TAF15 is important for cellular proliferation and regulates the expression of a subset of cell cycle genes through miRNAs

被引:43
作者
Ballarino, M. [1 ]
Jobert, L. [1 ]
Dembele, D. [1 ]
de la Grange, P. [2 ]
Auboeuf, D. [3 ]
Tora, L. [1 ]
机构
[1] Univ Strasbourg, Dept Funct Genom & Canc, Inst Genet & Biol Mol & Cellulaire, INSERM,U964,CNRS,UMR 7104, F-67404 Illkirch Graffenstaden, Cu De Strasbour, France
[2] Hop St Louis, GenoSplice Technol, Paris, France
[3] Ctr Leon Berard, INSERM, U1052, Canc Res Ctr Lyon, F-69373 Lyon, France
关键词
FUS/EWS/TAF15 (FET) proteins; miRNAs; transcription; proliferation; neuronal differentiation; neuroblastoma; BINDING PROTEIN; EWS; MICRORNAS; NEUROBLASTOMA; RESOURCE; TARGETS; GROWTH; FUS;
D O I
10.1038/onc.2012.490
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
TAF15 (formerly TAFII68) is a member of the FET (FUS, EWS, TAF15) family of RNA-and DNA-binding proteins whose genes are frequently translocated in sarcomas. By performing global gene expression profiling, we found that TAF15 knockdown affects the expression of a large subset of genes, of which a significant percentage is involved in cell cycle and cell death. In agreement, TAF15 depletion had a growth-inhibitory effect and resulted in increased apoptosis. Among the TAF15-regulated genes, targets of microRNAs (miRNAs) generated from the onco-miR-17 locus were overrepresented, with CDKN1A/p21 being the top miRNAs-targeted gene. Interestingly, the levels of onco-miR-17 locus coded miRNAs (miR-17-5p and miR-20a) were decreased upon TAF15 depletion and shown to affect the post-transcriptional regulation of TAF15-dependent genes, such as CDKN1A/p21. Thus, our results demonstrate that TAF15 is required to regulate gene expression of cell cycle regulatory genes post-transcriptionally through a pathway involving miRNAs. The findings that high TAF15 levels are needed for rapid cellular proliferation and that endogenous TAF15 levels decrease during differentiation strongly suggest that TAF15 is a key regulator of maintaining a highly proliferative rate of cellular homeostasis.
引用
收藏
页码:4646 / 4655
页数:10
相关论文
共 33 条
[11]   Antagomir-17-5p Abolishes the Growth of Therapy-Resistant Neuroblastoma through p21 and BIM [J].
Fontana, Laura ;
Fiori, Micol E. ;
Albini, Sonia ;
Cifaldi, Loredana ;
Giovinazzi, Serena ;
Forloni, Matteo ;
Boldrini, Renata ;
Donfrancesco, Alberto ;
Federici, Valentina ;
Giacomini, Patrizio ;
Peschle, Cesare ;
Fruci, Doriana .
PLOS ONE, 2008, 3 (05)
[12]   Origins of chromosome translocations in childhood leukaemia [J].
Greaves, MF ;
Wiemels, J .
NATURE REVIEWS CANCER, 2003, 3 (09) :639-649
[13]   The Microprocessor complex mediates the genesis of microRNAs [J].
Gregory, RI ;
Yan, KP ;
Amuthan, G ;
Chendrimada, T ;
Doratotaj, B ;
Cooch, N ;
Shiekhattar, R .
NATURE, 2004, 432 (7014) :235-240
[14]   The multifunctional RNA-binding protein hnRNP A1 is required for processing of miR-18a [J].
Guil, Sonia ;
Caceres, Javier F. .
NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2007, 14 (07) :591-596
[15]   RNA targets of wild-type and mutant FET family proteins [J].
Hoell, Jessica I. ;
Larsson, Erik ;
Runge, Simon ;
Nusbaum, Jeffrey D. ;
Duggimpudi, Sujitha ;
Farazi, Thalia A. ;
Hafner, Markus ;
Borkhardt, Arndt ;
Sander, Chris ;
Tuschl, Thomas .
NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2011, 18 (12) :1428-1431
[16]   miRTarBase: a database curates experimentally validated microRNA-target interactions [J].
Hsu, Sheng-Da ;
Lin, Feng-Mao ;
Wu, Wei-Yun ;
Liang, Chao ;
Huang, Wei-Chih ;
Chan, Wen-Ling ;
Tsai, Wen-Ting ;
Chen, Goun-Zhou ;
Lee, Chia-Jung ;
Chiu, Chih-Min ;
Chien, Chia-Hung ;
Wu, Ming-Chia ;
Huang, Chi-Ying ;
Tsou, Ann-Ping ;
Huang, Hsien-Da .
NUCLEIC ACIDS RESEARCH, 2011, 39 :D163-D169
[17]   MicroRNAs in the miR-106b family regulate p21/CDKN1A and promote cell cycle progression [J].
Ivanovska, Irena ;
Ball, Alexey S. ;
Diaz, Robert L. ;
Magnus, Jill F. ;
Kibukawa, Miho ;
Schelter, Janell M. ;
Kobayashi, Sumire V. ;
Lim, Lee ;
Burchard, Juja ;
Jackson, Aimee L. ;
Linsley, Peter S. ;
Cleary, Michele A. .
MOLECULAR AND CELLULAR BIOLOGY, 2008, 28 (07) :2167-2174
[18]   Human U1 snRNA forms a new chromatin-associated snRNP with TAF15 [J].
Jobert, Laure ;
Pinzon, Natalia ;
Van Herreweghe, Elodie ;
Jady, Beata E. ;
Guialis, Apostolia ;
Kiss, Tamas ;
Tora, Laszlo .
EMBO REPORTS, 2009, 10 (05) :494-500
[19]   PRMT1 mediated methylation of TAF15 is required for its positive gene regulatory function [J].
Jobert, Laure ;
Argentini, Manuela ;
Tora, Laszlo .
EXPERIMENTAL CELL RESEARCH, 2009, 315 (07) :1273-1286
[20]  
Law Warren J., 2006, Briefings in Functional Genomics & Proteomics, V5, P8, DOI 10.1093/bfgp/ell015