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Liver Specification in the Absence of Cardiac Differentiation Revealed by Differential Sensitivity to Wnt/β Catenin Pathway Activation. , Haworth K, Samuel L, Black S , Kirilenko P, Latinkic B ., Front Physiol. January 1, 2019; 10 155.
Ventricular cell fate can be specified until the onset of myocardial differentiation. , Caporilli S, Latinkic BV ., Mech Dev. February 1, 2016; 139 31-41.
A functional connectome: regulation of Wnt/TCF-dependent transcription by pairs of pathway activators. , Freeman J, Smith D, Latinkic B , Ewan K, Samuel L, Zollo M , Marino N, Tyas L, Jones N, Dale TC., Mol Cancer. December 8, 2015; 14 206.
Cyclin D2 is a GATA4 cofactor in cardiogenesis. , Yamak A, Latinkic BV , Dali R, Temsah R, Nemer M., Proc Natl Acad Sci U S A. January 28, 2014; 111 (4): 1415-20.
A useful approach to identify novel small-molecule inhibitors of Wnt-dependent transcription. , Ewan K, Pajak B, Stubbs M, Todd H, Barbeau O, Quevedo C, Botfield H, Young R, Ruddle R, Samuel L, Battersby A, Raynaud F, Allen N, Wilson S , Latinkic B , Workman P, McDonald E, Blagg J, Aherne W, Dale T., Cancer Res. July 15, 2010; 70 (14): 5963-73.
MHCalpha and cardiogenesis. , Samuel LJ, Latinkic BV ., Development. January 1, 2010; 137 (1): 3; author reply 3-4.
NKCC1 ( SLC12a2) induces a secondary axis in Xenopus laevis embryos independently of its co-transporter function. , Walters ZS, Haworth KE, Latinkic BV ., J Physiol. February 1, 2009; 587 (3): 521-9.
Expression of Xenopus tropicalis HNF6/Onecut-1. , Haworth KE, Latinkic B ., Int J Dev Biol. January 1, 2009; 53 (1): 159-62.
GATA4 and GATA5 are essential for heart and liver development in Xenopus embryos. , Haworth KE, Kotecha S , Mohun TJ , Latinkic BV ., BMC Dev Biol. July 28, 2008; 8 74.
Xenopus laevis transgenesis by sperm nuclear injection. , Smith SJ , Fairclough L, Latinkic BV , Sparrow DB , Mohun TJ ., Nat Protoc. January 1, 2006; 1 (5): 2195-203.
Connective- tissue growth factor modulates WNT signalling and interacts with the WNT receptor complex. , Mercurio S, Latinkic B , Itasaki N, Krumlauf R , Smith JC ., Development. May 1, 2004; 131 (9): 2137-47.
Transcriptional regulation of the cardiac-specific MLC2 gene during Xenopus embryonic development. , Latinkic BV , Cooper B, Smith S , Kotecha S , Towers N , Sparrow D , Mohun TJ ., Development. February 1, 2004; 131 (3): 669-79.
Xenopus Cyr61 regulates gastrulation movements and modulates Wnt signalling. , Latinkic BV , Mercurio S, Bennett B, Hirst EM, Xu Q, Lau LF, Mohun TJ , Smith JC ., Development. June 1, 2003; 130 (11): 2429-41.
XPOX2-peroxidase expression and the XLURP-1 promoter reveal the site of embryonic myeloid cell development in Xenopus. , Smith SJ , Kotecha S , Towers N , Latinkic BV , Mohun TJ ., Mech Dev. September 1, 2002; 117 (1-2): 173-86.
Regulation of cardiac muscle differentiation in Xenopus laevis embryos. , Mohun T, Latinkic B , Towers N , Kotecha S ., Cold Spring Harb Symp Quant Biol. January 1, 2002; 67 13-8.
Regulation of the tinman homologues in Xenopus embryos. , Sparrow DB , Cai C, Kotecha S , Latinkic B , Cooper B, Towers N , Evans SM, Mohun TJ ., Dev Biol. November 1, 2000; 227 (1): 65-79.
Region-specific activation of the Xenopus brachyury promoter involves active repression in ectoderm and endoderm: a study using transgenic frog embryos. , Lerchner W, Latinkic BV , Remacle JE, Huylebroeck D , Smith JC ., Development. June 1, 2000; 127 (12): 2729-39.
A simplified method of generating transgenic Xenopus. , Sparrow DB , Latinkic B , Mohun TJ ., Nucleic Acids Res. February 15, 2000; 28 (4): E12.
Goosecoid and mix.1 repress Brachyury expression and are required for head formation in Xenopus. , Latinkic BV , Smith JC ., Development. April 1, 1999; 126 (8): 1769-79.