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Items: 1 to 20 of 50

1.

Gene regulatory networks in the evolution and development of the heart.

Olson EN.

Science. 2006 Sep 29;313(5795):1922-7. Review.

2.

Dishevelled genes mediate a conserved mammalian PCP pathway to regulate convergent extension during neurulation.

Wang J, Hamblet NS, Mark S, Dickinson ME, Brinkman BC, Segil N, Fraser SE, Chen P, Wallingford JB, Wynshaw-Boris A.

Development. 2006 May;133(9):1767-78. Epub 2006 Mar 29.

3.

CK2 as a positive regulator of Wnt signalling and tumourigenesis.

Seldin DC, Landesman-Bollag E, Farago M, Currier N, Lou D, Dominguez I.

Mol Cell Biochem. 2005 Jun;274(1-2):63-7. Review.

PMID:
16342409
4.

Protein kinase CK2 is required for dorsal axis formation in Xenopus embryos.

Dominguez I, Mizuno J, Wu H, Song DH, Symes K, Seldin DC.

Dev Biol. 2004 Oct 1;274(1):110-24.

5.

Beta-catenin is required for endothelial-mesenchymal transformation during heart cushion development in the mouse.

Liebner S, Cattelino A, Gallini R, Rudini N, Iurlaro M, Piccolo S, Dejana E.

J Cell Biol. 2004 Aug 2;166(3):359-67.

6.

Protein kinase CK2 as regulator of cell survival: implications for cancer therapy.

Unger GM, Davis AT, Slaton JW, Ahmed K.

Curr Cancer Drug Targets. 2004 Feb;4(1):77-84. Review.

PMID:
14965269
7.

Beta-catenin regulates Cripto- and Wnt3-dependent gene expression programs in mouse axis and mesoderm formation.

Morkel M, Huelsken J, Wakamiya M, Ding J, van de Wetering M, Clevers H, Taketo MM, Behringer RR, Shen MM, Birchmeier W.

Development. 2003 Dec;130(25):6283-94.

8.

The genetic basis of mammalian neurulation.

Copp AJ, Greene ND, Murdoch JN.

Nat Rev Genet. 2003 Oct;4(10):784-93. Review.

PMID:
13679871
9.

CK2 phosphorylation of the armadillo repeat region of beta-catenin potentiates Wnt signaling.

Song DH, Dominguez I, Mizuno J, Kaut M, Mohr SC, Seldin DC.

J Biol Chem. 2003 Jun 27;278(26):24018-25. Epub 2003 Apr 16.

10.

One-thousand-and-one substrates of protein kinase CK2?

Meggio F, Pinna LA.

FASEB J. 2003 Mar;17(3):349-68. Review.

PMID:
12631575
11.

Disruption of the regulatory beta subunit of protein kinase CK2 in mice leads to a cell-autonomous defect and early embryonic lethality.

Buchou T, Vernet M, Blond O, Jensen HH, Pointu H, Olsen BB, Cochet C, Issinger OG, Boldyreff B.

Mol Cell Biol. 2003 Feb;23(3):908-15.

12.

What cardiovascular defect does my prenatal mouse mutant have, and why?

Conway SJ, Kruzynska-Frejtag A, Kneer PL, Machnicki M, Koushik SV.

Genesis. 2003 Jan;35(1):1-21. Review.

PMID:
12481294
13.

A role for casein kinase 2alpha in the Drosophila circadian clock.

Lin JM, Kilman VL, Keegan K, Paddock B, Emery-Le M, Rosbash M, Allada R.

Nature. 2002 Dec 19-26;420(6917):816-20.

PMID:
12447397
14.

Functional interaction of protein kinase CK2 and c-Myc in lymphomagenesis.

Channavajhala P, Seldin DC.

Oncogene. 2002 Aug 8;21(34):5280-8.

15.

Genes targeted by protein kinase CK2: a genome-wide expression array analysis in yeast.

Ackermann K, Waxmann A, Glover CV, Pyerin W.

Mol Cell Biochem. 2001 Nov;227(1-2):59-66.

PMID:
11827175
16.

Crystal structure of human protein kinase CK2: insights into basic properties of the CK2 holoenzyme.

Niefind K, Guerra B, Ermakowa I, Issinger OG.

EMBO J. 2001 Oct 1;20(19):5320-31.

18.

Protein kinase CK2 in mammary gland tumorigenesis.

Landesman-Bollag E, Romieu-Mourez R, Song DH, Sonenshein GE, Cardiff RD, Seldin DC.

Oncogene. 2001 May 31;20(25):3247-57.

19.

Endogenous protein kinase CK2 participates in Wnt signaling in mammary epithelial cells.

Song DH, Sussman DJ, Seldin DC.

J Biol Chem. 2000 Aug 4;275(31):23790-7.

20.

Identification and characterization of CKIP-1, a novel pleckstrin homology domain-containing protein that interacts with protein kinase CK2.

Bosc DG, Graham KC, Saulnier RB, Zhang C, Prober D, Gietz RD, Litchfield DW.

J Biol Chem. 2000 May 12;275(19):14295-306.

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