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Bone density ligand, Sclerostin, directly interacts with LRP5 but not LRP5G171V to modulate Wnt activity. , Ellies DL, Viviano B, McCarthy J, Rey JP, Itasaki N, Saunders S, Krumlauf R ., J Bone Miner Res. November 1, 2006; 21 (11): 1738-49.
Wise, a context-dependent activator and inhibitor of Wnt signalling. , Itasaki N, Jones CM , Mercurio S, Rowe A, Domingos PM , Smith JC , Krumlauf R ., Development. September 1, 2003; 130 (18): 4295-305.
Initiating Hox gene expression: in the early chick neural tube differential sensitivity to FGF and RA signaling subdivides the HoxB genes in two distinct groups. , Bel-Vialar S, Itasaki N, Krumlauf R ., Development. November 1, 2002; 129 (22): 5103-15.
Krox20 and kreisler co-operate in the transcriptional control of segmental expression of Hoxb3 in the developing hindbrain. , Manzanares M, Nardelli J, Gilardi-Hebenstreit P, Marshall H, Giudicelli F, Martínez-Pastor MT, Krumlauf R , Charnay P., EMBO J. February 1, 2002; 21 (3): 365-76.
The Wnt/beta-catenin pathway posteriorizes neural tissue in Xenopus by an indirect mechanism requiring FGF signalling. , Domingos PM , Itasaki N, Jones CM , Mercurio S, Sargent MG, Smith JC , Krumlauf R ., Dev Biol. November 1, 2001; 239 (1): 148-60.
Independent regulation of initiation and maintenance phases of Hoxa3 expression in the vertebrate hindbrain involve auto- and cross-regulatory mechanisms. , Manzanares M, Bel-Vialar S, Ariza-McNaughton L, Ferretti E, Marshall H, Maconochie MM, Blasi F, Krumlauf R ., Development. September 1, 2001; 128 (18): 3595-607.
Regulatory analysis of the mouse Hoxb3 gene: multiple elements work in concert to direct temporal and spatial patterns of expression. , Kwan CT, Tsang SL, Krumlauf R , Sham MH., Dev Biol. April 1, 2001; 232 (1): 176-90.
Conserved and distinct roles of kreisler in regulation of the paralogous Hoxa3 and Hoxb3 genes. , Manzanares M, Cordes S, Ariza-McNaughton L, Sadl V, Maruthainar K, Barsh G, Krumlauf R ., Development. February 1, 1999; 126 (4): 759-69.
Initiation of rhombomeric Hoxb4 expression requires induction by somites and a retinoid pathway. , Gould A, Itasaki N, Krumlauf R ., Neuron. July 1, 1998; 21 (1): 39-51.
Misexpression of Cwnt8C in the mouse induces an ectopic embryonic axis and causes a truncation of the anterior neuroectoderm. , Pöpperl H, Schmidt C, Wilson V, Hume CR, Dodd J, Krumlauf R , Beddington RS., Development. August 1, 1997; 124 (15): 2997-3005.
Segmental regulation of Hoxb-3 by kreisler. , Manzanares M, Cordes S, Kwan CT, Sham MH, Barsh GS, Krumlauf R ., Nature. May 8, 1997; 387 (6629): 191-5.
Positive cross-regulation and enhancer sharing: two mechanisms for specifying overlapping Hox expression patterns. , Gould A, Morrison A, Sproat G, White RA, Krumlauf R ., Genes Dev. April 1, 1997; 11 (7): 900-13.
Transposon tools for recombinant DNA manipulation: characterization of transcriptional regulators from yeast, Xenopus, and mouse. , Morgan BA, Conlon FL , Manzanares M, Millar JB, Kanuga N, Sharpe J, Krumlauf R , Smith JC , Sedgwick SG., Proc Natl Acad Sci U S A. April 2, 1996; 93 (7): 2801-6.
Plasticity of transposed rhombomeres: Hox gene induction is correlated with phenotypic modifications. , Grapin-Botton A, Bonnin MA, McNaughton LA, Krumlauf R , Le Douarin NM., Development. September 1, 1995; 121 (9): 2707-21.
Molecular mechanisms of pattern formation in the vertebrate hindbrain. , Nieto MA, Bradley LC, Hunt P, Das Gupta R, Krumlauf R , Wilkinson DG ., Ciba Found Symp. January 1, 1992; 165 92-102; discussion 102-7.
Retinoic acid causes abnormal development and segmental patterning of the anterior hindbrain in Xenopus embryos. , Papalopulu N , Clarke JD, Bradley L, Wilkinson D, Krumlauf R , Holder N., Development. December 1, 1991; 113 (4): 1145-58.
The expression of murine Hox-2 genes is dependent on the differentiation pathway and displays a collinear sensitivity to retinoic acid in F9 cells and Xenopus embryos. , Papalopulu N , Lovell-Badge R, Krumlauf R ., Nucleic Acids Res. October 25, 1991; 19 (20): 5497-506.
Characterization of a murine homeo box gene, Hox-2.6, related to the Drosophila Deformed gene. , Graham A, Papalopulu N , Lorimer J, McVey JH, Tuddenham EG, Krumlauf R ., Genes Dev. November 1, 1988; 2 (11): 1424-38.