第 1 到 41 筆結果,共 41 筆。
公開日期 | 標題 | 作者 | 來源出版物 | scopus | WOS | 全文 | |
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1 | 2021 | Biphasic bone graft prepared using a gel-foaming technique | Chang H.-Y; Chen Y.-C; Tuan W.-H; Hwang S.-P; Chang L.-K ; Wu C.-J; Chen C.-Y; Lai P.-L.; WEI-HSING TUAN | Ceramics International | |||
2 | 2020 | Bioactive constituents of Lindernia crustacea and its anti-EBV effect via Rta expression inhibition in the viral lytic cycle | Tsai, Y.-C.; Hohmann, J.; El-Shazly, M.; Chang, L.-K.; Dankó, B.; Kúsz, N.; Hsieh, C.-T.; Hunyadi, A.; Chang, F.-R.; LI-KWAN CHANG | Journal of Ethnopharmacology | 21 | 21 | |
3 | 2020 | Rta is an Epstein-Barr virus tegument protein that improves the stability of capsid protein BORF1 | Huang, H.-H.; Wang, W.-H.; Feng, T.-H.; Chang, L.-K.; LI-KWAN CHANG | Biochemical and Biophysical Research Communications | 3 | 3 | |
4 | 2020 | Expression of Rta in B Lymphocytes during Epstein–Barr Virus Latency | Hwang, S.-P.; Huang, L.-C.; Wang, W.-H.; Lin, M.-H.; Kuo, C.-W.; Huang, H.-H.; Chang, L.-K.; LI-KWAN CHANG | Journal of Molecular Biology | 4 | 4 | |
5 | 2019 | Less Cytotoxic Protoflavones as Antiviral Agents: Protoapigenone 1′-O-isopropyl ether Shows Improved Selectivity Against the Epstein–Barr Virus Lytic Cycle | Vágvölgyi, M.; Girst, G.; Kúsz, N.; Ötvös, S.B.; Fülöp, F.; Hohmann, J.; Servais, J.-Y.; Seguin-Devaux, C.; Chang, F.-R.; Chen, M.S.; Chang, L.-K.; Hunyadi, A.; LI-KWAN CHANG | International Journal of Molecular Sciences | 6 | 3 | |
6 | 2017 | TRIM5α Promotes Ubiquitination of Rta from Epstein–Barr Virus to Attenuate Lytic Progression | H. H. Huang; C. S. Chen; W. H. Wang; S. W. Hsu; H. H. Tsai; S. T. Liu; L. K. Chang | Frontiers in Microbiology | 12 | 9 | |
7 | 2017 | Shrimp miR-10a is co-opted by white spot syndrome virus to increase viral gene expression and viral replication | Chen I.-T.; Chang L.-K.; Lin S.-S.; Kou G.-H.; Chu C.-Y.; Lo C.-F.; C. Y. Chu; CHIA-YING CHU ; SHIH-SHUN LIN ; L. K. Chang | Frontiers in Immunology | 11 | 9 | |
8 | 2017 | Role of Litopenaeus vannamei Yin Yang 1 in the regulation of the white spot syndrome virus immediate early gene ie1 | P. H. Huang; T. Y. Huang; P. S. Cai; L. K. Chang | Journal of Virology | 21 | 16 | |
9 | 2016 | Regulation of the Abundance of Kaposi’s Sarcoma-Associated Herpesvirus ORF50 Protein by Oncoprotein MDM2 | T. H. Chang; S. S. Wang; L. W. Chen; Y. J. Shih; L. K. Chang ; S. T. Liu; TZU-HSUAN CHANG | PLOS Pathogens | 13 | 9 | |
10 | 2015 | The promoter of the white spot syndrome virus immediate-early gene WSSV108 is activated by the cellular KLF transcription factor | W. J. Liu; C. F. Lo; G. H. Kou; J. H. Leu; Y. J. Lai; L. K. Chang ; Y. S. Chang | Developmental and Comparative Immunology | 8 | 8 | |
11 | 2015 | RanBPM regulates Zta-mediated transcriptional activity in Epstein–Barr virus | Y. C. Yang; T. H. Feng; T. Y. Chen; H. H. Huang; C. C. Hung; S. T. Liu; L. K. Chang | Journal of General Virology | 10 | 11 | |
12 | 2015 | Assembly of Epstein-Barr virus capsid in promyelocytic leukemia nuclear bodies | W. H. Wang; C. W. Kuo; L. K. Chang ; C. C. Hung; T. H. Chang; S. T. Liu | Journal of Virology | 16 | 16 | |
