Potent microRNA suppression by RNA Pol II-transcribed 'Tough Decoy' inhibitors

被引:62
作者
Bak, Rasmus O. [1 ]
Hollensen, Anne Kruse [1 ]
Primo, Maria Nascimento [1 ]
Sorensen, Camilla Darum [1 ]
Mikkelsen, Jacob Giehm [1 ]
机构
[1] Aarhus Univ, Dept Biomed, DK-8000 Aarhus C, Denmark
关键词
miRNA inhibition; Tough Decoy; TuD; lentiviral vectors; IN-VIVO; REVERSE TRANSCRIPTION; NUCLEAR EXPORT; LONG-TERM; EXPRESSION; INTERFERENCE; REPRESSION; VECTORS; DELETION; DESIGN;
D O I
10.1261/rna.034850.112
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
MicroRNAs( miRNAs) are key regulators of gene expression and modulators of diverse biological pathways. Analyses of miRNA function as well as therapeutic managing of miRNAs rely on cellular administration of miRNA inhibitors which may be achieved by the use of viral vehicles. This study explores the miRNA-suppressive capacity of inhibitors expressed intracellularly from lentivirus-derived gene vectors. Superior activity of two decoy-type inhibitors, a "Bulged Sponge" with eight miRNA recognition sites and a hairpin-shaped "Tough Decoy" containing two miRNA recognition sites, is demonstrated in a side-by-side comparison of seven types of miRNA inhibitors transcribed as short RNAs from an RNA Pol III promoter. We find that lentiviral vectors expressing Tough Decoy inhibitors are less vulnerable than Bulged Sponge-encoding vectors to targeting by the cognate miRNA and less prone, therefore, to reductions in transfer efficiency. Importantly, it is demonstrated that Tough Decoy inhibitors retain their miRNA suppression capacity in the context of longer RNA transcripts expressed from an RNA Pol II promoter. Such RNA Pol II-transcribed Tough Decoy inhibitors are new tools in managing of miRNAs and may have potential for temporal and spatial regulation of miRNA activity as well as for therapeutic targeting of miRNAs that are aberrantly expressed in human disease.
引用
收藏
页码:280 / 293
页数:14
相关论文
共 47 条
[1]   Molecular basis for target RNA recognition and cleavage by human RISC [J].
Ameres, Stefan Ludwig ;
Martinez, Javier ;
Schroeder, Renee .
CELL, 2007, 130 (01) :101-112
[2]   Frequency of direct repeat deletion in a human immunodeficiency virus type 1 vector during reverse transcription in human cells [J].
An, WF ;
Telesnitsky, A .
VIROLOGY, 2001, 286 (02) :475-482
[3]   Targeting of human interleukin-12B by small hairpin RNAs in xenografted psoriatic skin [J].
Bak, Rasmus O. ;
Stenderup, Karin ;
Rosada, Cecilia ;
Petersen, Line B. ;
Moldt, Brian ;
Dagnaes-Hansen, Frederik ;
Jakobsen, Maria ;
Kamp, Soren ;
Jensen, Thomas G. ;
Dam, Tomas N. ;
Mikkelsen, Jacob Giehm .
BMC DERMATOLOGY, 2011, 11
[4]   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
[5]   Lessons from Nature: microRNA-based shRNA libraries [J].
Chang, Kenneth ;
Elledge, Stephen J. ;
Hannon, Gregory J. .
NATURE METHODS, 2006, 3 (09) :707-714
[6]   Target protectors reveal dampening and balancing of nodal agonist and antagonist by miR-430 [J].
Choi, Wen-Yee ;
Giraldez, Antonio J. ;
Schier, Alexander F. .
SCIENCE, 2007, 318 (5848) :271-274
[7]   Improved targeting of miRNA with antisense oligonucleotides [J].
Davis, Scott ;
Lollo, Bridget ;
Freier, Susan ;
Esau, Christine .
NUCLEIC ACIDS RESEARCH, 2006, 34 (08) :2294-2304
[8]   Probing tumor phenotypes using stable and regulated synthetic microRNA precursors [J].
Dickins, RA ;
Hemann, MT ;
Zilfou, JT ;
Simpson, DR ;
Ibarra, I ;
Hannon, GJ ;
Lowe, SW .
NATURE GENETICS, 2005, 37 (11) :1289-1295
[9]   MicroRNA sponges: competitive inhibitors of small RNAs in mammalian cells [J].
Ebert, Margaret S. ;
Neilson, Joel R. ;
Sharp, Phillip A. .
NATURE METHODS, 2007, 4 (09) :721-726
[10]   RNA interference is mediated by 21-and 22-nucleotide RNAs [J].
Elbashir, SM ;
Lendeckel, W ;
Tuschl, T .
GENES & DEVELOPMENT, 2001, 15 (02) :188-200