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Items: 7

1.

RNA-based 5-fluorouracil toxicity requires the pseudouridylation activity of Cbf5p.

Hoskins J, Butler JS.

Genetics. 2008 May;179(1):323-30. doi: 10.1534/genetics.107.082727.

2.

Nuclear RNA surveillance: role of TRAMP in controlling exosome specificity.

Schmidt K, Butler JS.

Wiley Interdiscip Rev RNA. 2013 Mar-Apr;4(2):217-31. doi: 10.1002/wrna.1155. Epub 2013 Feb 15. Review.

3.

RNA-guided isomerization of uridine to pseudouridine--pseudouridylation.

Yu YT, Meier UT.

RNA Biol. 2014;11(12):1483-94. doi: 10.4161/15476286.2014.972855. Review.

4.

Induction of thymidylate synthase as a 5-fluorouracil resistance mechanism.

Peters GJ, Backus HH, Freemantle S, van Triest B, Codacci-Pisanelli G, van der Wilt CL, Smid K, Lunec J, Calvert AH, Marsh S, McLeod HL, Bloemena E, Meijer S, Jansen G, van Groeningen CJ, Pinedo HM.

Biochim Biophys Acta. 2002 Jul 18;1587(2-3):194-205. Review.

5.

Rrp6: Integrated roles in nuclear RNA metabolism and transcription termination.

Fox MJ, Mosley AL.

Wiley Interdiscip Rev RNA. 2016 Jan-Feb;7(1):91-104. doi: 10.1002/wrna.1317. Epub 2015 Nov 26. Review.

6.

Pseudouridine synthases.

Hamma T, Ferré-D'Amaré AR.

Chem Biol. 2006 Nov;13(11):1125-35. Review.

7.

Pseudouridines in spliceosomal snRNAs.

Yu AT, Ge J, Yu YT.

Protein Cell. 2011 Sep;2(9):712-25. doi: 10.1007/s13238-011-1087-1. Epub 2011 Oct 6. Review.

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