Log on / register
Feedback | Support | My details
RNA editing of human microRNAs.
Blow MJ, Grocock RJ, van Dongen S, Enright AJ, Dicks E, Futreal PA, Wooster R, Stratton MR
Genome Biol 2006, 7:R27
[Full text] [PubMed] [Related articles] [Cited on BioMed Central]


printer friendly 
to  [Help]

PubMed Central articles that cite the above article:

1.
Non-coding RNAs in the nervous system.
Mehler MF, Mattick JS
J Physiol 2006 Sep 1, 575:333-41
[PubMed Central] [PubMed] [Related articles]

2.
Hypothesis: RNA editing of microRNA target sites in humans?
Liang H, Landweber LF
RNA 2007 Apr, 13:463-7
[PubMed Central] [PubMed] [Related articles]

3.
Automated parallel isolation of multiple species of non-coding RNAs by the reciprocal circulating chromatography method.
Miyauchi K, Ohara T, Suzuki T
Nucleic Acids Res 2007, 35:e24
[PubMed Central] [PubMed] [Related articles]

4.
Magnaporthe grisea infection triggers RNA variation and antisense transcript expression in rice.
Gowda M, Venu RC, Li H, Jantasuriyarat C, Chen S, Bellizzi M, Pampanwar V, Kim H, Dean RA, Stahlberg E, Wing R, Soderlund C, Wang GL
Plant Physiol 2007 May, 144:524-33
[PubMed Central] [PubMed] [Related articles]

5.
RNA editing of the microRNA-151 precursor blocks cleavage by the Dicer-TRBP complex.
Kawahara Y, Zinshteyn B, Chendrimada TP, Shiekhattar R, Nishikura K
EMBO Rep 2007 Aug, 8:763-9
[PubMed Central] [PubMed] [Related articles]

6.
Altered adenosine-to-inosine RNA editing in human cancer.
Paz N, Levanon EY, Amariglio N, Heimberger AB, Ram Z, Constantini S, Barbash ZS, Adamsky K, Safran M, Hirschberg A, Krupsky M, Ben-Dov I, Cazacu S, Mikkelsen T, Brodie C, Eisenberg E, Rechavi G
Genome Res 2007 Nov, 17:1586-95
[PubMed Central] [PubMed] [Related articles]

7.
Inosine-containing dsRNA binds a stress-granule-like complex and downregulates gene expression in trans.
Scadden AD
Mol Cell 2007 Nov 9, 28:491-500
[PubMed Central] [PubMed] [Related articles]

8.
Specificity of ADAR-mediated RNA editing in newly identified targets.
Riedmann EM, Schopoff S, Hartner JC, Jantsch MF
RNA 2008 Jun, 14:1110-8
[PubMed Central] [PubMed] [Related articles]

9.
Inversing the natural hydrogen bonding rule to selectively amplify GC-rich ADAR-edited RNAs.
Suspène R, Renard M, Henry M, Guétard D, Puyraimond-Zemmour D, Billecocq A, Bouloy M, Tangy F, Vartanian JP, Wain-Hobson S
Nucleic Acids Res 2008 Jul, 36:e72
[PubMed Central] [PubMed] [Related articles]

10.
Frequency and fate of microRNA editing in human brain.
Kawahara Y, Megraw M, Kreider E, Iizasa H, Valente L, Hatzigeorgiou AG, Nishikura K
Nucleic Acids Res 2008 Sep, 36:5270-80
[PubMed Central] [PubMed] [Related articles]

11.
Mouse let-7 miRNA populations exhibit RNA editing that is constrained in the 5'-seed/ cleavage/anchor regions and stabilize predicted mmu-let-7a:mRNA duplexes.
Reid JG, Nagaraja AK, Lynn FC, Drabek RB, Muzny DM, Shaw CA, Weiss MK, Naghavi AO, Khan M, Zhu H, Tennakoon J, Gunaratne GH, Corry DB, Miller J, McManus MT, German MS, Gibbs RA, Matzuk MM, Gunaratne PH
Genome Res 2008 Oct, 18:1571-81
[PubMed Central] [PubMed] [Related articles]

