Pre-analytical stability of the plasma proteomes based on the storage temperature

被引:36
作者
Pasella, Sara [1 ,2 ]
Baralla, Angela [1 ,2 ]
Canu, Elisabetta [1 ,2 ]
Pinna, Sara [1 ,2 ]
Vaupel, James [3 ]
Deiana, Marta [4 ]
Franceschi, Claudio [5 ]
Baggio, Giovannella [6 ]
Zinellu, Angelo [1 ,2 ]
Sotgia, Salvatore [1 ,2 ]
Castaldo, Giuseppe [7 ]
Carru, Ciriaco [1 ,2 ]
Deiana, Luca [1 ,2 ,8 ,9 ]
机构
[1] Univ Sassari, Dipartimento Sci Biomed, Biochim Clin, I-07100 Sassari, Italy
[2] Univ Sassari, Dipartimento Sci Biomed, Biol Mol Clin, I-07100 Sassari, Italy
[3] Max Planck Inst Demog Res, Rostock, Germany
[4] Associaz Isola Centenari, Sassari, Italy
[5] Univ Bologna, Dipartimento Patol Sperimentale, I-40126 Bologna, Italy
[6] Azienda Osped Padova, Padua, Italy
[7] Univ Naples Federico II, Dipartimento Biochim & Biotecnol Med, Naples, Italy
[8] Univ Sassari, Azienda Osped, I-07100 Sassari, Italy
[9] Univ Sassari, Ctr Biotechnol Dev & Biodivers Res, I-07100 Sassari, Italy
关键词
Two-dimensional electrophoresis; Mass spectrometry; Plasma proteome; Specimen collection and handling; Storage temperature; MASS-SPECTROMETRY; SAMPLE PREPARATION; HUMAN SERUM; BLOOD; COLLECTION; SOFTWARE; PROTEINS; ALBUMIN; PEPTIDE; IMPACT;
D O I
10.1186/1477-5956-11-10
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Background: This study examined the effect of storage temperature on the protein profile of human plasma. Plasma samples were stored for 13 days at -80 degrees C, -20 degrees C, +4 degrees C and room temperature (20-25 degrees C) prior to proteomic analysis. The proteomic comparisons were based on the differences of mean intensity values of protein spots between fresh plasma samples (named "time zero") and plasma samples stored at different temperatures. To better understand the thermally induced biochemical changes that may affect plasma proteins during storage we identified proteins with different expressions with respect to the time zero sample. Results: Using two-dimensional electrophoresis followed by MALDI-TOF MS and /or LC-MS/MS 20 protein spots representing 10 proteins were identified with significant differences in abundance when stored at different temperatures. Our results, in agreement with various authors, indicate that during storage for a short period (13 days) at four different temperatures plasma proteins were more affected by degradation processes at +4 degrees C compared to the other temperatures analysed. However, we founded that numerous protein spots (vitamin D binding protein, alpha-1-antitrypsin, serotransferrin, apoplipoprotein A-I, apolipoprotein E, haptoglobin and complement factor B) decrease in abundance with increasing temperature up to 4 degrees C, but at room temperature their intensity mean values are similar to those of time zero and -80 degrees C. We hypothesize that these proteins are labile at 4 degrees C, but at the same time they are stable at room temperature (20-25 degrees C). Furthermore we have grouped the proteins based on their different sensitivity to the storage temperature. Spots of serum albumin, fibrinogen gamma chain and haptoglobin are more resistant to the higher temperatures tested, as they have undergone changes in abundance only at room temperature; conversely, other spots of serum albumin, fibrinogen beta chain and serotransferrin are more labile as they have undergone changes in abundance at all temperatures except at -80 degrees C. Conclusions: Although there are many studies concerning protein stability of clinical samples during storage these findings may help to provide a better understanding of the changes of proteins induced by storage temperature.
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页数:10
相关论文
共 34 条
[21]   Investigating diversity in human plasma proteins [J].
Nedelkov, D ;
Kiernan, UA ;
Niederkofler, EE ;
Tubbs, KA ;
Nelson, RW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (31) :10852-10857
[22]   Stability study of 81 analytes in human whole blood, in serum and in plasma [J].
Oddoze, Christiane ;
Lombard, Elise ;
Portugal, Henri .
CLINICAL BIOCHEMISTRY, 2012, 45 (06) :464-469
[23]  
Omenn GS, 2006, EXPLORING HUMAN PLAS, P17
[24]   Mass spectrometry-based clinical proteomics [J].
Pusch, W ;
Flocco, MT ;
Leung, SM ;
Thiele, H ;
Kostrzewa, M .
PHARMACOGENOMICS, 2003, 4 (04) :463-476
[25]   HUPO Plasma Proteome Project specimen collection and handling: Towards the standardization of parameters for plasma proteome samples [J].
Rai, AJ ;
Gelfand, CA ;
Haywood, BC ;
Warunek, DJ ;
Yi, JZ ;
Schuchard, MD ;
Mehigh, RJ ;
Cockrill, SL ;
Scott, GBI ;
Tammen, H ;
Schulz-Knappe, P ;
Speicher, DW ;
Vitzthum, F ;
Haab, BB ;
Siest, G ;
Chan, DW .
PROTEOMICS, 2005, 5 (13) :3262-3277
[26]   Effects of preanalytical variables on peptide and protein measurements in human serum and plasma: implications for clinical proteomics [J].
Rai, Alex J. ;
Vitzthum, Frank .
EXPERT REVIEW OF PROTEOMICS, 2006, 3 (04) :409-426
[27]   Challenges in mass spectrometry-based proteomics [J].
Reinders, J ;
Lewandrowski, U ;
Moebius, J ;
Wagner, Y ;
Sickmann, A .
PROTEOMICS, 2004, 4 (12) :3686-3703
[28]   Comparison of PDQuest and Progenesis software packages in the analysis of two-dimensional electrophoresis gels [J].
Rosengren, AT ;
Salmi, JM ;
Aittokallio, T ;
Westerholm, J ;
Lahesmaa, R ;
Nyman, TA ;
Nevalainen, OS .
PROTEOMICS, 2003, 3 (10) :1936-1946
[29]   Plasma storage at-80°C does not protect matrix metalloproteinase-9 from degradation [J].
Rouy, D ;
Ernens, I ;
Jeanty, C ;
Wagner, DR .
ANALYTICAL BIOCHEMISTRY, 2005, 338 (02) :294-298
[30]   In-gel digestion for mass spectrometric characterization of proteins and proteomes [J].
Shevchenko, Andrej ;
Tomas, Henrik ;
Havlis, Jan ;
Olsen, Jesper V. ;
Mann, Matthias .
NATURE PROTOCOLS, 2006, 1 (06) :2856-2860