Citation: WANG Yan-Yan, JIANG Yan-Xia, ROGACH Andrey, SUN Shi-Gang. Effect of pH and Au Nanoparticles on Cytochrome c Investigated by Electrochemistry and UV-Vis Absorption Spectroscopy[J]. Acta Physico-Chimica Sinica, ;2012, 28(05): 1127-1133. doi: 10.3866/PKU.WHXB201203073
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In this paper, ld nanoparticles (NPs) with an average size of (4.7 ± 0.6) nm, capped with mercaptopropionic acid (MPA) ligand, are prepared. The effect of pH and Au NPs on cytochrome c (Cyt c) is investigated by electrochemistry and UV-Vis absorption spectroscopy. UV-Vis absorption spectra indicate that the structures of Cyt c and Cyt c-Au NPs complex do not change appreciably between pH=7.5 and pH=3.0, but their Soret band positions change markedly at pH=2.0, indicating that low pH value induces a conformational change in Cyt c. Cyclic voltammetry (CV) result shows that Au NPs capped with MPA enhance electron transfer between Cyt c and the electrode. The data also reveals that the biocompatibility of Au NPs is improved when citric acid ligand is replaced with MPA. The change in pH value causes a change of peak currents in CV and a shift of peak potential. When pH value deviates from 7.0, levels of electroactive Cyt c decrease. Significant pH change induces irreversible denaturing of Cyt c. The pH at which Cyt c-Au NPs complex denatures completely is one unit higher than that of Cyt c. Combining the results from UV-Vis spectroscopy and CV, we find that addition of Au NPs makes adsorbing state Cyt c more vulnerable to pH.
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-
[1]
(1) Verdoold, R.; Gill, R.; Ungureanu, F.; Molenaar, R.; Kooyman, R. P. H. Biosensors. Bioelectron. 2011, 27, 77.
- [2]
-
[3]
(3) Wang, W.; Zhang, T. J.; Zhang, D. W.; Li, H. Y.; Ma, Y. R.; Qi, L. M.; Zhou, Y. L.; Zhang, X. X. Talanta 2011, 84, 71.
-
[4]
(4) Sule. N.; Singh, R.; Srivastava. D. K. J. Biomed. Nanotechnol. 2008, 4, 463.
-
[5]
(5) Liu, Z.; Luo, L.; Dong, Y.; Weng, G.; Li, J. J. Colloid Interface Sci. 2011, 363, 182.
-
[6]
(6) Zhang, J.; Pearce, M. C.; Ting, B. P.; Ying, J. Y. Biosensors Bioelectron. 2011, 27, 53.
-
[7]
(7) Peled, D.; Naaman, R.; Daube, S. S. J. Phys. Chem. B 2010, 114, 8581.
-
[8]
(8) Ramallo-Lopez, J. M.; Giovanetti, L. J.; Requejo, F. G.; Lsaacs, S. R.; Shon, Y. S.; Salmeron, M. Phys. Rev. B 2006, 74, 073410.
-
[9]
(9) Wang, L.; Dang, Y. Q.; Zhang, M.; Sun, J.; Wu, Y. Q. Chemical Journal of Chinese Universities 2009, 30, 135. [王磊, 党永强, 张敏, 孙健, 吴玉清. 高等学校化学学报, 2009, 30, 135.]
-
[10]
(10) Loftus, A. F.; Reighard, K. P.; Kapourales, S. A.; Leopold, M. C. J. Am. Chem. Soc. 2008, 130, 1649.
-
[11]
(11) Doan, T. T.; Var , M. L.; Gerig, J. K.; Gulka, C. P.; Trawick, M. L.; Dattelbaum, J. D.; Leopold, M. C. J. Colloid Interface Sci. 2010, 352, 50.
-
[12]
(12) Hicks, J. F.; Seok-Shon, Y.; Murray, R. W. Langmuir 2002, 18, 2288.
-
[13]
(13) Han, N. N.; Wang, H.; Li, N.; Zhou, J. Z.; Lin, Z. H.; Wu, D.; Wan, G. J. Acta Phys. -Chim. Sin. 2011, 27, 468. [韩楠楠, 王慧, 栗娜, 周剑章, 林仲华, 吴迪, 万国江. 物理化学学报, 2011, 27, 468.]
-
[14]
(14) Li, N.; Zhou, J. Z.; Lin, L. L.; Han, N. N.; Lin, Z. H. Acta Phys. -Chim. Sin. 2010, 26, 2468. [栗娜, 周剑章, 林玲玲, 韩楠楠, 林仲华. 物理化学学报, 2010, 26, 2468.]
-
[15]
(15) Wan, P.; Wang, Y.; Jiang, Y.; Xu, H.; Zhang, X. Adv. Mater. 2009, 21, 4362.
-
[16]
(16) Liu, H. Q.; Tian, Y.; Deng, Z. F. Langmuir 2007, 23, 9487.
-
[17]
(17) Wang, W.; Waldeck, D. H. J. Phys. Chem. C 2008, 112, 1351.
-
[18]
(18) Abad, J. M.; Mertens, S. F. L.; Pita, M.; Fernandez, V. M.; Schiffrin, D. J. J. Am. Chem. Soc. 2005, 127, 5689.
-
[19]
(19) Beissenhirtz, M. K.; Scheller, F. W.; Lisdat, F. Anal. Chem. 2004, 76, 4665.
-
[20]
(20) Munakata, H.; Oyamatsu, D.; Kuwabata, S. Langmuir 2004, 20, 10123.
- [21]
-
[22]
(22) Caban, K.; Offenhäusser, A.; Mayer, D. Phys. Status Solidi A 2009, 206, 489.
-
[23]
(23) Laviron, E. J. Electroanal. Chem. 1979, 100, 263.
-
[24]
(24) Jensen, P. S.; Chi, Q. J.; Grumsen, F. B.; Abad, J. M.; Horsewell, A.; Schiffrin, D. J.; UIstrup, J. J. Phys. Chem. C 2007, 111, 6124.
-
[25]
(25) Xiang, C.; Zou, Y.; Sun, L.; Xu, F. Talanta 2007, 74, 206.
-
[26]
(26) Keating, C. D.; Kovaleski, K. K.; Natan, M. J. J. Phys. Chem. B 1998, 102, 9414.
-
[27]
(27) Xiang, C.; Zou, Y.; Sun, L. X.; Xu, F. Electrochem. Commun. 2008, 10, 38.
- [28]
-
[29]
(29) Nakano, K; Yoshitake, T.; Yamashita, Y.; Bowden, E. F. Langmuir 2007, 23, 6270.
-
[30]
(30) Jiang, X.; Shang, L.; Wang, Y. L.; Dong, S. J. Biomacromolecules 2005, 6, 3030.
-
[31]
(31) Cheng, Y. Y.; Chang, H. C.; Hoops, G.; Su, M. C. J. Am. Soc. Chem. 2004, 126, 10828.
-
[32]
(32) Kasmi, A. E.; Wallace, J. M.; Bowden, E. F.; Binet, S. M.; Linderman, R. J. J. Am. Chem. Soc. 1998, 120, 225.
-
[33]
(33) Murgida, D. H.; Hildebrandt, P.; Wei, J.; He, Y. F.; Liu, H.; Waldeck, D. H. J. Phys. Chem. B 2004, 108, 2261.
-
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