全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
化学进展  2012 

金属蛋白的提取分离技术

, PP. 834-843

Keywords: 金属蛋白,电泳,激光剥蚀电感耦合等离子体质谱,同步辐射X荧光分析

Full-Text   Cite this paper   Add to My Lib

Abstract:

微量元素在生命活动中起着十分重要的作用。体内微量元素(主要指金属元素)水平的反常、存在形态的变化以及特定的金属酶、金属蛋白的表达、定位、结构和功能等方面的变化常常与某些病理状态相关,甚至是关键的病理环节,所以对生物体系中金属蛋白的定位、含量、化学形态及其结构的高通量分析是生命科学研究领域的重要课题。本文介绍并比较了各种金属蛋白的提取、分离方法(包括高效液相、毛细管电泳和电泳技术)及与之对应的元素分析技术(包括激光剥蚀(LA)-等离子体电感耦合质谱(ICP-MS)、同步辐射(SR)-X射线荧光(XRF)技术等),主要介绍了各种电泳方法在金属蛋白分离中的应用。同时评价各种方法对蛋白结合金属的影响,针对方法的局限性提出了可能的解决办法。

References

[1]  Finney L A, O'Halloran T V. Science, 2003, 300: 931—936
[2]  Haraguchi H. J. Anal. At. Spectrom., 2004, 19: 5—14
[3]  Lobinski R, Schaumloffel D, Szpunar J. Mass Spectrom. Rev., 2006, 25(2): 255—289
[4]  Sussulini A, Garcia G S, Mesko M F, Moraes D P, Flores E M M, Perez C A, Arruda M A Z. Microchim. Acta, 2007, 158: 173—180
[5]  高愈希(Gao Y X),陈春英(Chen C Y),柴之芳(Chai Z F). 核化学与放射化学(Journal of Nuclear and Radiochemistry), 2008, 30(1): 1—16
[6]  高明霞(Gao M X), 关霞(Guan X), 洪广峰(Hong G F), 张祥民(Zhang X M). 色谱(Chinese Journal of Charomatography), 2009, 27(5): 551—555
[7]  江桂斌(Jang G B),何滨(He B). 中国科学基金(Bulletin of National Natural Science Foundation of China), 2005, 3: 151—155
[8]  Kühbacher M, Weseloh G, Thomzig A, Bertelsmann H, Falkenberg G, Radtke M, Riesemeier H, Kyriakopoulos A, Beekes M, Behne D. X-Ray Spectrom., 2005, 34: 112—117
[9]  Weseloh G, Kühbacher M, Bertelsmann H, Ozaslan M, Kyriakopoulos A, Knochel A. J. Radioanal. Nucl. Ch., 2004, 259(3): 473—477
[10]  Guillaume B, Tastet L, Pecheyran C, Bouyssiere B, Donard O, Grimaud R, Lobinski R. J. Anal. At. Spectrom., 2005, 20: 493—499
[11]  Tomlinson K. Doctoral Dissertation of University of Sheffield. 2002
[12]  Bertrand M, Weber G, Schoefs B. Trends Anal. Chem., 2003, 22: 254—262
[13]  Garcia J S, de Magalhaes C S, Arruda M A Z. Talanta, 2006, 69: 1—15
[14]  Becker J S, Zoriy M, Przybylski M, Becker S. Int. J. Mass Spectrom., 2007, 261: 68—73
[15]  Tastet L, Schaumloffel D, Lobinski R. J. Anal. At. Spectrom., 2008, 23: 309—317
[16]  Santos F A, Lima P M, Neves R C F, Moraes P M, Pérez C A, Silva M O A, Arruda M A Z, Castro G R, de Magalhes Padilha P. Microchim. Acta, 2011, 73: 43—49
[17]  Lima P M, Neves R C F, dos Santos F A, Pérez C A, da Silva M O A, Arruda M A Z, de Castro G R, Padilha P M. Talanta, 2010, 82: 1052—1056
[18]  Sevcenco A M, Krijger G C, Pinkse M W H, Verhaert P D E M, Hagen W R, Hagedoorn P L. J. Biol. Inorg. Chem., 2009, 14: 631—640
[19]  Fan T W M, Pruszkowski E, Shuttleworth S. J. Anal. At. Spectrom., 2002, 17(12): 1621—1623
[20]  Lustig S, Lampaert D, de Cremer K, de Kimpe G, Cornelis R, Schramel P. J. Anal. At. Spectrom., 1999, 14: 1357—1362
[21]  Jiménez M S, Rodriguez L, Gomez M T, Castillo G. Talanta, 2010, 81: 241—247
[22]  Raab A, Pioselli B, Munro C, Thomas-Oates J, Feldmann J. Electrophoresis, 2009, 30(2): 303—14
