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Summary Anatomy Item Literature (7748) Expression Attributions Wiki
XB-ANAT-11

Papers associated with brain (and erg)

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Cell landscape of larval and adult Xenopus laevis at single-cell resolution., Liao Y., Nat Commun. July 25, 2022; 13 (1): 4306.                                                        


Molecular mechanism of voltage-dependent potentiation of KCNH potassium channels., Dai G., Elife. April 27, 2017; 6               


Annexin A3 Regulates Early Blood Vessel Formation., Meadows SM., PLoS One. July 16, 2015; 10 (7): e0132580.            


Identification of distal enhancers for Six2 expression in pronephros., Suzuki N., Int J Dev Biol. January 1, 2015; 59 (4-6): 241-6.      


VEGFA-dependent and -independent pathways synergise to drive Scl expression and initiate programming of the blood stem cell lineage in Xenopus., Ciau-Uitz A., Development. June 1, 2013; 140 (12): 2632-42.                                                                                                                            


Systematic discovery of nonobvious human disease models through orthologous phenotypes., McGary KL., Proc Natl Acad Sci U S A. April 6, 2010; 107 (14): 6544-9.                                    


Generation of functional eyes from pluripotent cells., Viczian AS., PLoS Biol. August 1, 2009; 7 (8): e1000174.                                


Rasip1 is required for endothelial cell motility, angiogenesis and vessel formation., Xu K., Dev Biol. May 15, 2009; 329 (2): 269-79.      


Pleiotropic effects in Eya3 knockout mice., Söker T., BMC Dev Biol. June 23, 2008; 8 118.                    


A Myc-Slug (Snail2)/Twist regulatory circuit directs vascular development., Rodrigues CO., Development. June 1, 2008; 135 (11): 1903-11.              


Paracrine and autocrine mechanisms of apelin signaling govern embryonic and tumor angiogenesis., Kälin RE., Dev Biol. May 15, 2007; 305 (2): 599-614.                          


Apelin, the ligand for the endothelial G-protein-coupled receptor, APJ, is a potent angiogenic factor required for normal vascular development of the frog embryo., Cox CM., Dev Biol. August 1, 2006; 296 (1): 177-89.                  


Molecular cloning and expression of cERG, the ether à go-go-related gene from canine myocardium., Zehelein J., Pflugers Arch. May 1, 2001; 442 (2): 188-91.


Functional analysis of a mouse brain Elk-type K+ channel., Trudeau MC., J Neurosci. April 15, 1999; 19 (8): 2906-18.


Two isoforms of the mouse ether-a-go-go-related gene coassemble to form channels with properties similar to the rapidly activating component of the cardiac delayed rectifier K+ current., London B., Circ Res. November 1, 1997; 81 (5): 870-8.


Electrophysiological characterization of an alternatively processed ERG K+ channel in mouse and human hearts., Lees-Miller JP., Circ Res. November 1, 1997; 81 (5): 719-26.


Tissue and species distribution of mRNA for the IKr-like K+ channel, erg., Wymore RS., Circ Res. February 1, 1997; 80 (2): 261-8.


Xl-fli, the Xenopus homologue of the fli-1 gene, is expressed during embryogenesis in a restricted pattern evocative of neural crest cell distribution., Meyer D., Mech Dev. December 1, 1993; 44 (2-3): 109-21.                    


Novel members of the mitogen-activated protein kinase activator family in Xenopus laevis., Yashar BM., Mol Cell Biol. September 1, 1993; 13 (9): 5738-48.

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