ªL·q­õ (Lin, Jing-Jer)

Tel: (02) 2826-7258

e-mail: jjlin@ym.edu.tw



¾Ç¾ú:

Ÿ             ¾Ç¤h 1983,°ê¥ß»OÆW¤j¾Ç¤Æ¾Ç¨t

Ÿ             ºÓ¤h 1985,°ê¥ß¶§©ú¤j¾Ç¥Íª«¤Æ¾Ç¬ã¨s©Ò

Ÿ             ³Õ¤h 1992, University of North Carolina at Chapel Hill, Department of Biochemistry and Biophysics

 

¸g¾ú:

Ÿ             ³Õ¤h«á¬ã¨s 1992-1995, Fred Hutchinson Cancer Research Center, Basic Sciences

Ÿ             ³Õ¤h«á¬ã¨s 1995-1996, Princeton University, Department of Molecular Biology

Ÿ             °Æ±Ð±Â 1996-2002, °ê¥ß¶§©ú¤j¾Ç¥Íª«ÃľǬã¨s©Ò

Ÿ             ±Ð±Â 2002-¨´¤µ, °ê¥ß¶§©ú¤j¾Ç¥Íª«ÃľǬã¨s©Ò

Ÿ             ©Òªø 2003-¨´¤µ, °ê¥ß¶§©ú¤j¾Ç¥Íª«ÃľǬã¨s©Ò

 

±Mªø¤Î¬ã¨s¿³½ì:

Ÿ             telomere biology, telomerase, chromosome stability

Ÿ             Chinese herbs

Ÿ             Cancer biology

Ÿ             Aging mechanism

Ÿ             Chemical proteomics

 

µoªí½×¤å (2000- ):

 

Articles:

1.            Huang, H.-S., Huang, K.-F., Li, Cho-Lu., Huang, Y.-Y., Chiang, Y.-H., Huang, F.-C., and Lin, J.-J.: Synthesis, human telomerase inhibition and antiproliferative studies of a series of 2,7-bis-substituted amido-anthraquinone derivatives. Bioorg. Med. Chem., 16: 6976-6986, 2008.

2.            Huang, F.-C., Chang, C.-C., Lou, P.-J. Kuo, I.-C., Chien, C.-W., Chen, C.-T. Shieh, F.-Y., Chang, T.-C., and Lin, J.-J.: G-quadruplex stabilizer BMVC induces accelerated senescence and inhibits tumorigenic properties in cancer cells. Mole. Cancer Res. 6: 955-964, 2008.

3.            Huang, H.-S., Lin, J.-J., Huang, K.-F., and Li, C.-L.: A concise paradigm for the construction of amide linker of 2,7-diamidoanthraquinone derivatives as potential telomerase inhibitors. Taiwan Pharm. J., 59: 179-187, 2007.

4.            Hsieh,Y.-C., Tu, P.-J., Lee, Y.-Y., Kuo, C.-C., Lin, Y.-C., Wu, C.-F., and Lin, J.-J.: The U3 small nucleolar ribonucleoprotein component Imp4p is a telomeric DNA binding protein. Biochem. J., 408: 387-393, 2007.

5.            Huang, Y.-Y., Shih, J.-W., and Lin, J.-J.: Establishing the cell-based reporter systems for the analysis of hTERT expression. Methods Mole. Biol., 405: 87-96, 2007.

6.            Lin, Y.-C., Wu Lee, Y.-H., and Lin, J.-J.: Genetic analysis reveals essential and non-essential amino acids within the telomeric DNA binding interface of Cdc13p. Biochem. J., 403: 289-295, 2007.

7.            Huang, H.-S., Chen, I.-B., Chen,T.-C., Huang, K.-F. Lu, W.-C., Shieh, F.-Y., Huang, Y.-Y., Huang, F.-C., and Lin, J.-J.: Synthesis and human telomerase inhibition of a series of regioisomeric disubstituted amidoanthraquinones. Chem. Pharm. Bull., 55: 284-292, 2007.

8.            Tseng, S.-F., Lin, J.-J., abd Teng, S.-C.: The telomerase-recruitment domain of the telomere binding protein Cdc13p is regulated by Mec1p/Tel1p-dependent phosphorylation. Nucleic Acids Res., 21: 6327-6336, 2006.

