Novel MITF targets identified using a two-step DNA microarray strategy

被引:202
作者
Hoek, Keith S. [1 ]
Schlegel, Natalie C. [1 ]
Eichhoff, Ossia M. [1 ]
Widmer, Daniel S. [1 ]
Praetorius, Christian [2 ]
Einarsson, Steingrimur O. [2 ,3 ]
Valgeirsdottir, Sigridur [3 ]
Bergsteinsdottir, Kristin [2 ]
Schepsky, Alexander [2 ,4 ]
Dummer, Reinhard [1 ]
Steingrimsson, Eirikur [2 ]
机构
[1] Univ Zurich Hosp, Dept Dermatol, CH-8091 Zurich, Switzerland
[2] Univ Iceland, Fac Med, Dept Biochem & Mol Biol, Reykjavik, Iceland
[3] NimbleGen Syst Iceland LLc, Reykjavik, Iceland
[4] Marie Curie Res Inst, Signalling & Dev Lab, Surrey, England
关键词
microphthalmia-associated transcription factor; microarray; melanoma; melanocyte; transcription; correlation;
D O I
10.1111/j.1755-148X.2008.00505.x
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Malignant melanoma is a chemotherapy-resistant cancer with high mortality. Recent advances in our understanding of the disease at the molecular level have indicated that it shares many characteristics with developmental precursors to melanocytes, the mature pigment-producing cells of the skin and hair follicles. The development of melanocytes absolutely depends on the action of the microphthalmia-associated transcription factor (MITF). MITF has been shown to regulate a broad variety of genes, whose functions range from pigment production to cell-cycle regulation, migration and survival. However, the existing list of targets is not sufficient to explain the role of MITF in melanocyte development and melanoma progression. DNA microarray analysis of gene expression offers a straightforward approach to identify new target genes, but standard analytical procedures are susceptible to the generation of false positives and require additional experimental steps for validation. Here, we introduce a new strategy where two DNA microarray-based approaches for identifying transcription factor targets are combined in a cross-validation protocol designed to help control false-positive generation. We use this two-step approach to successfully re-identify thirteen previously recorded targets of MITF-mediated upregulation, as well as 71 novel targets. Many of these new targets have known relevance to pigmentation and melanoma biology, and further emphasize the critical role of MITF in these processes.
引用
收藏
页码:665 / 676
页数:12
相关论文
共 81 条
[61]   Microphthalmia transcription factor induces both retinal pigmented epithelium and neural crest melanocytes from neuroretina cells [J].
Planque, N ;
Raposo, G ;
Leconte, L ;
Anezo, O ;
Martin, P ;
Saule, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (40) :41911-41917
[62]   Galectin-3 expression is associated with tumor progression and pattern of sun exposure in melanoma [J].
Prieto, Victor G. ;
Mourad-Zeidan, Alexandra A. ;
Melnikova, Vladislava ;
Johnson, Marcella M. ;
Lopez, Adriana ;
Diwan, A. Hafeez ;
Lazar, Alexander J. F. ;
Shen, Steven S. ;
Zhang, Peter S. ;
Reed, Jon A. ;
Gershenwald, Jeffrey E. ;
Raz, Avraham ;
Bar-Eli, Menashe .
CLINICAL CANCER RESEARCH, 2006, 12 (22) :6709-6715
[63]   Comprehensive Expression Profiling of Tumor Cell Lines Identifies Molecular Signatures of Melanoma Progression [J].
Ryu, Byungwoo ;
Kim, Dave S. ;
DeLuca, Amena M. ;
Alani, Rhoda M. .
PLOS ONE, 2007, 2 (07)
[64]  
Sato-Jin K, 2008, FASEB J, V22, P1155, DOI 10.1096/fj.07-9080com
[65]  
SCHWABE M, 1994, J BIOL CHEM, V269, P7201
[66]   Microphthalmia transcription factor and PU.1 synergistically induce the leukocyte receptor osteoclast-associated receptor gene expression [J].
So, H ;
Rho, J ;
Jeong, D ;
Park, R ;
Fisher, DE ;
Ostrowski, MC ;
Choi, Y ;
Kim, N .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (26) :24209-24216
[67]   Melanocytes and the Microphthalmia transcription factor network [J].
Steingrímsson, E ;
Copeland, NG ;
Jenkins, NA .
ANNUAL REVIEW OF GENETICS, 2004, 38 :365-411
[68]   Terminal differentiation of myelin-forming oligodendrocytes depends on the transcription factor Sox10 [J].
Stolt, CC ;
Rehberg, S ;
Ader, M ;
Lommes, P ;
Riethmacher, D ;
Schachner, M ;
Bartsch, U ;
Wegner, M .
GENES & DEVELOPMENT, 2002, 16 (02) :165-170
[69]   Expression of the B-cell proliferation marker MUM1 by melanocytic lesions and comparison with S100, gp100 (HMB45), and MelanA [J].
Sundram, U ;
Harvell, JD ;
Rouse, RV ;
Natkunam, Y .
MODERN PATHOLOGY, 2003, 16 (08) :802-810
[70]   Evidence to suggest that expression of MITF induces melanocyte differentiation and haploinsufficiency of MITF causes Waardenburg syndrome type 2A [J].
Tachibana, M .
PIGMENT CELL RESEARCH, 1997, 10 (1-2) :25-33