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Items: 1 to 20 of 41

1.

MicroRNA expression and function in cancer.

Garzon R, Fabbri M, Cimmino A, Calin GA, Croce CM.

Trends Mol Med. 2006 Dec;12(12):580-7. Epub 2006 Oct 30. Review.

PMID:
17071139
2.

A guide through present computational approaches for the identification of mammalian microRNA targets.

Sethupathy P, Megraw M, Hatzigeorgiou AG.

Nat Methods. 2006 Nov;3(11):881-6.

PMID:
17060911
3.
4.

MicroRNA-cancer connection: the beginning of a new tale.

Calin GA, Croce CM.

Cancer Res. 2006 Aug 1;66(15):7390-4. Review.

5.
6.
7.

Genomics of microRNA.

Kim VN, Nam JW.

Trends Genet. 2006 Mar;22(3):165-73. Epub 2006 Jan 30. Review.

PMID:
16446010
8.

miRBase: microRNA sequences, targets and gene nomenclature.

Griffiths-Jones S, Grocock RJ, van Dongen S, Bateman A, Enright AJ.

Nucleic Acids Res. 2006 Jan 1;34(Database issue):D140-4.

9.

TarBase: A comprehensive database of experimentally supported animal microRNA targets.

Sethupathy P, Corda B, Hatzigeorgiou AG.

RNA. 2006 Feb;12(2):192-7. Epub 2005 Dec 22.

10.

The widespread impact of mammalian MicroRNAs on mRNA repression and evolution.

Farh KK, Grimson A, Jan C, Lewis BP, Johnston WK, Lim LP, Burge CB, Bartel DP.

Science. 2005 Dec 16;310(5755):1817-21. Epub 2005 Nov 24.

11.

Unique gene expression profile based on pathologic response in epithelial ovarian cancer.

Spentzos D, Levine DA, Kolia S, Otu H, Boyd J, Libermann TA, Cannistra SA.

J Clin Oncol. 2005 Nov 1;23(31):7911-8. Epub 2005 Oct 3.

PMID:
16204010
12.

miRNAs, cancer, and stem cell division.

Croce CM, Calin GA.

Cell. 2005 Jul 15;122(1):6-7. Review.

13.

Integration of gene expression profiling and clinical variables to predict prostate carcinoma recurrence after radical prostatectomy.

Stephenson AJ, Smith A, Kattan MW, Satagopan J, Reuter VE, Scardino PT, Gerald WL.

Cancer. 2005 Jul 15;104(2):290-8.

14.

c-Myc-regulated microRNAs modulate E2F1 expression.

O'Donnell KA, Wentzel EA, Zeller KI, Dang CV, Mendell JT.

Nature. 2005 Jun 9;435(7043):839-43.

15.

MicroRNA expression profiles classify human cancers.

Lu J, Getz G, Miska EA, Alvarez-Saavedra E, Lamb J, Peck D, Sweet-Cordero A, Ebert BL, Mak RH, Ferrando AA, Downing JR, Jacks T, Horvitz HR, Golub TR.

Nature. 2005 Jun 9;435(7043):834-8.

PMID:
15944708
16.

A microRNA polycistron as a potential human oncogene.

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 Jun 9;435(7043):828-33.

17.

Combinatorial microRNA target predictions.

Krek A, GrĂ¼n D, Poy MN, Wolf R, Rosenberg L, Epstein EJ, MacMenamin P, da Piedade I, Gunsalus KC, Stoffel M, Rajewsky N.

Nat Genet. 2005 May;37(5):495-500. Epub 2005 Apr 3.

PMID:
15806104
18.

Microarray-based, high-throughput gene expression profiling of microRNAs.

Nelson PT, Baldwin DA, Scearce LM, Oberholtzer JC, Tobias JW, Mourelatos Z.

Nat Methods. 2004 Nov;1(2):155-61. Epub 2004 Oct 21.

PMID:
15782179
19.

A custom microarray platform for analysis of microRNA gene expression.

Thomson JM, Parker J, Perou CM, Hammond SM.

Nat Methods. 2004 Oct;1(1):47-53. Epub 2004 Sep 29.

PMID:
15782152
20.

RAS is regulated by the let-7 microRNA family.

Johnson SM, Grosshans H, Shingara J, Byrom M, Jarvis R, Cheng A, Labourier E, Reinert KL, Brown D, Slack FJ.

Cell. 2005 Mar 11;120(5):635-47.

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