Clinical proteomics of myeloid leukemia

被引:12
作者
Hjelle, Sigrun M. [1 ]
Forthun, Rakel B. [1 ]
Haaland, Ingvild [1 ]
Reikvam, Hakon [1 ]
Sjoholt, Gry [3 ]
Bruserud, Oystein [1 ,2 ]
Gjertsen, Bjorn T. [1 ,2 ]
机构
[1] Univ Bergen, Haukeland Univ Hosp, Inst Med, Hematol Sect, N-5021 Bergen, Norway
[2] Haukeland Hosp, Dept Med, Hematol Sect, N-5021 Bergen, Norway
[3] Bergen Univ Coll, Dept Aquaculture Chem & Bioengn, N-5020 Bergen, Norway
来源
GENOME MEDICINE | 2010年 / 2卷
关键词
DIFFERENCE GEL-ELECTROPHORESIS; CODED AFFINITY TAGS; ABSOLUTE QUANTIFICATION; QUANTITATIVE PROTEOMICS; MYELOMONOCYTIC LEUKEMIA; MASS-SPECTROMETRY; PROTEIN MIXTURES; RAS MUTATIONS; IMATINIB; KINASE;
D O I
10.1186/gm162
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Myeloid leukemias are a heterogeneous group of diseases originating from bone marrow myeloid progenitor cells. Patients with myeloid leukemias can achieve long-term survival through targeted therapy, cure after intensive chemotherapy or short-term survival because of highly chemoresistant disease. Therefore, despite the development of advanced molecular diagnostics, there is an unmet need for efficient therapy that reflects the advanced diagnostics. Although the molecular design of therapeutic agents is aimed at interacting with specific proteins identified through molecular diagnostics, the majority of therapeutic agents act on multiple protein targets. Ongoing studies on the leukemic cell proteome will probably identify a large number of new biomarkers, and the prediction of response to therapy through these markers is an interesting avenue for future personalized medicine. Mass spectrometric protein detection is a fundamental technique in clinical proteomics, and selected tools are presented, including stable isotope labeling with amino acids in cell culture (SILAC), isobaric tags for relative and absolute quantification (iTRAQ) and multiple reaction monitoring (MRM), as well as single cell determination. We suggest that protein analysis will play not only a supplementary, but also a prominent role in future molecular diagnostics, and we outline how accurate knowledge of the molecular therapeutic targets can be used to monitor therapy response.
引用
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页数:10
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共 67 条
[1]   Multi-site assessment of the precision and reproducibility of multiple reaction monitoring-based measurements of proteins in plasma [J].
Addona, Terri A. ;
Abbatiello, Susan E. ;
Schilling, Birgit ;
Skates, Steven J. ;
Mani, D. R. ;
Bunk, David M. ;
Spiegelman, Clifford H. ;
Zimmerman, Lisa J. ;
Ham, Amy-Joan L. ;
Keshishian, Hasmik ;
Hall, Steven C. ;
Allen, Simon ;
Blackman, Ronald K. ;
Borchers, Christoph H. ;
Buck, Charles ;
Cardasis, Helene L. ;
Cusack, Michael P. ;
Dodder, Nathan G. ;
Gibson, Bradford W. ;
Held, Jason M. ;
Hiltke, Tara ;
Jackson, Angela ;
Johansen, Eric B. ;
Kinsinger, Christopher R. ;
Li, Jing ;
Mesri, Mehdi ;
Neubert, Thomas A. ;
Niles, Richard K. ;
Pulsipher, Trenton C. ;
Ransohoff, David ;
Rodriguez, Henry ;
Rudnick, Paul A. ;
Smith, Derek ;
Tabb, David L. ;
Tegeler, Tony J. ;
Variyath, Asokan M. ;
Vega-Montoto, Lorenzo J. ;
Wahlander, Asa ;
Waldemarson, Sofia ;
Wang, Mu ;
Whiteaker, Jeffrey R. ;
Zhao, Lei ;
Anderson, N. Leigh ;
Fisher, Susan J. ;
Liebler, Daniel C. ;
Paulovich, Amanda G. ;
Regnier, Fred E. ;
Tempst, Paul ;
Carr, Steven A. .
