MicroRNA sponges: competitive inhibitors of small RNAs in mammalian cells

被引:1667
作者
Ebert, Margaret S. [1 ]
Neilson, Joel R. [1 ]
Sharp, Phillip A. [1 ]
机构
[1] MIT, Ctr Canc Res, Cambridge, MA 02139 USA
关键词
D O I
10.1038/NMETH1079
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
MicroRNAs are predicted to regulate thousands of mammalian genes, but relatively few targets have been experimentally validated and few microRNA loss-of-function phenotypes have been assigned. As an alternative to chemically modified antisense oligonucleotides, we developed microRNA inhibitors that can be expressed in cells, as RNAs produced from transgenes. Termed 'microRNA sponges', these competitive inhibitors are transcripts expressed from strong promoters, containing multiple, tandem binding sites to a microRNA of interest. When vectors encoding these sponges are transiently transfected into cultured cells, sponges derepress microRNA targets at least as strongly as chemically modified antisense oligonucleotides. They specifically inhibit microRNAs with a complementary heptameric seed, such that a single sponge can be used to block an entire microRNA seed family. RNA polymerase II promoter (Pol II)-driven sponges contain a fluorescence reporter gene for identification and sorting of sponge-treated cells. We envision the use of stably expressed sponges in animal models of disease and development.
引用
收藏
页码:721 / 726
页数:6
相关论文
共 20 条
[1]   MicroRNA expression detected by oligonucleotide microarrays: System establishment and expression profiling in human tissues [J].
Barad, O ;
Meiri, E ;
Avniel, A ;
Aharonov, R ;
Barzilai, A ;
Bentwich, I ;
Einav, U ;
Glad, S ;
Hurban, P ;
Karov, Y ;
Lobenhofer, EK ;
Sharon, E ;
Shiboleth, YM ;
Shtutman, M ;
Bentwich, Z ;
Einat, P .
GENOME RESEARCH, 2004, 14 (12) :2486-2494
[2]   MicroRNA-133 controls cardiac hypertrophy [J].
Care, Alessandra ;
Catalucci, Daniele ;
Felicetti, Federica ;
Bonci, Desiree ;
Addario, Antonio ;
Gallo, Paolo ;
Bang, Marie-Louise ;
Segnalini, Patrizia ;
Gu, Yusu ;
Dalton, Nancy D. ;
Elia, Leonardo ;
Latronico, Michael V. G. ;
Hoydal, Morten ;
Autore, Camillo ;
Russo, Matteo A. ;
Dorn, Gerald W., II ;
Ellingsen, Oyvind ;
Ruiz-Lozano, Pilar ;
Peterson, Kirk L. ;
Croce, Carlo M. ;
Peschle, Cesare ;
Condorelli, Gianluigi .
NATURE MEDICINE, 2007, 13 (05) :613-618
[3]   Transactivation of miR-34a by p53 broadly influences gene expression and promotes apoptosis [J].
Chang, Tsung-Cheng ;
Wentzel, Erik A. ;
Kent, Oliver A. ;
Ramachandran, Kalyani ;
Mullendore, Michael ;
Lee, Kwang Hyuck ;
Feldmann, Georg ;
Yamakuchi, Munekazu ;
Ferlito, Marcella ;
Lowenstein, Charles J. ;
Arking, Dan E. ;
Beer, Michael A. ;
Maitra, Anirban ;
Mendell, Joshua T. .
MOLECULAR CELL, 2007, 26 (05) :745-752
[4]   microRNA modulation of circadian-clock period and entrainment [J].
Cheng, Hai-Ying M. ;
Papp, Joseph W. ;
Varlamova, Olga ;
Dziema, Heather ;
Russell, Brandon ;
Curfman, John P. ;
Nakazawa, Takanobu ;
Shimizu, Kimiko ;
Okamura, Hitoshi ;
Impey, Soren ;
Obrietan, Karl .
NEURON, 2007, 54 (05) :813-829
[5]   Improved targeting of miRNA with antisense oligonucleotides [J].
Davis, Scott ;
Lollo, Bridget ;
Freier, Susan ;
Esau, Christine .
NUCLEIC ACIDS RESEARCH, 2006, 34 (08) :2294-2304
[6]   Specificity of microRNA target selection in translational repression [J].
Doench, JG ;
Sharp, PA .
GENES & DEVELOPMENT, 2004, 18 (05) :504-511
[7]   siRNAs can function as miRNAs [J].
Doench, JG ;
Petersen, CP ;
Sharp, PA .
GENES & DEVELOPMENT, 2003, 17 (04) :438-442
[8]   A microRNA polycistron as a potential human oncogene [J].
He, L ;
Thomson, JM ;
Hemann, MT ;
Hernando-Monge, E ;
Mu, D ;
Goodson, S ;
Powers, S ;
Cordon-Cardo, C ;
Lowe, SW ;
Hannon, GJ ;
Hammond, SM .
NATURE, 2005, 435 (7043) :828-833
[9]   Sequence-specific inhibition of small RNA function [J].
Hutvágner, G ;
Simard, MJ ;
Mello, CC ;
Zamore, PD .
PLOS BIOLOGY, 2004, 2 (04) :465-475
[10]   Human MicroRNA targets [J].
John, B ;
Enright, AJ ;
Aravin, A ;
Tuschl, T ;
Sander, C ;
Marks, DS .
PLOS BIOLOGY, 2004, 2 (11) :1862-1879