12.
ADBP-1 regulates an ADAR RNA-editing enzyme to antagonize RNA-interference-mediated gene silencing in Caenorhabditis elegans.
Ohta H, Fujiwara M, Ohshima Y, Ishihara T
Genetics 2008 Oct, 180:785-96
[PubMed Central] [PubMed] [Related articles]

13.
miRNA editing--we should have inosine this coming.
Habig JW, Dale T, Bass BL
Mol Cell 2007 Mar 23, 25:792-3
[PubMed Central] [PubMed] [Related articles]

14.
Novel exon of mammalian ADAR2 extends open reading frame.
Maas S, Gommans WM
PLoS One 2009, 4:e4225
[PubMed Central] [PubMed] [Related articles]

15.
The fascinating world of RNA interference.
Naqvi AR, Islam MN, Choudhury NR, Haq QM
Int J Biol Sci 2009, 5:97-117
[PubMed Central] [PubMed] [Related articles]

16.
Technical variables in high-throughput miRNA expression profiling: much work remains to be done.
Nelson PT, Wang WX, Wilfred BR, Tang G
Biochim Biophys Acta 2008 Nov, 1779:758-65
[PubMed Central] [PubMed] [Related articles]

17.
Current tools for the identification of miRNA genes and their targets.
Mendes ND, Freitas AT, Sagot MF
Nucleic Acids Res 2009 May, 37:2419-33
[PubMed Central] [PubMed] [Related articles]

18.
A mammalian microRNA expression atlas based on small RNA library sequencing.
Landgraf P, Rusu M, Sheridan R, Sewer A, Iovino N, Aravin A, Pfeffer S, Rice A, Kamphorst AO, Landthaler M, Lin C, Socci ND, Hermida L, Fulci V, Chiaretti S, Foà R, Schliwka J, Fuchs U, Novosel A, Müller RU, Schermer B, Bissels U, Inman J, Phan Q, Chien M, Weir DB, Choksi R, De Vita G, Frezzetti D, Trompeter HI, Hornung V, Teng G, Hartmann G, Palkovits M, Di Lauro R, Wernet P, Macino G, Rogler CE, Nagle JW, Ju J, Papavasiliou FN, Benzing T, Lichter P, Tam W, Brownstein MJ, Bosio A, Borkhardt A, Russo JJ, Sander C, Zavolan M, Tuschl T
Cell 2007 Jun 29, 129:1401-14
[PubMed Central] [PubMed] [Related articles]

19.
Structural and biochemical advances in mammalian RNAi.
Collins RE, Cheng X
J Cell Biochem 2006 Dec 1, 99:1251-66
[PubMed Central] [PubMed] [Related articles]

20.
The evolution and functional diversification of animal microRNA genes.
Liu N, Okamura K, Tyler DM, Phillips MD, Chung WJ, Lai EC
Cell Res 2008 Oct, 18:985-96
[PubMed Central] [PubMed] [Related articles]

21.
Editing independent effects of ADARs on the miRNA/siRNA pathways.
Heale BS, Keegan LP, McGurk L, Michlewski G, Brindle J, Stanton CM, Caceres JF, O'Connell MA
EMBO J 2009 Oct 21, 28:3145-56
[PubMed Central] [PubMed] [Related articles]

22.
Feasibility and relevance of examining lymphoblastoid cell lines to study role of microRNAs in autism.
Talebizadeh Z, Butler MG, Theodoro MF
Autism Res 2008 Aug, 1:240-50
[PubMed Central] [PubMed] [Related articles]


This article is also cited by 3 articles in BioMed Central


You can also check ISI Web of Science for additional citations (subscription required)
  
printer friendly 
to  [Help]

© 1999-2009 BioMed Central Ltd unless otherwise stated. Part of Springer Science+Business Media.