NATURE BIOTECHNOLOGY, 2009, 27 (07) :633-U85
[2]   Expression proteomics of acute promyelocytic leukaemia cells treated with methotrexate [J].
Agarwal, Nitin Kumar ;
Mueller, Gerhard Anton ;
Mueller, Claudia ;
Streich, Jan-Henrick ;
Asif, Abdul Rahman ;
Dihazi, Hassan .
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS, 2010, 1804 (04) :918-928
[3]   A novel experimental design for comparative two-dimensional gel analysis: Two-dimensional difference gel electrophoresis incorporating a pooled internal standard [J].
Alban, A ;
David, SO ;
Bjorkesten, L ;
Andersson, C ;
Sloge, E ;
Lewis, S ;
Currie, I .
PROTEOMICS, 2003, 3 (01) :36-44
[4]   Mass Cytometry: Technique for Real Time Single Cell Multitarget Immunoassay Based on Inductively Coupled Plasma Time-of-Flight Mass Spectrometry [J].
Bandura, Dmitry R. ;
Baranov, Vladimir I. ;
Ornatsky, Olga I. ;
Antonov, Alexei ;
Kinach, Robert ;
Lou, Xudong ;
Pavlov, Serguei ;
Vorobiev, Sergey ;
Dick, John E. ;
Tanner, Scott D. .
ANALYTICAL CHEMISTRY, 2009, 81 (16) :6813-6822
[5]   Kinase substrate protein microarray analysis of human colon cancer and hepatic metastasis [J].
Belluco, C ;
Mammano, E ;
Petricoin, E ;
Prevedello, L ;
Calvert, V ;
Liotta, L ;
Nitti, D ;
Lise, M .
CLINICA CHIMICA ACTA, 2005, 357 (02) :180-183
[6]   PROPOSALS FOR CLASSIFICATION OF ACUTE LEUKEMIAS [J].
BENNETT, JM ;
CATOVSKY, D ;
DANIEL, MT ;
FLANDRIN, G ;
GALTON, DAG ;
GRALNICK, HR ;
SULTAN, C .
BRITISH JOURNAL OF HAEMATOLOGY, 1976, 33 (04) :451-&
[7]   Subclassification of patients with acute myelogenous leukemia based on chemokine responsiveness and constitutive chemokine release by their leukemic cells [J].
Bruserud, Oystein ;
Ryningen, Anita ;
Olsnes, Astrid Marta ;
Stordrange, Laila ;
Oyan, Anne Margrete ;
Kalland, Karl Henning ;
Gjertsen, Bjorn Tore .
HAEMATOLOGICA, 2007, 92 (03) :332-341
[8]   Amount of spontaneous apoptosis detected by Bax/Bcl-2 ratio predicts outcome in acute myeloid leukemia (AML) [J].
Del Poeta, G ;
Venditti, A ;
Del Principe, MI ;
Maurillo, L ;
Buccisano, F ;
Tamburini, A ;
Cox, MC ;
Franchi, A ;
Bruno, A ;
Mazzone, C ;
Panetta, P ;
Suppo, G ;
Masi, M ;
Amadori, S .
BLOOD, 2003, 101 (06) :2125-2131
[9]   Efficacy and safety of a specific inhibitor of the BCR-ABL tyrosine kinase in chronic myeloid leukemia. [J].
Druker, BJ ;
Talpaz, M ;
Resta, DJ ;
Peng, B ;
Buchdunger, E ;
Ford, JM ;
Lydon, NB ;
Kantarjian, H ;
Capdeville, R ;
Ohno-Jones, S ;
Sawyers, CL .
NEW ENGLAND JOURNAL OF MEDICINE, 2001, 344 (14) :1031-1037
[10]   Juvenile myelomonocytic leukemia and chronic myelomonocytic leukemia [J].
Emanuel, P. D. .
LEUKEMIA, 2008, 22 (07) :1335-1342