血清磷酸化肽的分离富集和质谱定量及其作为潜在肿瘤标志物的评价

翟贵金 吴魁 汪福意

引用本文: 翟贵金,  吴魁,  汪福意. 血清磷酸化肽的分离富集和质谱定量及其作为潜在肿瘤标志物的评价[J]. 色谱, 2016, 34(12): 1192-1198. doi: 10.3724/SP.J.1123.2016.08037 shu
Citation:  ZHAI Guijin,  WU Kui,  WANG Fuyi. Separation, enrichment, mass spectrometric quantification and evaluation of serum phosphopeptides as potential tumor biomarkers[J]. Chinese Journal of Chromatography, 2016, 34(12): 1192-1198. doi: 10.3724/SP.J.1123.2016.08037 shu

血清磷酸化肽的分离富集和质谱定量及其作为潜在肿瘤标志物的评价

  • 基金项目:

    国家自然科学基金项目(21135006,21127901,21275148,21575145,21321003);国家重点基础研究发展计划项目(2013CB531805).

摘要: 血清中磷酸化肽种类和浓度的变化既能反映人体内蛋白质水解酶活性的变化,又能反映蛋白质翻译后磷酸化的水平,业已成为肿瘤标志物寻找和发现的重要目标。因而,血清中磷酸化肽的鉴定及其定量分析在具有临床应用价值的肿瘤标志物的筛选与发现中起着重要作用。由于血清中的内源性磷酸化肽丰度极低,在质谱分析中的离子化效率不高,且受到来自高丰度非磷酸化肽和蛋白质的信号抑制及干扰,血清中磷酸化肽的质谱定量分析是分析化学研究中的一个巨大挑战。文章对血清磷酸化肽的分离富集、质谱定量分析及其作为肿瘤标志物的筛选和评价等3个方面的研究进展进行总结、评述,并展望该领域的未来研究趋势和应用前景。

English

    1. [1] Hunter T. Cell, 2000, 100:113

    2. [2] Paradela A, Albar J P. J Proteome Res, 2008, 7:1809

    3. [3] Reinders J, Sickmann A. Proteomics, 2005, 5:4052

    4. [4] Thingholm T E, Jensen O N, Larsen M R. Proteomics, 2009, 9:1451

    5. [5] Zanivan S, Meves A, Behrendt K, et al. Cell Rep, 2013, 3:552

    6. [6] Zhang Y Y, Fonslow B R, Shan B, et al. Chem Rev, 2013, 113:2343

    7. [7] He K, Wen X Y, Li A L, et al. PLoS One, 2013, 8:e63724

    8. [8] Villanueva J, Martorella A J, Lawlor K, et al. Mol Cell Proteomics, 2006, 5:1840

    9. [9] Liotta L A, Petricoin E F. J Clin Invest, 2006, 116:26

    10. [10] Lee H J, Na K, Kwon M S, et al. Proteomics, 2009, 9:3395

    11. [11] Jensen O N. Nat Rev Mol Cell Bio, 2006, 7:391

    12. [12] Zhou W D, Ross M M, Tessitore A, et al. J Proteome Res, 2009, 8:5523

    13. [13] Ficarro S B, McCleland M L, Stukenberg P T, et al. Nat Biotechnol, 2002, 20:301

    14. [14] Lu Z D, Duan J C, He L, et al. Anal Chem, 2010, 82:7249

    15. [15] Zou Y, Jiang W H, Zou L J, et al. Chinese Journal of Chromatography, 2013, 31(4):367 邹瑶, 姜武辉, 邹丽娟, 等. 色谱, 2013, 31(4):367

    16. [16] Anderson N L, Anderson N G. Mol Cell Proteomics, 2002, 1:845

    17. [17] Oda Y, Nagasu T, Chait B T. Nat Biotechnol, 2001, 19:379

    18. [18] Lin H Z, Deng C H. Talanta, 2016, 149:91

    19. [19] Zhou H J, Ye M L, Dong J, et al. J Proteome Res, 2008, 7:3957

    20. [20] Li X S, Yuan B F, Feng Y Q. TrAC-Trends Anal Chem, 2016, 78:70

    21. [21] Posewitz M C, Tempst P. Anal Chem, 1999, 71:2883

    22. [22] Trojer L, Stecher G, Feuerstein I, et al. J Chromatogr A, 2005, 1079:197

    23. [23] Zhao Y Y, Guo Z M, Li X L, et al. Chinese Journal of Chromatography, 2013, 31(8):763 赵艳艳, 郭志谋, 李秀玲, 等. 色谱, 2013, 31(8):763

