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<h5>[13] Lee, K. J., Choi, J., Ou, J. H., & Lai, M. M. (2004). The c-terminal transmembrane domain of hepatitis c virus (hcv) rna polymerase is essential for hcv replication in vivo. <i>Journal of Virology, 78</i>(7), 3797. | <h5>[13] Lee, K. J., Choi, J., Ou, J. H., & Lai, M. M. (2004). The c-terminal transmembrane domain of hepatitis c virus (hcv) rna polymerase is essential for hcv replication in vivo. <i>Journal of Virology, 78</i>(7), 3797. | ||
<h5>[14] Lohmann, V., Körner, F., Herian, U., & Bartenschlager, R. (1997). Biochemical properties of hepatitis c virus ns5b rna-dependent rna polymerase and identification of amino acid sequence motifs essential for enzymatic activity. <i>Journal of Virology, 71</i>(11), 8416-8428. | <h5>[14] Lohmann, V., Körner, F., Herian, U., & Bartenschlager, R. (1997). Biochemical properties of hepatitis c virus ns5b rna-dependent rna polymerase and identification of amino acid sequence motifs essential for enzymatic activity. <i>Journal of Virology, 71</i>(11), 8416-8428. | ||
− | <h5>[15] <a><u>http://parts.igem.org/Part:BBa_K1442100</u></a> | + | <h5>[15] <a href="http://parts.igem.org/Part:BBa_K1442100"><u>http://parts.igem.org/Part:BBa_K1442100</u></a> |
<h5>[16] Kao, C. C., Yang, X., Kline, A., Wang, Q. M., Barket, D., & Heinz, B. A. (2000). Template requirements for rna synthesis by a recombinant hepatitis c virus rna-dependent rna polymerase.<i> Journal of Virology,74</i>(23), 11121. | <h5>[16] Kao, C. C., Yang, X., Kline, A., Wang, Q. M., Barket, D., & Heinz, B. A. (2000). Template requirements for rna synthesis by a recombinant hepatitis c virus rna-dependent rna polymerase.<i> Journal of Virology,74</i>(23), 11121. | ||
− | <h5>[17] <a><u>http://parts.igem.org/wiki/index.php?title=Part:BBa_K1442304</u></a> | + | <h5>[17] <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1442304"><u>http://parts.igem.org/wiki/index.php?title=Part:BBa_K1442304</u></a> |
<h5>[18] O'Farrell, D., Trowbridge, R., Rowlands, D., & Jager, J. (2003). Substrate complexes of hepatitis c virus rna polymerase (hc-j4): structural evidence for nucleotide import and de-novo initiation. <i>Journal of Molecular Biology,326</i>(4), 1025-1035. | <h5>[18] O'Farrell, D., Trowbridge, R., Rowlands, D., & Jager, J. (2003). Substrate complexes of hepatitis c virus rna polymerase (hc-j4): structural evidence for nucleotide import and de-novo initiation. <i>Journal of Molecular Biology,326</i>(4), 1025-1035. | ||
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<h5>[28] Kyo, S., Takakura, M., Fujiwara, T., & Inoue, M. (2010). Understanding and exploiting htert promoter regulation for diagnosis and treatment of human cancers. <i>Cancer Science, 99</i>(8), 1528-1538. | <h5>[28] Kyo, S., Takakura, M., Fujiwara, T., & Inoue, M. (2010). Understanding and exploiting htert promoter regulation for diagnosis and treatment of human cancers. <i>Cancer Science, 99</i>(8), 1528-1538. | ||
<h5>[29] Takakura, M., Kyo, S., Kanaya, T., Hirano, H., Takeda, J., & Yutsudo, M., et al. (1999). Cloning of human telomerase catalytic subunit (htert) gene promoter and identification of proximal core promoter sequences essential for transcriptional activation in immortalized and cancer cells. <i>Cancer Research, 59</i>(3), 551-557. | <h5>[29] Takakura, M., Kyo, S., Kanaya, T., Hirano, H., Takeda, J., & Yutsudo, M., et al. (1999). Cloning of human telomerase catalytic subunit (htert) gene promoter and identification of proximal core promoter sequences essential for transcriptional activation in immortalized and cancer cells. <i>Cancer Research, 59</i>(3), 551-557. | ||
− | <h5>[30] <a><u>http://parts.igem.org/Part:BBa_K1722002</u></a> | + | <h5>[30] <a href="http://parts.igem.org/Part:BBa_K1722002"><u>http://parts.igem.org/Part:BBa_K1722002</u></a> |
− | <h5>[31] <a><u>http://parts.igem.org/wiki/index.php?title=Part:BBa_K1922001</u></a> | + | <h5>[31] <a href="http://parts.igem.org/wiki/index.php?title=Part:BBa_K1922001"><u>http://parts.igem.org/wiki/index.php?title=Part:BBa_K1922001</u></a> |
− | <h5>[32] <a><u>http://parts.igem.org/Part:BBa_K1699001</u></a> | + | <h5>[32] <a href="http://parts.igem.org/Part:BBa_K1699001"><u>http://parts.igem.org/Part:BBa_K1699001"></u></a> |
− | <h5>[33] <a><u>http://parts.igem.org/Part:BBa_K1722001</u></a> | + | <h5>[33] <a href="http://parts.igem.org/Part:BBa_K1722001"><u>http://parts.igem.org/Part:BBa_K1722001</u></a> |
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<h5>[43] Gu, J., Zhang, L., Huang, X., Lin, T., Yin, M., & Xu, K., et al. (2002). A novel single tetracycline-regulative adenoviral vector for tumor-specific bax gene expression and cell killing in vitro and in vivo. <i>Oncogene,21</i>(31), 4757-4764. | <h5>[43] Gu, J., Zhang, L., Huang, X., Lin, T., Yin, M., & Xu, K., et al. (2002). A novel single tetracycline-regulative adenoviral vector for tumor-specific bax gene expression and cell killing in vitro and in vivo. <i>Oncogene,21</i>(31), 4757-4764. | ||
− | <h5>[44] <a><u>https://2013.igem.org/Team:SYSU-China/Project/Design</u></a> | + | <h5>[44] <a href="https://2013.igem.org/Team:SYSU-China/Project/Design"><u>https://2013.igem.org/Team:SYSU-China/Project/Design</u></a> |
Revision as of 03:28, 8 December 2018
"The AND gate is a basic digital logic gate that implements logical conjunction. A HIGH output (1) results only if all the inputs to the AND gate are HIGH (1)."
——Wikipedia
I am Promoter hTERT! Click me!
I am Promoter Hulc! Click me!