13 | 2015 | Transcriptional activation of Epstein–Barr virus BRLF1 by USF1 and Rta | C. C. Hung; C. W. Kuo; W. H. Wang; T. H. Chang; P. J. Chang; L. K. Chang ; TZU-HSUAN CHANG | Journal of General Virology | 8 | 7 | |
14 | 2014 | Regulation of the immediate-early genes of white spot syndrome virus by Litopenaeus vannamei kruppel-like factor (LvKLF) | P. H. Huang; S. C. Lu; S. H. Yang; P. S. Cai; C. F. Lo; L. K. Chang | Developmental and Comparative Immunology | 15 | 13 | |
15 | 2014 | MCAF1 and Rta-Activated BZLF1 Transcription in Epstein-Barr Virus | T. Y. Lin; Y. Y. Chu; Y. C. Yang; S. W. Hsu; S. T. Liu; L. K. Chang | PLOS ONE | 9 | 6 | |
16 | 2013 | Role of RNF4 in the Ubiquitination of Rta of Epstein-Barr Virus | Y. C. Yang; Y. Yoshikai; S. W. Hsu; H. Saitoh; L. K. Chang | Journal of Biological Chemistry | 26 | 28 | |
17 | 2013 | Role of TAF4 in Transcriptional Activation by Rta of Epstein-Barr Virus | Y. C. Yang; L. K. Chang | PLOS One | 9 | 8 | |
18 | 2012 | Role of Penaeus monodon Kruppel-like factor (PmKLF) in infection by white spot syndrome virus | L. K. Chang ; P. H. Huang; W. T. Shen; S. H. Yang; W. J. Liu; C. F. Lo | Developmental and Comparative Immunology | 17 | 17 | |
19 | 2011 | Molecular Interactions of Epstein-Barr Virus Capsid Proteins | Wang, Wen-Hung; Chang, Li-Kwan ; Liu, Shih-Tung | Journal of Virology | 18 | 18 | |
20 | 2011 | Enhancement of Zta-activated lytic transcription of Epstein-Barr virus by Ku80 | Chen C.-C.; Yang Y.-C.; Wang W.-H.; Chen C.-S.; LI-KWAN CHANG | Journal of General Virology | 6 | 5 | |
21 | 2010 | Biochemical characterization of the small ubiquitin-like modifiers of Chlamydomonas reinhardtii | Shin Y.-C.; Liu B.-Y.; Tsai J.-Y.; Wu J.-T.; LI-KWAN CHANG ; Chang, Shih-Chung | Planta | 7 | 7 | |
22 | 2010 | Functional characterization of AIBp, a novel Aurora-A binding protein in centrosome structure and spindle formation | Lieu, Ann-Shung; Chang, Li-Kwan et al. | International Journal of Oncology | 10 | 9 | |
23 | 2010 | Inhibitory effects of resveratrol on the Epstein-Barr virus lytic cycle | Yiu C.-Y.; Chen S.-Y.; Chang L.-K.; Chiu Y.-F.; Lin T.-P.; LI-KWAN CHANG | Molecules | 55 | 52 | |
24 | 2010 | Differential expression of hedgehog signaling components and Snail/E-cadherin in human brain tumors | Chou, Chia-Hua; Chang, Li-Kwan et al. | Oncology Reports | 7 | 5 | |
25 | 2010 | MCAF1 and synergistic activation of the transcription of Epstein-Barr virus lytic genes by Rta and Zta | Chang, Li-Kwan ; Chuang, Jian-Ying; Nakao, Mitsuyoshi; Liu, Shih-Tung | Nucleic Acids Research | 25 | 26 | |
26 | 2010 | Inhibition of the Epstein–Barr virus lytic cycle by moronic acid | Chang, Fang-Rong; Hsieh, Yi-Chung; Chang, Yung-Fu; Lee, Kuo-Hsiung; Wu, Yang-Chang; Chang, Li-Kwan | Antiviral Research | 35 | 31 | |
27 | 2008 | Enhancement of Transactivation Activity of Rta of Epstein-Barr Virus by RanBPM | Chang, Li-Kwan ; Liu, Shih-Tung; Kuo, Chung-Wen; Wang, Wen-Hung; Chuang, Jian-Ying; Bianchi, Elisabetta; Hong, Yi-Ren | Journal of Molecular Biology | 36 | 37 | |
28 | 2008 | Inhibition of the Epstein–Barr Virus Lytic Cycle by Andrographolide | Lin, Tsuey-Pin; Chen, Shih-Ying; Duh, Pin-Der; Chang, Li-Kwan ; Liu, Yen-Ni | Biological & Pharmaceutical Bulletin | 86 | 64 | |