    24. [24] Kokubu M, Ishihama Y, Sato T, et al. Anal Chem, 2005, 77:5144

    25. [25] Cirulli C, Chiappetta G, Marino G, et al. Anal Bioanal Chem, 2008, 392:147

    26. [26] Li Y, Lin H Q, Deng C H, et al. Proteomics, 2008, 8:238

    27. [27] Li X S, Pan Y N, Zhao Y, et al. J Chromatogr A, 2013, 1315:61

    28. [28] Zhou H J, Xu S Y, Ye M L, et al. J Proteome Res, 2006, 5:2431

    29. [29] Feng S, Ye M L, Zhou H J, et al. Mol Cell Proteomics, 2007, 6:1656

    30. [30] Yu Z Y, Han G H, Sun S T, et al. Anal Chim Acta, 2009, 636:34

    31. [31] Zhou H J, Ye M L, Dong J, et al. Nat Protoc, 2013, 8:461

    32. [32] Li X S, Xu L D, Zhu G T, et al. Analyst, 2012, 137:959

    33. [33] Zhu J, Wang F J, Cheng K, et al. J Proteomics, 2013, 78:389

    34. [34] Hu L H, Zhou H J, Li Y H, et al. Anal Chem, 2009, 81:94

    35. [35] Ji L Y, Wu J H, Luo Q, et al. Anal Chem, 2012, 84:2284

    36. [36] Kweon H K, Hakansson K. Anal Chem, 2006, 78:1743

    37. [37] Wu J H, Li X S, Zhao Y, et al. Chem Commun, 2010, 46:9031

    38. [38] Min Q H, Zhang X X, Zhang H Y, et al. Chem Commun, 2011, 47:11709

    39. [39] Lin B, Li T, Zhao Y, et al. J Chromatogr A, 2008, 1192:95

    40. [40] Lu S, Luo Q, Li X C, et al. Analyst, 2010, 135:2858

    41. [41] Liu H L, Yang T Y, Dai J Y, et al. Analyst, 2015, 140:6652

    42. [42] Yao J, Sun N, Deng C, et al. Talanta, 2016, 150:296

    43. [43] Zhu G T, He X M, Chen X, et al. J Chromatogr A, 2016, 1437:137

    44. [44] Lu Z D, Ye M M, Li N, et al. Angew Chem Int Edit, 2010, 49:1862

    45. [45] Ong S E, Blagoev B, Kratchmarova I, et al. Mol Cell Proteomics, 2002, 1:376

    46. [46] Gygi S P, Rist B, Gerber S A, et al. Nat Biotechnol, 1999, 17:994

    47. [47] Ross P L, Huang Y L N, Marchese J N, et al. Mol Cell Proteomics, 2004, 3:1154

    48. [48] Thompson A, Schafer J, Kuhn K, et al. Anal Chem, 2003, 75:1895

    49. [49] Boersema P J, Foong L Y, Ding V M Y, et al. Mol Cell Proteomics, 2010, 9:84

    50. [50] Hsu J L, Huang S Y, Chow N H, et al. Anal Chem, 2003, 75:6843

    51. [51] Wu C J, Chen Y W, Tai J H, et al. J Proteome Res, 2011, 10:1088

    52. [52] Chen X Q, Li S Y, Zhang X X, et al. Nanoscale, 2015, 7:5815

    53. [53] Chakraborty A, Regnier F E. J Chromatogr A, 2002, 949:173

    54. [54] Ji J Y, Chakraborty A, Geng M, et al. J Chromatogr B, 2000, 745:197

    55. [55] Zhang R J, Sioma C S, Wang S H, et al. Anal Chem, 2001, 73:5142

    56. [56] Kindy J M, Taraszka J A, Regnier F E, et al. Anal Chem, 2002, 74:950

    57. [57] Xun Z Y, Sowell R A, Kaufman T C, et al. Mol Cell Proteomics, 2008, 7:1191

    58. [58] Du Z F, Luo Q, Yang L P, et al. J Am Chem Soc, 2014, 136:2948

    59. [59] Zhai G J, Wu X Y, Luo Q, et al. Talanta, 2014, 125:411

    60. [60] Gerber S A, Rush J, Stemman O, et al. P Natl Acad Sci USA, 2003, 100:6940

    61. [61] Zhang X W, Li L, Wei D, et al. Trends Biotechnol, 2007, 25:166

    62. [62] Diamandis E P. J Natl Cancer I, 2010, 102:1462

    63. [63] Qin H Q, Wang F J, Wang P Y, et al. Chem Commun, 2012, 48:961

    64. [64] Min Q H, Chen X Q, Zhang X X, et al. Lab Chip, 2013, 13:3853

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  • 收稿日期:  2016-08-30
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