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Items: 1 to 20 of 84

1.

The parafibromin tumor suppressor protein is part of a human Paf1 complex.

Rozenblatt-Rosen O, Hughes CM, Nannepaga SJ, Shanmugam KS, Copeland TD, Guszczynski T, Resau JH, Meyerson M.

Mol Cell Biol. 2005 Jan;25(2):612-20.

2.

The HRPT2 tumor suppressor gene product parafibromin associates with human PAF1 and RNA polymerase II.

Yart A, Gstaiger M, Wirbelauer C, Pecnik M, Anastasiou D, Hess D, Krek W.

Mol Cell Biol. 2005 Jun;25(12):5052-60.

3.

The tumor suppressor, parafibromin, mediates histone H3 K9 methylation for cyclin D1 repression.

Yang YJ, Han JW, Youn HD, Cho EJ.

Nucleic Acids Res. 2010 Jan;38(2):382-90. doi: 10.1093/nar/gkp991. Epub 2009 Nov 11.

4.

A posttranscriptional role for the yeast Paf1-RNA polymerase II complex is revealed by identification of primary targets.

Penheiter KL, Washburn TM, Porter SE, Hoffman MG, Jaehning JA.

Mol Cell. 2005 Oct 28;20(2):213-23.

5.

Identification of a functional bipartite nuclear localization signal in the tumor suppressor parafibromin.

Hahn MA, Marsh DJ.

Oncogene. 2005 Sep 15;24(41):6241-8. Erratum in: Oncogene. 2007 Feb 1;26(5):788.

PMID:
16116486
6.

The tumor suppressor parafibromin is required for posttranscriptional processing of histone mRNA.

Farber LJ, Kort EJ, Wang P, Chen J, Teh BT.

Mol Carcinog. 2010 Mar;49(3):215-23. doi: 10.1002/mc.20591.

PMID:
19908240
7.

Parafibromin, product of the hyperparathyroidism-jaw tumor syndrome gene HRPT2, regulates cyclin D1/PRAD1 expression.

Woodard GE, Lin L, Zhang JH, Agarwal SK, Marx SJ, Simonds WF.

Oncogene. 2005 Feb 10;24(7):1272-6.

PMID:
15580289
8.
9.

Human RNA polymerase II-associated factor complex: dysregulation in cancer.

Chaudhary K, Deb S, Moniaux N, Ponnusamy MP, Batra SK.

Oncogene. 2007 Nov 29;26(54):7499-507. Epub 2007 Jun 18. Review.

PMID:
17599057
10.

Cdc73p and Paf1p are found in a novel RNA polymerase II-containing complex distinct from the Srbp-containing holoenzyme.

Shi X, Chang M, Wolf AJ, Chang CH, Frazer-Abel AA, Wade PA, Burton ZF, Jaehning JA.

Mol Cell Biol. 1997 Mar;17(3):1160-9.

11.

Phenotypic analysis of Paf1/RNA polymerase II complex mutations reveals connections to cell cycle regulation, protein synthesis, and lipid and nucleic acid metabolism.

Betz JL, Chang M, Washburn TM, Porter SE, Mueller CL, Jaehning JA.

Mol Genet Genomics. 2002 Oct;268(2):272-85. Epub 2002 Sep 12.

PMID:
12395202
12.

The Paf1 complex promotes displacement of histones upon rapid induction of transcription by RNA polymerase II.

Marton HA, Desiderio S.

BMC Mol Biol. 2008 Jan 14;9:4. doi: 10.1186/1471-2199-9-4.

14.

Molecular evidence indicating that the yeast PAF complex is required for transcription elongation.

Rondón AG, Gallardo M, García-Rubio M, Aguilera A.

EMBO Rep. 2004 Jan;5(1):47-53.

15.

The Paf1 complex has functions independent of actively transcribing RNA polymerase II.

Mueller CL, Porter SE, Hoffman MG, Jaehning JA.

Mol Cell. 2004 May 21;14(4):447-56.

16.

Direct interactions between the Paf1 complex and a cleavage and polyadenylation factor are revealed by dissociation of Paf1 from RNA polymerase II.

Nordick K, Hoffman MG, Betz JL, Jaehning JA.

Eukaryot Cell. 2008 Jul;7(7):1158-67. doi: 10.1128/EC.00434-07. Epub 2008 May 9.

17.

The human homologue of the RNA polymerase II-associated factor 1 (hPaf1), localized on the 19q13 amplicon, is associated with tumorigenesis.

Moniaux N, Nemos C, Schmied BM, Chauhan SC, Deb S, Morikane K, Choudhury A, Vanlith M, Sutherlin M, Sikela JM, Hollingsworth MA, Batra SK.

Oncogene. 2006 Jun 1;25(23):3247-57. Epub 2006 Feb 20.

PMID:
16491129
18.

The Paf1 complex physically and functionally associates with transcription elongation factors in vivo.

Squazzo SL, Costa PJ, Lindstrom DL, Kumer KE, Simic R, Jennings JL, Link AJ, Arndt KM, Hartzog GA.

EMBO J. 2002 Apr 2;21(7):1764-74.

19.
20.

Association of the histone methyltransferase Set2 with RNA polymerase II plays a role in transcription elongation.

Li J, Moazed D, Gygi SP.

J Biol Chem. 2002 Dec 20;277(51):49383-8. Epub 2002 Oct 14.

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