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化学进展  2011 

G-四链体-氯化血红素DNA酶在传感器设计中的应用

, PP. 2119-2131

Keywords: DNA酶,G-四链体,氯化血红素,传感器,过氧化物酶

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Abstract:

G-四链体-氯化血红素(hemin)DNA酶是一种由特定的核酸G-四链体与hemin结合后形成的具有过氧化物酶活性的人工模拟酶。作为一类重要的DNA酶,G-四链体-heminDNA酶近年来在分析化学领域受到了越来越多的关注。目前这类DNA酶已被用在了多种传感器,包括金属离子传感器、适配体传感器、酶传感器、DNA传感器及药物传感器的设计当中。本文对G-四链体-heminDNA酶在传感器设计中的应用进行了系统的介绍和评述,并对其未来的发展进行了初步的展望。

References

[1]  Huppert J L. FEBS J., 2010, 277(17): 3452-3458
[2]  Lipps H J, Rhodes D. Trends Cell Biol., 2009, 19(8): 414-422
[3]  Yu S P, Canzoniero M T, Choi D W. Curr. Opin. Cell Biol., 2001, 13(4): 405-411
[4]  Sundquist W I, Klug A. Nature, 1989, 342(6251): 825-829
[5]  Mergny J L, Phan A T, Lacroix L. FEBS Lett., 1998, 435(1): 74-78
[6]  Takenaka S, Ueyama H, Nojima T, Takagi M. Anal. Bioanal. Chem., 2003, 375(8): 1006-1010
[7]  Ueyama H, Takagi M, Takenaka S. J. Am. Chem. Soc., 2002, 124(48): 14286-14287
[8]  Nagatoishi S, Nojima T, Juskowiak B, Takenaka S. Angew. Chem. Int. Ed. Engl., 2005, 44(32): 5067-5070
[9]  Nagatoishi S, Nojima T, Takenaka S. Nucleic Acids Symp. Ser. (Oxf), 2005, (49): 233-234
[10]  He F, Tang Y, Wang S, Li Y, Zhu D. J. Am. Chem. Soc., 2005, 127(35): 12343-12346
[11]  Kong D M, Guo J H, Yang W, Ma Y E, Shen H X. Biosens. Bioelectron., 2009, 25(1): 88-93
[12]  Kuklenyik Z, Marzilli L G. Inorg. Chem., 1996, 35(19): 5654-5662
[13]  Zhang D, Deng M G, Xu L, Zhou Y, Jing Y W, Zhou X. Chem. Eur. J., 2009, 15(33): 8117-8120
[14]  Ono A, Cao S, Togashi H, Tashiro M, Fujimoto T, Machinami T, Oda S, Miyake Y, Okamoto I, Tanaka Y. Chem. Commun., 2008, 4825-4827
[15]  Kong D M, Cai L L, Shen H X. Analyst, 2010, 135(6): 1253-1258
[16]  Zhou X H, Kong D M, Shen H X. Anal. Chim. Acta, 2010, 678(1): 124-127
[17]  Li T, Wang E K, Dong S J. J. Am. Chem. Soc., 2009, 131(42): 15082-15083
[18]  Smirnov I, Shafer R H. J. Mol. Biol., 2000, 296(1): 1-5
[19]  Kotch F W, Fettinger J C, Davis J T. Org. Lett., 2000, 2(21)3277-3280
[20]  Li W, Liu Z L, Lin H, Nie Z, Chen J, Xu X, Yao S. Anal. Chem., 2010, 82(5): 1935-1941
[21]  Deng M G, Zhang D, Zhou Y Y, Zhou X. J. Am. Chem. Soc., 2008, 130(39): 13095-13102
[22]  Darius A K L, Ling N J, Mahesh U. Mol. BioSyst., 2010, 6(5): 792-794
[23]  Wang N, Kong D M, Shen H X. Chem. Commun., 2011, 1728-1730
[24]  Weizmann Y, Beissenhirtz M K, Cheglakov Z, Nowarski R, Kotler M, Willner I. Angew. Chem. Int. Ed., 2006, 45(44): 7384-7388
[25]  Pelossof G, Tel-Vered R, Elbaz J, Willner I. Anal. Chem., 2010, 82(11): 4396-4402
[26]  Parkinson G N, Lee M P H, Neidle S. Nature, 2002, 417(3891): 876-880
[27]  Willner I, Shlyahovsky B, Zayats M, Willner B. Chem. Soc. Rev., 2008, 37(6): 1153-1165
[28]  Travascio P, Li Y, Sen D. Chem. Biol., 1998, 5(9): 505-517
[29]  Travascio P, Bennet A J, Wang D Y, Sen D. Chem. Biol., 1999, 6(11): 779-787
