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Results: 1 to 20 of 93

1.

Repression of RNA polymerase I upon stress is caused by inhibition of RNA-dependent deacetylation of PAF53 by SIRT7.

Chen S, Seiler J, Santiago-Reichelt M, Felbel K, Grummt I, Voit R.

Mol Cell. 2013 Nov 7;52(3):303-13. doi: 10.1016/j.molcel.2013.10.010.

PMID:
24207024
[PubMed - indexed for MEDLINE]
Free Article
2.

Mammalian Sir2 homolog SIRT7 is an activator of RNA polymerase I transcription.

Ford E, Voit R, Liszt G, Magin C, Grummt I, Guarente L.

Genes Dev. 2006 May 1;20(9):1075-80. Epub 2006 Apr 17.

PMID:
16618798
[PubMed - indexed for MEDLINE]
Free PMC Article
3.

Functional proteomics establishes the interaction of SIRT7 with chromatin remodeling complexes and expands its role in regulation of RNA polymerase I transcription.

Tsai YC, Greco TM, Boonmee A, Miteva Y, Cristea IM.

Mol Cell Proteomics. 2012 Feb;11(2):M111.015156. doi: 10.1074/mcp.M111.015156. Epub 2011 Dec 5.

PMID:
22147730
[PubMed - indexed for MEDLINE]
Free PMC Article
4.

Functional proteomics establishes the interaction of SIRT7 with chromatin remodeling complexes and expands its role in regulation of RNA polymerase I transcription.

Tsai YC, Greco TM, Boonmee A, Miteva Y, Cristea IM.

Mol Cell Proteomics. 2012 May;11(5):60-76. doi: 10.1074/mcp.A111.015156.

PMID:
22586326
[PubMed - indexed for MEDLINE]
Free PMC Article
5.

SIRT7 links H3K18 deacetylation to maintenance of oncogenic transformation.

Barber MF, Michishita-Kioi E, Xi Y, Tasselli L, Kioi M, Moqtaderi Z, Tennen RI, Paredes S, Young NL, Chen K, Struhl K, Garcia BA, Gozani O, Li W, Chua KF.

Nature. 2012 Jul 5;487(7405):114-8. doi: 10.1038/nature11043.

PMID:
22722849
[PubMed - indexed for MEDLINE]
Free PMC Article
6.

AC/D(eA)C rocks the polymerases.

Laitem C, Murphy S.

Mol Cell. 2013 Nov 7;52(3):287-8. doi: 10.1016/j.molcel.2013.10.025.

PMID:
24207021
[PubMed - indexed for MEDLINE]
Free Article
7.

hALP, a novel transcriptional U three protein (t-UTP), activates RNA polymerase I transcription by binding and acetylating the upstream binding factor (UBF).

Kong R, Zhang L, Hu L, Peng Q, Han W, Du X, Ke Y.

J Biol Chem. 2011 Mar 4;286(9):7139-48. doi: 10.1074/jbc.M110.173393. Epub 2010 Dec 22.

PMID:
21177859
[PubMed - indexed for MEDLINE]
Free PMC Article
8.

Inhibition of H3K18 deacetylation of Sirt7 by Myb-binding protein 1a (Mybbp1a).

Karim MF, Yoshizawa T, Sato Y, Sawa T, Tomizawa K, Akaike T, Yamagata K.

Biochem Biophys Res Commun. 2013 Nov 8;441(1):157-63. doi: 10.1016/j.bbrc.2013.10.020. Epub 2013 Oct 14.

PMID:
24134843
[PubMed - indexed for MEDLINE]
9.

Transcription factor UAF, expansion and contraction of ribosomal DNA (rDNA) repeats, and RNA polymerase switch in transcription of yeast rDNA.

Oakes M, Siddiqi I, Vu L, Aris J, Nomura M.

Mol Cell Biol. 1999 Dec;19(12):8559-69.

PMID:
10567580
[PubMed - indexed for MEDLINE]
Free PMC Article
10.

Constitutive and strong association of PAF53 with RNA polymerase I.

Seither P, Zatsepina O, Hoffmann M, Grummt I.

Chromosoma. 1997 Sep;106(4):216-25.

