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Summary Anatomy Item Literature (4897) Expression Attributions Wiki
XB-ANAT-3713

Papers associated with left (and tpm3)

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Translesion DNA synthesis-driven mutagenesis in very early embryogenesis of fast cleaving embryos., Lo Furno E., Nucleic Acids Res. January 25, 2022; 50 (2): 885-898.                          


Mechanistic insights into volatile anesthetic modulation of K2P channels., Wague A., Elife. December 21, 2020; 9                   


Structure/Activity Analysis of TASK-3 Channel Antagonists Based on a 5,6,7,8 tetrahydropyrido[4,3-d]pyrimidine., Ramírez D., Int J Mol Sci. May 7, 2019; 20 (9):             


Identification by virtual screening and functional characterisation of novel positive and negative allosteric modulators of the α7 nicotinic acetylcholine receptor., Smelt CLC., Neuropharmacology. September 1, 2018; 139 194-204.                


Potentiation of Neuronal Nicotinic Receptors by 17β-Estradiol: Roles of the Carboxy-Terminal and the Amino-Terminal Extracellular Domains., Jin X., PLoS One. January 1, 2015; 10 (12): e0144631.        


Hydrocarbon molar water solubility predicts NMDA vs. GABAA receptor modulation., Brosnan RJ., BMC Pharmacol Toxicol. November 19, 2014; 15 62.          


Route, mechanism, and implications of proton import during Na+/K+ exchange by native Na+/K+-ATPase pumps., Vedovato N., J Gen Physiol. April 1, 2014; 143 (4): 449-64.                  


Analysis of trafficking, stability and function of human connexin 26 gap junction channels with deafness-causing mutations in the fourth transmembrane helix., Ambrosi C., PLoS One. January 1, 2013; 8 (8): e70916.                        


Competitive binding at a nicotinic receptor transmembrane site of two α7-selective positive allosteric modulators with differing effects on agonist-evoked desensitization., Collins T., Neuropharmacology. December 1, 2011; 61 (8): 1306-13.              


SCAM analysis of Panx1 suggests a peculiar pore structure., Wang J., J Gen Physiol. November 1, 2010; 136 (5): 515-27.                  


An atlas of differential gene expression during early Xenopus embryogenesis., Pollet N., Mech Dev. March 1, 2005; 122 (3): 365-439.                                                                                                                                                        


Exploration of the extracellular space by a large-scale secretion screen in the early Xenopus embryo., Pera EM., Int J Dev Biol. January 1, 2005; 49 (7): 781-96.                                  


Single-channel SCAM identifies pore-lining residues in the first extracellular loop and first transmembrane domains of Cx46 hemichannels., Kronengold J., J Gen Physiol. October 1, 2003; 122 (4): 389-405.                    

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