[23]  Marshall P, Heudi O, Bains S, Freeman H N, Abou-Shakra F, Reardon K. Analyst, 2002, 127: 459—461
[24]  Wind M, Feldman I, Jakubowski N, Lehman W D. Electrophoresis, 2003, 24: 1276—1280
[25]  Gao Y X, Chen C Y, Chai Z F. J. Anal. At. Spectrom., 2007, 22: 856—866
[26]  Finney L, Chishti Y, Khare T, Giometti C, Levina A, Lay P A, Vogt S. ACS Chem. Biol., 2010, 5(6): 577—587
[27]  Szpunar J. Analyst, 2005, 130: 442—465
[28]  Ortega R. Metallomics, 2009, 1: 137—141
[29]  Polatajko A, Azzolini M, Feldmann I, Stuezel T, Jakubowski N. J. Anal. At. Spectrom., 2007, 22: 878—887
[30]  De Magalhǎes C S, Arruda M A Z. Talanta, 2007, 71: 1958—1963
[31]  Szpunar J. Analyst, 2000, 125: 963—988
[32]  厉欣(Li X), 陈学国(Chen X G), 孔亮(Kong L). 生命科学(Chinese Bulletin of Life Sciences), 2003, 15(2): 95—100
[33]  Verbi F M, Arruda S C C, Rodriguez A P M, Perez C A, Arruda M A Z. J. Biochem. Biophys. Methods, 2005, 62: 97—109
[34]  She Y M, Narindrasorasak S, Yang S Y, Spitale N, Roberts E A, Sarkar B. Mol. Cell Proteomics, 2003: 1306—1318
[35]  Ma R, McLeod C W, Tomlinson K, Poole P K. Electrophoresis, 2004, 25(15): 2469—2477
[36]  Polatajko A, Feldmann I, Hayen H, Jakubowski N. Metallomics, 2011, 3: 1001—1008
[37]  Gao Y X, Liu Y B, Chen C Y, Li B, He W, Huang Y Y, Chai Z F. J. Anal. At. Spectrom., 2005, 20: 473—475
[38]  Homma-Takeda S, Shinyashiki M, Nakai I, Tohyama C, Kumagai Y, Shimojo N. Anal. Lett., 1996, 29(4): 601—611
[39]  Gao Y X, Chen C Y, Chai Z F, Zhao J J, Liu J, Zhang P Q, He W, Huang Y Y. Analyst, 2002, 127: 1700—1704
[40]  Li L N, Wu G, Sun J, Li B, Li Y F, Chen C Y, Chai Z F, Iida A, Gao Y X. J. Toxicol. Env. Heal. A, 2008, 71: 1266—1269
[41]  Ballihaut G, Pecheyran C, Mounicou S, Preud'homme H, Grimaud R, Lobinski R. Trends Anal. Chem., 2007, 26(3): 183—190
[42]  Chassaigne H, Chery C C, Bordin G, Vanhaecke F, Rodriguez A R. J. Anal. At. Spectrom., 2004, 19: 85—89
[43]  Becker J S, Zoriy M V, Pickhardt C, Palomero-Gallagher N. Anal. Chem., 2005, 77: 3208—3216
[44]  Becker S J, Boulyga S F, Becker J S, Pickhardt C, Damoc E, Przybylski M. Int. J. Mass Spectrom., 2003, 228: 985—997
[45]  Becker J S, Zoriy M, Becker J S, Pickhardt C, Przybylski M. J. Anal. At. Spectrom., 2004, 19: 149—152
[46]  Becker S J, Zoriy M, Krause-Buchholz U, Becker J S, Pickhardt C, Przybylski M, Pompe W, Rodel G. J. Anal. At. Spectrom., 2004, 19: 1236—1243
[47]  Chéry C C, Moens L, Cornelis R, Vanhaecke F. Pure Appl. Chem., 2006, 78(1): 91—103
[48]  Becker J S, Zoriy M, Wu B, Matusch A, Becker J S. J. Anal. At. Spectrom., 2008, 23: 1275—1280
[49]  Lustig S, de Kimpe J, Cornelis R, Schramel P, Michalke B. Electrophoresis, 1999, 20: 1627—1633
[50]  Wang M, Feng W Y, Lu W W, Wang B, Zhu M T, Wang Y, Yuan H, Zhao Y L, Chai Z F. Anal. Chem., 2007, 79: 9128—9134
[51]  Binet M R B, Ma R, McLeod C W, Poole R K. Anal. Biochem., 2003, 318: 30—38

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133