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Items: 22

1.

Proteome-wide dataset supporting the study of ancient metazoan macromolecular complexes.

Phanse S, Wan C, Borgeson B, Tu F, Drew K, Clark G, Xiong X, Kagan O, Kwan J, Bezginov A, Chessman K, Pal S, Cromar G, Papoulas O, Ni Z, Boutz DR, Stoilova S, Havugimana PC, Guo X, Malty RH, Sarov M, Greenblatt J, Babu M, Derry WB, Tillier ER, Wallingford JB, Parkinson J, Marcotte EM, Emili A.

Data Brief. 2015 Dec 12;6:715-21. doi: 10.1016/j.dib.2015.11.062. eCollection 2016 Mar.

2.

Panorama of ancient metazoan macromolecular complexes.

Wan C, Borgeson B, Phanse S, Tu F, Drew K, Clark G, Xiong X, Kagan O, Kwan J, Bezginov A, Chessman K, Pal S, Cromar G, Papoulas O, Ni Z, Boutz DR, Stoilova S, Havugimana PC, Guo X, Malty RH, Sarov M, Greenblatt J, Babu M, Derry WB, Tillier ER, Wallingford JB, Parkinson J, Marcotte EM, Emili A.

Nature. 2015 Sep 17;525(7569):339-44. doi: 10.1038/nature14877. Epub 2015 Sep 7.

3.

Controlled Measurement and Comparative Analysis of Cellular Components in E. coli Reveals Broad Regulatory Changes in Response to Glucose Starvation.

Houser JR, Barnhart C, Boutz DR, Carroll SM, Dasgupta A, Michener JK, Needham BD, Papoulas O, Sridhara V, Sydykova DK, Marx CJ, Trent MS, Barrick JE, Marcotte EM, Wilke CO.

PLoS Comput Biol. 2015 Aug 14;11(8):e1004400. doi: 10.1371/journal.pcbi.1004400. eCollection 2015 Aug.

4.

The DEAH-box helicase Dhr1 dissociates U3 from the pre-rRNA to promote formation of the central pseudoknot.

Sardana R, Liu X, Granneman S, Zhu J, Gill M, Papoulas O, Marcotte EM, Tollervey D, Correll CC, Johnson AW.

PLoS Biol. 2015 Feb 24;13(2):e1002083. doi: 10.1371/journal.pbio.1002083. eCollection 2015 Feb.

5.

Caprin controls follicle stem cell fate in the Drosophila ovary.

Reich J, Papoulas O.

PLoS One. 2012;7(4):e35365. doi: 10.1371/journal.pone.0035365. Epub 2012 Apr 6.

6.

dFMRP and Caprin, translational regulators of synaptic plasticity, control the cell cycle at the Drosophila mid-blastula transition.

Papoulas O, Monzo KF, Cantin GT, Ruse C, Yates JR 3rd, Ryu YH, Sisson JC.

Development. 2010 Dec;137(24):4201-9. doi: 10.1242/dev.055046. Epub 2010 Nov 10.

7.

Rapid separation of protein-bound DNA from free DNA using nitrocellulose filters.

Papoulas O.

Curr Protoc Mol Biol. 2001 May;Chapter 12:Unit 12.8. doi: 10.1002/0471142727.mb1208s36.

PMID:
18265091
8.

Fragile X mental retardation protein controls trailer hitch expression and cleavage furrow formation in Drosophila embryos.

Monzo K, Papoulas O, Cantin GT, Wang Y, Yates JR 3rd, Sisson JC.

Proc Natl Acad Sci U S A. 2006 Nov 28;103(48):18160-5. Epub 2006 Nov 16.

9.

Genetic screens for enhancers of brahma reveal functional interactions between the BRM chromatin-remodeling complex and the delta-notch signal transduction pathway in Drosophila.

Armstrong JA, Sperling AS, Deuring R, Manning L, Moseley SL, Papoulas O, Piatek CI, Doe CQ, Tamkun JW.

Genetics. 2005 Aug;170(4):1761-74. Epub 2005 Jun 8.

10.

The golgin Lava lamp mediates dynein-based Golgi movements during Drosophila cellularization.

Papoulas O, Hays TS, Sisson JC.

Nat Cell Biol. 2005 Jun;7(6):612-8. Epub 2004 May 22.

PMID:
15908943
11.

Essential function of Drosophila Sec6 in apical exocytosis of epithelial photoreceptor cells.

Beronja S, Laprise P, Papoulas O, Pellikka M, Sisson J, Tepass U.

J Cell Biol. 2005 May 23;169(4):635-46. Epub 2005 May 16.

12.

The Drosophila BRM complex facilitates global transcription by RNA polymerase II.

Armstrong JA, Papoulas O, Daubresse G, Sperling AS, Lis JT, Scott MP, Tamkun JW.

EMBO J. 2002 Oct 1;21(19):5245-54.

13.

The ZW10 and Rough Deal checkpoint proteins function together in a large, evolutionarily conserved complex targeted to the kinetochore.

Scaƫrou F, Starr DA, Piano F, Papoulas O, Karess RE, Goldberg ML.

J Cell Sci. 2001 Sep;114(Pt 17):3103-14.

14.

The HMG-domain protein BAP111 is important for the function of the BRM chromatin-remodeling complex in vivo.

Papoulas O, Daubresse G, Armstrong JA, Jin J, Scott MP, Tamkun JW.

Proc Natl Acad Sci U S A. 2001 May 8;98(10):5728-33. Epub 2001 May 1.

15.

Mutations in Drosophila heat shock cognate 4 are enhancers of Polycomb.

Mollaaghababa R, Sipos L, Tiong SY, Papoulas O, Armstrong JA, Tamkun JW, Bender W.

Proc Natl Acad Sci U S A. 2001 Mar 27;98(7):3958-63.

16.
17.

The ISWI chromatin-remodeling protein is required for gene expression and the maintenance of higher order chromatin structure in vivo.

Deuring R, Fanti L, Armstrong JA, Sarte M, Papoulas O, Prestel M, Daubresse G, Verardo M, Moseley SL, Berloco M, Tsukiyama T, Wu C, Pimpinelli S, Tamkun JW.

Mol Cell. 2000 Feb;5(2):355-65.

18.

The Drosophila kismet gene is related to chromatin-remodeling factors and is required for both segmentation and segment identity.

Daubresse G, Deuring R, Moore L, Papoulas O, Zakrajsek I, Waldrip WR, Scott MP, Kennison JA, Tamkun JW.

Development. 1999 Mar;126(6):1175-87.

19.

The Drosophila trithorax group proteins BRM, ASH1 and ASH2 are subunits of distinct protein complexes.

Papoulas O, Beek SJ, Moseley SL, McCallum CM, Sarte M, Shearn A, Tamkun JW.

Development. 1998 Oct;125(20):3955-66.

20.

Genetic analysis of brahma: the Drosophila homolog of the yeast chromatin remodeling factor SWI2/SNF2.

Elfring LK, Daniel C, Papoulas O, Deuring R, Sarte M, Moseley S, Beek SJ, Waldrip WR, Daubresse G, DePace A, Kennison JA, Tamkun JW.

Genetics. 1998 Jan;148(1):251-65.

21.

Differential binding of c-Myc and Max to nucleosomal DNA.

Wechsler DS, Papoulas O, Dang CV, Kingston RE.

Mol Cell Biol. 1994 Jun;14(6):4097-107.

22.

DNA binding activities of c-Myc purified from eukaryotic cells.

Papoulas O, Williams NG, Kingston RE.

J Biol Chem. 1992 May 25;267(15):10470-80.

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