9.            Lin, S.-C., Li, W.-C., Shih, J.-W., Hong, K.-F., Pan,Y.-R., Lin, J.-J.: The tea polyphenols EGCG and EGC repress mRNA expression of human telomerase reverse transcriptase (hTERT) in carcinoma cells. Cancer Lett., 236: 80-88, 2006.

10.         Lo, L.-C., Chu, C.-Y., Lin, F.-A., Pan, Y.-R., Li, Y.-K., Lin, J.-J.: Synthesis of activity probes for b-xylosidase. J. Chin. Chem. Soc., 53: 479-488, 2006.

11.         Shie, T.H., Chiang, Y.-L., Lin, J.-J., Li, Y.-K., and Lo, L.-C.: Facile synthesis toward the construction of an activity probe library for glycosidases. Carbohydrate Res., 341: 443-456, 2006.

12.         Lo, L.-C., Chu, C.-Y., Pan, Y.-R., Wan, C.-F., Li, Y.-K., and Lin, J.-J.: Rapid and selective isolation of b-xylosidase through an activity-based chemical approach. Biotech. J., 1: 197-202, 2006.

13.         Huang, H.-S., Chou, C.-L., Guo, C.-L., Yuan, C.-L., Lu, Y.-C., Shieh, F.-Y., Lin, J.-J.: Human telomerase inhibition and cytotoxicity of regioisomeric disubstituted amidoanthraquinones and aminoanthraquinones. Bioorg. Med. Chem., 13: 1435-1444, 2005.

14.         Lo, L.-C., Chiang, Y.-L., Kuo,C.-H., Liao, H.-K., Chen, Y.-J., and Lin, J.-J.: Study of the preferred modification sites of the quninone methide intermediate resulting from the latent trapping device of the activity probes for hydrolases. Biochem. Biophys. Res. Commu., 326: 30-35, 2005.

15.         Yeh, T.-S., Hsieh, R.-H., Shen, S.-C., Wang, S.-H., Tseng, M.-J., Shih, C.-M., and Lin, J.-J.: Nuclear bII¡Vtubulin associates with the activated Notch receptor to modulate Notch signaling. Cancer Res., 64: 8334-8340. 2004.

16.         Chang, C.-C., Kuo, I-C., Lin, J.-J., Lu, Y.-C., Chen, C.-T., Back, H.-T., Lou, P.-J., and Chang, T.-C.: BMVC, a novel carbazole derivative and potential antitumor agent, as a potent telomerase inhibitor and selective fluorescence marker of cancer cells. Chem. & Biodiv., 1: 1377-1384. 2004.

17.         Chang, C.-C., Kuo, I.-C., Ling, I.-F., Chen, C.-T., Chen, H.-C., Lou, P.-J., Lin, J.-J., Chang, T.-C.: Detection of quadruplex DNA structures in human telomeres by a fluorescent carbazole derivative. Anal. Chem., 76: 4490-4494, 2004.

18.         Hsu, C.-L., Chen, Y.-S., Tsai, S.-Y., Tu, P.-J., Wang, M.-J., and Lin, J.-J.: Interaction of Saccharomyces Cdc13p to Pol1p, Imp4p, Sir4p, and Zds2p is involved in telomere replication, telomere maintenance, and cell growth control. Nucleic Acids Res., 32: 511-521, 2004.

19.         Chen, H.-L., Lu, C.-Y., Hsu, Y.-H., and Lin, J.-J.: Chromosome positional effects of gene expressions after cellular senescence. Biochem. Biophys. Res. Commu., 313: 576-586, 2004.

20.         Huang, H.-S., Chiou, J.-F., Fong, Y., Hou, C.-C., Lu, Y.-C., Wang, J.-Y., Shih, J.-W., Pan, Y.-R., and Lin, J.-J.: Activation of human telomerase hTERT expression by some new symmetrical bis-substituted derivatives of the anthraquinone.  J. Med. Chem., 46: 3300-3307, 2003.

21.         Ko, T.-P., Lin, J.-J., Hsu, Y.-H., Hu, C.-Y., Wang, A. H.-J., and Liaw, S.-H.: Cyrstal structure of the yeast cytosine deaminase: Insights into the enzyme mechanism and evolution.  J. Biol. Chem., 278: 19111-19117, 2003.