PMID:
9254723
[PubMed - indexed for MEDLINE]
11.

Acetylation of TAF(I)68, a subunit of TIF-IB/SL1, activates RNA polymerase I transcription.

Muth V, Nadaud S, Grummt I, Voit R.

EMBO J. 2001 Mar 15;20(6):1353-62.

PMID:
11250901
[PubMed - indexed for MEDLINE]
Free PMC Article
12.

Involvement of SIRT7 in resumption of rDNA transcription at the exit from mitosis.

Grob A, Roussel P, Wright JE, McStay B, Hernandez-Verdun D, Sirri V.

J Cell Sci. 2009 Feb 15;122(Pt 4):489-98. doi: 10.1242/jcs.042382. Epub 2009 Jan 27.

PMID:
19174463
[PubMed - indexed for MEDLINE]
Free PMC Article
13.

Sirtuin 7 plays a role in ribosome biogenesis and protein synthesis.

Tsai YC, Greco TM, Cristea IM.

Mol Cell Proteomics. 2014 Jan;13(1):73-83. doi: 10.1074/mcp.M113.031377. Epub 2013 Oct 10.

PMID:
24113281
[PubMed - indexed for MEDLINE]
14.

RNA polymerase I associated factor 53 binds to the nucleolar transcription factor UBF and functions in specific rDNA transcription.

Hanada K, Song CZ, Yamamoto K, Yano K, Maeda Y, Yamaguchi K, Muramatsu M.

EMBO J. 1996 May 1;15(9):2217-26.

PMID:
8641287
[PubMed - indexed for MEDLINE]
Free PMC Article
15.

Sirt7 increases stress resistance of cardiomyocytes and prevents apoptosis and inflammatory cardiomyopathy in mice.

Vakhrusheva O, Smolka C, Gajawada P, Kostin S, Boettger T, Kubin T, Braun T, Bober E.

Circ Res. 2008 Mar 28;102(6):703-10. doi: 10.1161/CIRCRESAHA.107.164558. Epub 2008 Jan 31.

PMID:
18239138
[PubMed - indexed for MEDLINE]
Free Article
16.

An acetylation/deacetylation-SUMOylation switch through a phylogenetically conserved psiKXEP motif in the tumor suppressor HIC1 regulates transcriptional repression activity.

Stankovic-Valentin N, Deltour S, Seeler J, Pinte S, Vergoten G, Guérardel C, Dejean A, Leprince D.

Mol Cell Biol. 2007 Apr;27(7):2661-75. Epub 2007 Feb 5.

PMID:
17283066
[PubMed - indexed for MEDLINE]
Free PMC Article
17.

Multiple histone deacetylases and the CREB-binding protein regulate pre-mRNA 3'-end processing.

Shimazu T, Horinouchi S, Yoshida M.

J Biol Chem. 2007 Feb 16;282(7):4470-8. Epub 2006 Dec 17.

PMID:
17172643
[PubMed - indexed for MEDLINE]
Free Article
18.

FOXO4 is acetylated upon peroxide stress and deacetylated by the longevity protein hSir2(SIRT1).

van der Horst A, Tertoolen LG, de Vries-Smits LM, Frye RA, Medema RH, Burgering BM.

J Biol Chem. 2004 Jul 9;279(28):28873-9. Epub 2004 May 4.

PMID:
15126506
[PubMed - indexed for MEDLINE]
Free Article
19.

Activation of RNA polymerase I transcription by cockayne syndrome group B protein and histone methyltransferase G9a.

Yuan X, Feng W, Imhof A, Grummt I, Zhou Y.

Mol Cell. 2007 Aug 17;27(4):585-95.

PMID:
17707230
[PubMed - indexed for MEDLINE]
Free Article
20.

Acetylation of UBF changes during the cell cycle and regulates the interaction of UBF with RNA polymerase I.

Meraner J, Lechner M, Loidl A, Goralik-Schramel M, Voit R, Grummt I, Loidl P.

Nucleic Acids Res. 2006 Mar 31;34(6):1798-806. Print 2006.

PMID:
16582105
[PubMed - indexed for MEDLINE]
Free PMC Article
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