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Biomedical subjects

Jen-Yang Chen

Publications and source records attributed to Jen-Yang Chen.

24 records · Page 2Linked to original sources

Site-directed mutagenesis in a conserved motif of Epstein-Barr virus DNase that is homologous to the catalytic centre of type II restriction endonucleases.

Sequence alignment of human herpesvirus DNases revealed that they share several conserved regions. One of these, the conserved motif D203...E225XK227 (D.EXK) in the sequence of Epstein-Barr virus (EBV) DNase, has a striking similarity to the catalytic sites of some other nucleases, including type II restriction endonucleases, lambda exonuclease and MutH. The predicted secondary structures of these three residues were shown to resemble the three catalytic residues of type II restriction endonucleases. Site-directed mutagenesis was carried out to replace each of the acidic residues near the motif by residues with different properties. All substitutions of D203, E225 and K227 were shown to cause significant reductions in nuclease activity. Six other acidic residues, within the conserved regions, were also replaced by Asn or Gln. Five of these six variants retained nuclease activity and mutant D195N alone lost nuclease activity. The four charged residues, D195, D203, E225 and K227, of EBV DNase were found to be important for nuclease activity. Biochemical analysis indicated that the preference for divalent cations was altered from Mg2+ to Mn2+ for mutant E225D. The DNA-binding abilities of D203E, E225D and E225Q were shown to be similar to that of wild-type. However, K227 mutants were found to have variable DNA-binding abilities: K227G and K227N mutants retained, K227E and K227D had reduced and K227R lost DNA-binding ability. Comparison of the biochemical properties of the corresponding substitutions among EBV DNase and type II restriction enzymes indicated that the D...EXK motif is most likely the putative catalytic centre of EBV DNase.

Amino Acid Sequence↗

Nasopharyngeal carcinoma and genetic polymorphisms of DNA repair enzymes XRCC1 and hOGG1.

Nitrosamine consumption and polymorphisms in CYP2E1, the product of which is involved in the activation of nitrosamines into reactive intermediates, have been shown to be associated with nasopharyngeal carcinoma (NPC) risk. Given that reactive intermediates created during nitrosamine metabolism are capable of DNA damage, we further hypothesized that differences between individuals in their ability to repair DNA damage might be important in NPC pathogenesis. To evaluate this hypothesis, this study focused on effects of genetic polymorphisms of DNA repair genes hOGG1 and XRCC1 on the development of NPC. We conducted a case-control study to investigate the genotypes of 334 patients with NPC and 283 healthy community controls matched by sex, age, and residence. The PCR-based RFLP assay was used to identify genetic polymorphisms. After adjustment for sex, age, and ethnicity, the odds ratio (OR) of developing NPC for hOGG1 codon 326 genotypes of Ser/Cys and Cys/Cys compared with the Ser/Ser genotype was 1.6 (95% CI, 1.0-2.6). For XRCC1 codon 280 genotypes of Arg/His and His/His compared with the Arg/Arg genotype, the OR was 0.64 (95% CI, 0.43-0.96). Among subjects with putative high-risk genotypes for both hOGG1 and XRCC1, the OR was 3.0 (95% CI, 1.0-8.8). Furthermore, subjects with putative high-risk genotypes for hOGG1, XRCC1, and CYP2E1 had an OR of disease of 25 (95% CI, 3.5-177). Polymorphisms of the DNA repair genes hOGG1 (codon 326) and XRCC1 (codon 280) are associated with an altered risk of NPC. Carriers of multiple putative high-risk genotypes have the highest risk of developing NPC.

Adult↗

Thyroid hormone receptor alpha 1 (c-erb A alpha 1) suppressed transforming phenotype of nasopharyngeal carcinoma cell line.

Only three thyroid hormone receptor (TR) isoforms, alpha 1, beta 1, and beta 2, bind thyroid hormone (TH) and are considered to be true TRs. TR alpha 2, unable to bind TH, binds to TH response element on DNA and has been shown to exert dominant negative action on TR alpha1. TR alphas regulate many important processes such as proliferation, differentiation and apoptosis. To find out if TR alphas played roles in growth control of nasopharyngeal carcinoma cells, transfectant with inducible expression of TR alpha 1 was generated from NPC-TW 04 cell lines. Induced expression of TR alpha 1 in nasopharyngeal carcinoma cell reduced proliferation and colony-formation ability in agar. Tumor formation ability in nude mice was reduced in NPC cells with TR alpha 1 expression than those without expression or vector-transfected cells. Our results supported the hypothesis that TR alpha 1 functions as a tumor suppressor gene in nasopharyngeal carcinoma tumorigenesis.

