MicroRNA profiling in pediatric pilocytic astrocytoma reveals biologically relevant targets, including PBX3, NFIB, and METAP2

被引:48
作者
Ho, Cheng-Ying [1 ]
Bar, Eli [1 ]
Giannini, Caterina [2 ]
Marchionni, Luigi [3 ]
Karajannis, Matthias A. [4 ]
Zagzag, David [5 ]
Gutmann, David H. [6 ]
Eberhart, Charles G. [1 ]
Rodriguez, Fausto J. [1 ]
机构
[1] Johns Hopkins Univ, Div Neuropathol, Dept Pathol, Baltimore, MD USA
[2] Mayo Clin, Dept Lab Med & Pathol, Rochester, MN USA
[3] Johns Hopkins Univ, Canc Biol Program, Sidney Kimmel Comprehens Canc Ctr, Baltimore, MD USA
[4] NYU Langone Med Ctr, Div Pediat Hematol Oncol, Dept Pediat, New York, NY USA
[5] NYU Langone Med Ctr, Div Neuropathol, Dept Pathol, New York, NY USA
[6] Washington Univ, Sch Med, Dept Neurol, St Louis, MO 63110 USA
基金
美国国家卫生研究院;
关键词
BRAF; glioma; microRNA; neurofibromatosis; pilocytic astrocytoma; MAPK PATHWAY ACTIVATION; METHIONINE AMINOPEPTIDASE-2; EXPRESSION PROFILES; CEREBROSPINAL-FLUID; GENE-EXPRESSION; UP-REGULATION; BRAF; FUSION; DUPLICATION; IDENTIFICATION;
D O I
10.1093/neuonc/nos269
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Pilocytic astrocytoma (PA) is a World Health Organization grade I glioma that occurs most commonly in children and young adults. Specific genetic alterations have been described in PA, but the pathogenesis remains poorly understood. We studied microRNA (miRNA) alterations in a large cohort of patients with PA. A total of 43 PA, including 35 sporadic grade I PA, 4 neurofibromatosis-1 (NF1)-associated PA, and 4 PA with pilomyxoid features, as well as 5 nonneoplastic brain controls were examined BRAF fusion status was assessed in most cases. RNA was examined using the Agilent Human miRNA Microarray V3 platform. Expression of miRNA subsets was validated using quantitative real-time PCR (qRT-PCR) with Taqman probes. Validation of predicted protein targets was performed on tissue microarrays with the use of immunohistochemistry. We identified a subset of miRNAs that were differentially expressed in pediatric PAs versus normal brain tissue: 13 miRNAs were underexpressed, and 20 miRNAs were overexpressed in tumors. Differences were validated by qRT-PCR in a subset, with mean fold change in tumor versus brain of -17 (miR-124), -15 (miR-129), and 19.8 (miR-21). Searching for predicted protein targets in Targetscan, we identified a number of known and putative oncogenes that were predicted targets of miRNA sets relatively underexpressed in PA. Predicted targets with increased expression at the mRNA and/or protein level in PA included PBX3, METAP2, and NFIB. A unique miRNA profile exists in PA, compared with brain tissue. These miRNAs and their targets may play a role in the pathogenesis of PA.
引用
收藏
页码:69 / 82
页数:14
相关论文
共 69 条
[1]   The impact of microRNAs on protein output [J].
Baek, Daehyun ;
Villen, Judit ;
Shin, Chanseok ;
Camargo, Fernando D. ;
Gygi, Steven P. ;
Bartel, David P. .
NATURE, 2008, 455 (7209) :64-U38
[2]   Frequent gains at chromosome 7q34 involving BRAF in pilocytic astrocytoma [J].
Bar, Eli E. ;
Lin, Alex ;
Tihan, Tarik ;
Burger, Peter C. ;
Eberhart, Charles G. .
JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2008, 67 (09) :878-887
[3]   Identification of microRNAs in the cerebrospinal fluid as biomarker for the diagnosis of glioma [J].
Baraniskin, Alexander ;
Kuhnhenn, Jan ;
Schlegel, Uwe ;
Maghnouj, Abdelouahid ;
Zoellner, Hannah ;
Schmiegel, Wolf ;
Hahn, Stephan ;
Schroers, Roland .
NEURO-ONCOLOGY, 2012, 14 (01) :29-33
[4]   Survey of MicroRNA Expression in Pediatric Brain Tumors [J].
Birks, Diane K. ;
Barton, Valerie N. ;
Donson, Andrew M. ;
Handler, Michael H. ;
Vibhakar, Rajeev ;
Foreman, Nicholas K. .
PEDIATRIC BLOOD & CANCER, 2011, 56 (02) :211-216
[5]   Effect of BRAFV600E mutation on transcription and post-transcriptional regulation in a papillary thyroid carcinoma model [J].
Cahill, Susanne ;
Smyth, Paul ;
Denning, Karen ;
Flavin, Richard ;
Li, Jinghuan ;
Potratz, Astrid ;
Guenther, Simone M. ;
Henfrey, Richard ;
O'Leary, John J. ;
Sheils, Orla .
MOLECULAR CANCER, 2007, 6 (1)
[6]   Methionine aminopeptidase-2 regulates human mesothelioma cell survival - Role of bcl-2 expression and telomerase activity [J].
Catalano, A ;
Romano, M ;
Robuffo, I ;
Strizzi, L ;
Procopio, A .
AMERICAN JOURNAL OF PATHOLOGY, 2001, 159 (02) :721-731
[7]   MicroRNA-21 is an antiapoptotic factor in human glioblastoma cells [J].
Chan, JA ;
Krichevsky, AM ;
Kosik, KS .
CANCER RESEARCH, 2005, 65 (14) :6029-6033
[8]   MicroRNA-21 down-regulates the expression of tumor suppressor PDCD4 in human glioblastoma cell T98G [J].
Chen, Yang ;
Liu, Wei ;
Chao, Tengfei ;
Zhang, Yu ;
Yan, Xingqi ;
Gong, Yanhua ;
Qiang, Boqin ;
Yuan, Jiangang ;
Sun, Maosheng ;
Peng, Xiaozhong .
CANCER LETTERS, 2008, 272 (02) :197-205
[9]   Extensive modulation of a set of microRNAs in primary glioblastoma [J].
Ciafrè, SA ;
Galardi, S ;
Mangiola, A ;
Ferracin, M ;
Liu, CG ;
Sabatino, G ;
Negrini, M ;
Maira, G ;
Croce, CM ;
Farace, MG .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2005, 334 (04) :1351-1358
[10]   Oncogenic FAM131B-BRAF fusion resulting from 7q34 deletion comprises an alternative mechanism of MAPK pathway activation in pilocytic astrocytoma [J].
Cin, Huriye ;
Meyer, Claus ;
Herr, Ricarda ;
Janzarik, Wibke G. ;
Lambert, Sally ;
Jones, David T. W. ;
Jacob, Karine ;
Benner, Axel ;
Witt, Hendrik ;
Remke, Marc ;
Bender, Sebastian ;
Falkenstein, Fabian ;
Ton Nu Van Anh ;
Olbrich, Heike ;
von Deimling, Andreas ;
Pekrun, Arnulf ;
Kulozik, Andreas E. ;
Gnekow, Astrid ;
Scheurlen, Wolfram ;
Witt, Olaf ;
Omran, Heymut ;
Jabado, Nada ;
Collins, V. Peter ;
Brummer, Tilman ;
Marschalek, Rolf ;
Lichter, Peter ;
Korshunov, Andrey ;
Pfister, Stefan M. .
ACTA NEUROPATHOLOGICA, 2011, 121 (06) :763-774