29 | 2006 | Characterization and functional aspects of human ninein isoforms that regulated by centrosomal targeting signals and evidence for docking sites to direct γ-tubulin | Lin C.-C.; Cheng T.-S.; Hsu C.-M.; Wu C.-H.; Chang L.-S.; Shen Z.-S.; Yeh H.-M.; Chang L.-K.; Howng S.-L.; Hong Y.-R.; LI-KWAN CHANG | Cell Cycle | 20 | 21 | |
30 | 2006 | SUMO-1 modification of centrosomal protein hNinein promotes hNinein nuclear localization | Cheng T.-S.; Chang L.-K.; Howng S.-L.; Lu P.-J.; Lee C.-I.; Hong Y.-R.; LI-KWAN CHANG | Life Sciences | 18 | 17 | |
31 | 2006 | The F-box protein Fbxo7 interacts with human inhibitor of apoptosis protein cIAP1 and promotes cIAP1 ubiquitination | Chang Y.-F.; Cheng C.-M.; Chang L.-K.; Jong Y.-J.; Yuo C.-Y.; LI-KWAN CHANG | Biochemical and Biophysical Research Communications | 56 | 56 | |
32 | 2006 | Sumoylation of Rta of Epstein-Barr virus is preferentially enhanced by PIASxβ | Liu S.-T.; Wang W.-H.; Hong Y.-R.; Chuang J.-Y.; Lu P.-J.; Chang L.-K.; LI-KWAN CHANG | Virus Research | 23 | 23 | |
33 | 2005 | Activation of Sp1-mediated transcription by Rta of Epstein-Barr virus via an interaction with MCAF1 | Chang L.-K.; Chung J.-Y.; Hong Y.-R.; Ichimura T.; Nakao M.; Liu S.-T.; LI-KWAN CHANG | Nucleic Acids Research | 61 | 65 | |
34 | 2005 | Functional analysis of fengycin synthetase FenD | Lin T.-P.; Chen C.-L.; Fu H.-C.; Wu C.-Y.; Lin G.-H.; Huang S.-H.; Chang L.-K.; Liu S.-T.; LI-KWAN CHANG | Biochimica et Biophysica Acta - Gene Structure and Expression | 14 | 15 | |
35 | 2005 | Characterization of two non-testis-specific CABYR variants that bind to GSK3β with a proline-rich extensin-like domain | Hsu H.-C.; Lee Y.-L.; Cheng T.-S.; Howng S.-L.; Chang L.-K.; Lu P.-J.; Hong Y.-R.; LI-KWAN CHANG | Biochemical and Biophysical Research Communications | 25 | 25 | |
36 | 2004 | A novel ninein-interaction protein, CGI-99, blocks ninein phosphorylation by GSK3β and is highly expressed in brain tumors | Howng S.-L.; Hsu H.-C.; Cheng T.-S.; Lee Y.-L.; Chang L.-K.; Lu P.-J.; Hong Y.-R.; LI-KWAN CHANG | FEBS Letters | 38 | 38 | |
37 | 2003 | Inhibition of Epstein-Barr virus lytic cycle by (-)-epigallocatechin gallate | Chang L.-K.; Wei T.-T.; Chiu Y.-F.; Tung C.-P.; Chuang J.-Y.; Hung S.-K.; Li C.; Liu S.-T.; LI-KWAN CHANG | Biochemical and Biophysical Research Communications | 105 | 83 | |
38 | 2000 | Activation of the BRLF1 promoter and lytic cycle of Epstein-Barr virus by histone acetylation | Chang L.-K.; Liu S.-T.; LI-KWAN CHANG | Nucleic Acids Research | 89 | ||
39 | 1999 | Functional and transcriptional analyses of a fengycin synthetase gene, fenC, from Bacillus subtilis | Lin, Tsuey Pin; Chen, Chyi Liang; LI-KWAN CHANG ; Tschen, Johannes Scheng Ming; Liu, Shih Tung | Journal of Bacteriology | 57 | 53 | |
40 | 1995 | Transposon mutagenesis and cloning of the genes encoding the enzymes of fengycin biosynthesis in Bacillus subtilis | Chen C.-L.; Chang L.-K.; Chang Y.-S.; Liu S.-T.; Tschen J.S.-M.; LI-KWAN CHANG | MGG Molecular & General Genetics | 29 | 28 | |
41 | 1994 | Construction of Tn917ac1, a transposon useful for mutagenesis and cloning of Bacillus subtilis genes | Li-Kwan C.; Chyi-Liang C.; Yu-Sun C.; Johannes Scheng-Ming Tschen, Yih-Ming C.; Shih-Tung L.; LI-KWAN CHANG | Gene | 10 | 0 |