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Items: 1 to 20 of 103

1.

A multiplicity of factors contributes to selective RNA polymerase III occupancy of a subset of RNA polymerase III genes in mouse liver.

Canella D, Bernasconi D, Gilardi F, LeMartelot G, Migliavacca E, Praz V, Cousin P, Delorenzi M, Hernandez N; CycliX Consortium.

Genome Res. 2012 Apr;22(4):666-80. doi: 10.1101/gr.130286.111. Epub 2012 Jan 27.

2.

Pol III binding in six mammals shows conservation among amino acid isotypes despite divergence among tRNA genes.

Kutter C, Brown GD, Gonçalves A, Wilson MD, Watt S, Brazma A, White RJ, Odom DT.

Nat Genet. 2011 Aug 28;43(10):948-55. doi: 10.1038/ng.906.

3.

Genomic binding of Pol III transcription machinery and relationship with TFIIS transcription factor distribution in mouse embryonic stem cells.

Carrière L, Graziani S, Alibert O, Ghavi-Helm Y, Boussouar F, Humbertclaude H, Jounier S, Aude JC, Keime C, Murvai J, Foglio M, Gut M, Gut I, Lathrop M, Soutourina J, Gérard M, Werner M.

Nucleic Acids Res. 2012 Jan;40(1):270-83. doi: 10.1093/nar/gkr737. Epub 2011 Sep 12.

4.

Human RNA polymerase III transcriptomes and relationships to Pol II promoter chromatin and enhancer-binding factors.

Oler AJ, Alla RK, Roberts DN, Wong A, Hollenhorst PC, Chandler KJ, Cassiday PA, Nelson CA, Hagedorn CH, Graves BJ, Cairns BR.

Nat Struct Mol Biol. 2010 May;17(5):620-8. doi: 10.1038/nsmb.1801. Epub 2010 Apr 25.

5.

Active Center Control of Termination by RNA Polymerase III and tRNA Gene Transcription Levels In Vivo.

Rijal K, Maraia RJ.

PLoS Genet. 2016 Aug 12;12(8):e1006253. doi: 10.1371/journal.pgen.1006253. eCollection 2016 Aug.

6.

Defining the RNA polymerase III transcriptome: Genome-wide localization of the RNA polymerase III transcription machinery in human cells.

Canella D, Praz V, Reina JH, Cousin P, Hernandez N.

Genome Res. 2010 Jun;20(6):710-21. doi: 10.1101/gr.101337.109. Epub 2010 Apr 22.

8.

Gene duplication and neofunctionalization: POLR3G and POLR3GL.

Renaud M, Praz V, Vieu E, Florens L, Washburn MP, l'Hôte P, Hernandez N.

Genome Res. 2014 Jan;24(1):37-51. doi: 10.1101/gr.161570.113. Epub 2013 Oct 9.

9.

Possible interaction between the bacterial transcription factor ArtA and the eukaryotic RNA polymerase III promoter.

Matsutani S.

Genetica. 2016 Jun;144(3):361-74. doi: 10.1007/s10709-016-9905-2. Epub 2016 May 13.

PMID:
27178279
10.

The RNA polymerase III transcriptome revealed by genome-wide localization and activity-occupancy relationships.

Roberts DN, Stewart AJ, Huff JT, Cairns BR.

Proc Natl Acad Sci U S A. 2003 Dec 9;100(25):14695-700. Epub 2003 Nov 21.

11.

A high density of cis-information terminates RNA Polymerase III on a 2-rail track.

Arimbasseri AG, Maraia RJ.

RNA Biol. 2016;13(2):166-71. doi: 10.1080/15476286.2015.1116677. Epub 2015 Dec 4.

12.

RNA Polymerase III Output Is Functionally Linked to tRNA Dimethyl-G26 Modification.

Arimbasseri AG, Blewett NH, Iben JR, Lamichhane TN, Cherkasova V, Hafner M, Maraia RJ.

PLoS Genet. 2015 Dec 31;11(12):e1005671. doi: 10.1371/journal.pgen.1005671. eCollection 2015 Dec.

13.

Repeat sequence families derived from mammalian tRNA genes.

Daniels GR, Deininger PL.

Nature. 1985 Oct 31-Nov 6;317(6040):819-22.

PMID:
3851163
14.

RNA Polymerase III Advances: Structural and tRNA Functional Views.

Arimbasseri AG, Maraia RJ.

Trends Biochem Sci. 2016 Jun;41(6):546-559. doi: 10.1016/j.tibs.2016.03.003. Epub 2016 Apr 8. Review.

15.

Occupancy of RNA Polymerase II Phosphorylated on Serine 5 (RNAP S5P) and RNAP S2P on Varicella-Zoster Virus Genes 9, 51, and 66 Is Independent of Transcript Abundance and Polymerase Location within the Gene.

Henderson HH, Timberlake KB, Austin ZA, Badani H, Sanford B, Tremblay K, Baird NL, Jones K, Rovnak J, Frietze S, Gilden D, Cohrs RJ.

J Virol. 2015 Nov 11;90(3):1231-43. doi: 10.1128/JVI.02617-15.

16.

TLS inhibits RNA polymerase III transcription.

Tan AY, Manley JL.

Mol Cell Biol. 2010 Jan;30(1):186-96. doi: 10.1128/MCB.00884-09.

17.

TRE5-A retrotransposition profiling reveals putative RNA polymerase III transcription complex binding sites on the Dictyostelium extrachromosomal rDNA element.

Spaller T, Groth M, Glöckner G, Winckler T.

PLoS One. 2017 Apr 13;12(4):e0175729. doi: 10.1371/journal.pone.0175729. eCollection 2017.

18.

Phosphorylation of histone H3 serine 28 modulates RNA polymerase III-dependent transcription.

Zhang Q, Zhong Q, Evans AG, Levy D, Zhong S.

Oncogene. 2011 Sep 15;30(37):3943-52. doi: 10.1038/onc.2011.105. Epub 2011 Apr 4.

19.
20.

Silencing near tRNA genes is nucleosome-mediated and distinct from boundary element function.

Good PD, Kendall A, Ignatz-Hoover J, Miller EL, Pai DA, Rivera SR, Carrick B, Engelke DR.

Gene. 2013 Aug 15;526(1):7-15. doi: 10.1016/j.gene.2013.05.016. Epub 2013 May 23.

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