[30]  Li B, Dong S J, Wang E K. Chem. Asian J., 2010, 5(6): 1262-1272
[31]  De Cian A, Guittat L, Kaiser M, Saccà B, Amrane S, Bourdoncle A, Alberti P, Teulade-Fichou M P, Lacroix L, Mergny J L. Methods, 2007, 42(2): 183-195
[32]  Nagatoishi S, Nojima T, Galezowska E, Gluszynska A, Juskowiak B, Takenaka S. Anal. Chim. Acta, 2007, 581(1): 125-131
[33]  Nagatoishi S, Nojima T, Galezowska E, Juskowiak B, Takenaka S. Chembiochem., 2006, 7(11): 1730-1737
[34]  Kong D M, Ma Y E, Guo J H, Yang W, Shen H X. Anal. Chem., 2009, 81(7): 2678-2684
[35]  Li T, Wang E K, Dong S J. Chem. Commun., 2009, 580-582
[36]  Kong D M, Yang W, Wu J, Li C X, Shen H X. Analyst, 2010, 135(2): 321-326
[37]  Liu J W, Lu Y. Angew. Chem. Int. Ed., 2007, 46(40): 7587-7590
[38]  Li T, Dong S J, Wang E K. Anal. Chem., 2009, 81(6): 2144-2149
[39]  Li T, Li B, Wang E K, Dong S J. Chem. Commun., 2009, 3551-3553
[40]  Lu N, Shao C Y, Deng Z X. Analyst, 2009, 134(9): 1822-1825
[41]  Li T, Shi L, Wang E K, Dong S J. Chem. Eur. J., 2009, 15(9): 1036-1042
[42]  Kong D M, Wang N, Guo X X, Shen H X. Analyst, 2010, 135(3): 545-549
[43]  Li T, Shi L, Wang E K, Dong S J. Chem. Eur. J., 2009, 15(14): 3347-3350
[44]  Zhou X H, Kong D M, Shen H X. Anal. Chem., 2010, 82(3): 789-793
[45]  Kong D M, Xu J, Shen H X. Anal. Chem., 2010, 82(14): 6148-6153
[46]  Lan T, Furuya K, Lu Y. Chem. Commun., 2010, 3896-3898
[47]  Li T, Wang E K, Dong S J. Anal. Chem., 2010, 82(4): 1515-1520
[48]  Elbaz J, Shlyahovsky B, Willner I. Chem. Commun., 2008, 1569-1571
[49]  Yin B C, Ye B C, Tan W. J. Am. Chem. Soc., 2009, 131(41): 14624-14625
[50]  Carmi N, Balkhi S R, Breaker R R. Proc. Natl. Acad. Sci. USA, 1998, 95(5): 2233-2237
[51]  Li D, Shlyahovsky B, Elbaz J, Willner I. J. Am. Chem. Soc., 2007, 129(18): 5804-5805
[52]  Teller C, Shimron S, Willner I. Anal. Chem., 2009, 81(21): 9114-9119
[53]  Li T, Wang E K, Dong S J. Chem. Commun., 2008, 3654-3656
[54]  Liu J P, Chen W, Schwarer A P, Li H. Biochim. Biophys. Acta, 2010, 1805(1): 35-42
[55]  Kong D M, Jin Y W, Yin Y J, Mi H F, Shen H X. Anal. Bioanal. Chem., 2007, 388(3): 699-709
[56]  Xiao Y, Pavlov V, Niazov T, Dishon A, Kotler M, Willner I. J. Am. Chem. Soc., 2004, 126(24): 7430-7431
[57]  Pavlov V, Xiao Y, Gill R, Dishon A, Kotler M, Willner I. Anal. Chem., 2004, 76(7): 2152-2156
[58]  Berletch J B, Andrews L G, Tollefsbol T O. Methods Mol. Biol., 2007, 371: 73-80
[59]  Kolpashchikov D M. J. Am. Chem. Soc., 2008, 130(10): 2934-2935
[60]  Cuesta J, Read M A, Neidle S. Mini. Rev. Med. Chem., 2003, 3(1): 11-21
[61]  Kong D M, Wu J, Ma Y E, Shen H X. Analyst, 2008, 133(9): 1158-1160
[62]  Poon L C H, Methot S P, Morabi-Pazooki W, Pio F, Bennet A J, Sen D. J. Am. Chem. Soc., 2011, 133(6): 1877-1884
[63]  Thirstrup D, Baird G S. Anal. Chem., 2010, 82(6): 2498-2504
[64]  Nakayama S, Sintim H O. Mol. BioSyst., 2010, 6(1): 95-97

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