play important roles in cancer metastasis. Some nuclear transcription factors have appeared to be involved in this metastasis. Ets-related E1AF confers the invasive phenotype on cancer cells. E1AF that acts as a transcription factor is believed to play an important role in cancer invasiveness/metastasis through transcriptions of metastasis-related genes.

Animals↗

Extracellular Nef protein regulates productive HIV-1 infection from latency.

In HIV-1-infected asymptomatic carriers, the vast majority of infected cells in PBMCs are believed to be latently or nonproductively infected. We have isolated a subclone (MOLT-20-2) from an infected T cell line that expressed HIV-1 Ags at a very low level. However, viral Ag expression was markedly up-regulated by stimulation with either TNF-alpha, A23187, or PMA, indicating that the subclone might provide a suitable model of HIV-1 latency. Our previous studies have shown that the carboxyl-terminal region of the extracellular form of HIV-1 Nef played an important role in the interaction of infected cells with uninfected T cells, and could induce the cytostatic state. This suggested that Nef might contribute to intracellular signal transduction through an interaction with latently infected cells. We show in this study that stimulation of MOLT-20-2 with soluble Nef leads to HIV-1 activation from latency in a dose-dependent manner. Moreover, using a total of 14 overlapping Nef-related synthetic peptides, stimulatory activity was mapped to a discrete peptide (amino acid residues 132-147) that had the potential to activate latent HIV-1. This novel Nef function was confirmed by activation of virus production from the PBMCs of asymptomatic carriers. In addition, Nef-dependent HIV-1 activation from latency was also observed in another independently derived, latently infected cell line, U1, though not in cell line ACH-2. These results extend the significance of the Nef activity in vivo to the regulation of productive HIV-1 infection from latency, and define the regions of the protein involved.

Amino Acid Sequence↗

Detection of human papillomavirus DNA sequences in oral squamous cell carcinomas and their relation to p53 and proliferating cell nuclear antigen expression.

BACKGROUND: The etiology of oral squamous cell carcinoma (SCC) is still obscure. Since human papillomavirus (HPV) DNAs are associated with carcinoma of the uterine cervix, carcinomas of the oral cavity were investigated to ascertain if these viruses are present in squamous carcinomas of this anatomic site. METHODS: Seventy-seven oral mucosal SCCs were examined for the presence of HPV DNAs by polymerase chain reaction and dot blot hybridization. Immunohistochemical detection of proliferating cell nuclear antigen (PCNA) and p53 was performed and single strand conformation polymorphism analysis for p53 was undertaken. In situ hybridization detection of HPV-16 DNA also was performed. RESULTS: Human papillomavirus-16 DNA was detected in 23 cases of oral SCC and both HPV-16 and HPV-18 DNA were detected in one case of tongue SCC. Human papillomavirus DNAs were detected of 11 of 33 tongue, 4 of 15 gingival, 2 of 4 palate, 2 of 5 buccal mucosa, 3 of 7 maxillary sinus, and 2 of 11 the floor of the mouth SCCs. None were detected in SCCs of the retromolar region (0/2). Immunohistochemical examination for p53 was performed in 26 cases of oral SCC and the accumulation of p53 protein was observed in 6 cases (i.e., in 4 of 17 HPV DNA-negative cases and in 2 of 9 HPV DNA-positive cases). Single strand conformation polymorphism analysis confirmed gene mutations in all 6 cases. Human papillomavirus-16 DNA was predominantly identified in cancer cells that showed a morphologic resemblance to basal cells and its hybridized signal in keratinized cells was reduced by in situ hybridization detection. Immunohistochemical detection of PCNA revealed its cooccurrence with HPV-16 DNA in cancer cells. CONCLUSIONS: These results suggest that HPV-16 DNA sequences may have the capability to maintain the proliferative state of epithelial cells, and may contribute to the production of malignant phenotypes.

Adult↗

Ets-related protein E1A-F can activate three different matrix metalloproteinase gene promoters.

An Ets-related E1A-F has been characterized as an enhancer-binding protein for the adenovirus E1A gene. Here we show, in transient expression assays, that E1A-F can activate three different subclasses of the matrix metalloproteinase gene promoters. Expressions of the chloramphenicol acetyltransferase (CAT) reporter gene under the control of stromelysin, type I collagenase and 92 kD type IV collagenase promoters were increased approximately 10- to 20-fold by co-transfection with the E1A-F expression vector. Activation levels were as much high as those obtained by exogenous expression of AP-1 transcription factor. These results suggest that E1A-F positively regulates transcriptions from matrix metalloproteinase genes that are associated with invasion and metastasis of tumor cells.

Adenovirus E1A Proteins↗