22.         Hsu, Y.-H., Hu, C.-Y., Lin, J.-J., and Liaw, S.-H.: Crystallization and preliminary crystallographic analysis of a yeast cytosine deaminase. Acta Cryst. D59: 950-952, 2003.

23.         Pang, T.-L., Wang, C.-Y., Hsu, C.-L., Chen, M.-Y., and Lin, J.-J.: Exposure of single-stranded telomeric DNA causes G2/M cell cycle arrest in Saccharomyces cerevisiae.  J. Biol. Chem., 278: 9318-9321, 2003.

24.         Chang, T.-C., Lin, J.-J., Lin, K.-C., Lin, Y.-C., Huang, W.-C., Yang, Y.-P., and Cheng, J.-Y.: Investigation of DNA-protein recognition by satellite hole spectra of labeling dye.  J. Luminescence, 98: 149-152, 2002.

25.         Teng, S.-C., Epstein, C. B., Tsai, Y.-L., Cheng, H.-W., Chen, H.-L., and Lin, J.-J.: Induction of global stress response in Saccharomyces cerevisiae cells lacking telomerase.  Biochem. Biophys. Res. Commu., 291: 714-721, 2002.

26.         Lo, L.-C., Pang, T.-L., Kuo, C.-H., Chiang, Y.-L., Wang, H.-Y., and Lin, J.-J.: Synthesis of activity probes and their mechanism-based labeling of protein tyrosine phosphatase 1B.  J. Proteome Res., 1: 35-40, 2002.

27.         Lin, Y.-C., Shih, J.-W., Hsu, C.-L., and Lin, J.-J.: Binding and renaturing of G-quartet DNA by Cdc13p of Saccharomyces cerevisiae.  J. Biol. Chem., 276: 47671-47674, 2001.

28.         Huang, H.-S., Hwang, J.-M., Jen, Y.-M., Lin, J.-J., Lee, K.-Y., Shi, C.-H., and Hsu, H.-C.: Studies on anthracenes. 1. Human telomerase inhibition and lipid peroxidation of 9-acyloxy 1,5-dichloroanthracene derivatives.  Chem. Pharm. Bull., 49: 969-973, 2001.

29.         Lin, Y.-C., Hsu, C.-L., Shih, J.-W., and Lin, J.-J.: Specific binding of single-stranded telomeric DNA by Cdc13p of Saccharomyces cerevisiae.  J. Biol. Chem., 276: 24588-24593, 2001.

30.         Lin, Y.-C., Shih, J.-W., Hsu, C.-L., and Lin, J.-J.: Renaturation and stabilization of the telomere-binding activity of Saccharomyces Cdc13(451-693)p by L-arginine.  Anal. Biochem., 294: 44-47, 2001.

31.         Wang, M.-J., Lin, Y.-C., Pang, T.-L., Lee, J.-M., Chou, C.-C., and Lin, J.-J.: Telomere-binding and Stn1p-interacting activities are required for the essential function of Saccharomyces cerevisiae Cdc13p.  Nucleic Acids Res., 28: 4733-4741, 2000.

 

Reviews:

1.        Hsu, Y.-H. and Lin, J.-J.: Telomere and telomerase as targets for anti-cancer and regeneration therapies.  Acta. Pharmcol. Sin., 26: 513-518, 2005.

 

 

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³\¾ÐÄÉ (Yi-Hsin Hsu)

³¢ºÍ¿² (Chun-Chen Kuo)

¶ÀÂײE (Feng-Chun Huang)

¤×®õ¤¸ (Tai-Yuan Yu)

±i³s¦¨ (Lien-Chen Chang)

¤ý¦w¥Á (An-Ming Wang)

 

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³¯¶®·u (Ya-Hui Chen)

¤ý·©Åï (Chen-Lin Wang)

 

·¨¶v³Ç (Chun-Chieh Yang)

¤ý½n­s(Wei-Chen Wang)

Á¿ü½å (Hsi-hsien Hsieh)

 

³Õ¤h«á¬ã¨s­û¤Î¬ã¨s§U²z¡G

¤ý㸻ö (Chen-Yi Wang, Ph.D.)

ªL¥H¤d (Yi-Chien Lin, Ph.D.)

³¯¬R¦| (Yu-Fan Chen)

¸âÀR¦p (Jing-Ru Jhan)

 

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2008, March

2007, July

2006, Spring

2005, March

 

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