Animals↗

Resistance to tumor necrosis factor-alpha-induced apoptosis in human T-lymphotropic virus type I-infected T cell lines.

Induction of apoptosis of virus-infected cells is an important host cell defense mechanism. It is well documented that T cells may undergo apoptosis due to interactions between Fas and Fas ligand (FasL). In addition, signals that induce apoptosis in T cells can result from interaction of tumor necrosis factor (TNF)-alpha with TNF receptors (TNFRs). It has been shown that human T cell lines expressing HTLV-I have decreased sensitivity to Fas-mediated apoptosis. The susceptibility of HTLV-I-infected cells to TNF-alpha-induced apoptosis remains to be elucidated. In the present study, we examined the expression of TNFRs on HTLV-I-infected T cell lines that expressed T-cell activation markers and thus phenotypically resemble activated T cells. Different from primary activated T cells that expressed both TNFRs, none of the five HTLV-I-infected T cell lines studied had detectable TNFR1 and only three had TNFR2 on their cell surfaces, although, the RNA transcripts of both TNFR genes could be detected via reverse transcription-polymerase chain reaction in these cell lines. The T cell blasts, which we activated in vitro, were sensitive to apoptosis induced by TNF-alpha and by antibodies to TNFR1 and/or TNFR2. However, all of the HTLV-I-infected cell lines expressing TNFR2 were resistant to TNF-alpha-mediated apoptosis. These findings suggest that HTLV-I infection may interfere with the autonomous suicide programs of T cells, not only Fas/FasL but also TNFRs/TNF-alpha pathways, to prolong the life of the infected cells. This may contribute to viral persistence and favor survival and subsequent expansion of dysregulated infected T cells with the potential to produce HTLV-I-associated autoimmune-like diseases or malignancies.

Antigens, CD↗

Induction of cytokines by glucosyltransferases of streptococcus mutans.

Production of proinflammatory cytokines is implicated in the pathogenesis of viridans streptococcus-induced alpha-streptococcal shock syndrome and infective endocarditis. Streptococcus mutans, one of the opportunistic pathogens causing infective endocarditis, was reported previously to stimulate monocytes and epithelial and endothelial cells in vitro to produce various cytokines. We found that glucosyltransferases (GTFs) GtfC and GtfD of S. mutans stimulated predominantly the production of interleukin-6 (IL-6) from T cells cultured in vitro. The level of IL-6 but not of tumor necrosis factor alpha in blood was significantly elevated when rats were injected intravenously with S. mutans GS-5, whereas IL-6 was detected at a much lower level when rats were challenged with NHS1DD, an isogenic mutant defective in the expression of GTFs. The serum IL-6 level was elevated in patients with endocarditis caused by different species of viridans streptococci which express GTF homologues. Affinity column-purified GTFs reduced the levels of detectable IL-2 of T cells stimulated by another bacterial antigen, tetanus toxoid. These results suggested that GTFs might modulate the production of Th1-type cytokines and that GTFs of S. mutans play a significant role in stimulating the production of the proinflammatory cytokine IL-6 in vivo.

Adult↗

Expression of Epstein-Barr virus latent membrane protein 1 and B-cell leukemia-lymphoma 2 gene in nasopharyngeal carcinoma tissues.

Co-expression of B-cell leukemia-lymphoma 2 gene (Bcl-2) and Epstein-Barr virus latent membrane protein 1 (LMP-1) in nasopharyngeal carcinoma tissues were tested using immunohistochemical methods. Results showed that there were 32% (14/44) and 68% (30/44) LMP-1 and Bcl-2-positive cases, respectively. Among the LMP-1-positive tissues, 8 (57%) of 14 specimens were also Bcl-2-positive. The level of LMP-1 and Bcl-2 expression was associated with the clinical stages of nasopharyngeal carcinoma. Furthermore, when LMP-1- and Bcl-2-positive cases were combined, the highest positive score was found in clinical stage II as well as in the early stage (stages I and II) of nasopharyngeal carcinoma. While further studies with more cases are needed, this study suggests that co-expression of Bcl-2 and LMP-1 may be involved in the process of nasopharyngeal carcinoma aggravation.

Biopsy↗