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Summary Anatomy Item Literature (3729) Expression Attributions Wiki
XB-ANAT-99

Papers associated with cardiovascular system (and ins)

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X-box-binding protein 1 is required for pancreatic development in Xenopus laevis., Yang J., Acta Biochim Biophys Sin (Shanghai). December 11, 2020; 52 (11): 1215-1226.                  


Liver Specification in the Absence of Cardiac Differentiation Revealed by Differential Sensitivity to Wnt/β Catenin Pathway Activation., Haworth K., Front Physiol. January 1, 2019; 10 155.              


Regulation of the insulin-Akt signaling pathway and glycolysis during dehydration stress in the African clawed frog Xenopus laevis., Wu CW., Biochem Cell Biol. December 1, 2017; 95 (6): 663-671.


Xenopus pax6 mutants affect eye development and other organ systems, and have phenotypic similarities to human aniridia patients., Nakayama T., Dev Biol. December 15, 2015; 408 (2): 328-44.                              


Insulin suppresses IKs (KCNQ1/KCNE1) currents, which require β-subunit KCNE1., Wu M., Pflugers Arch. May 1, 2014; 466 (5): 937-46.


Characterization of the insulin-like growth factor binding protein family in Xenopus tropicalis., Haramoto Y., Int J Dev Biol. January 1, 2014; 58 (9): 705-11.                                            


Retinoic acid-activated Ndrg1a represses Wnt/β-catenin signaling to allow Xenopus pancreas, oesophagus, stomach, and duodenum specification., Zhang T., PLoS One. May 15, 2013; 8 (5): e65058.                  


Functional analysis of Rfx6 and mutant variants associated with neonatal diabetes., Pearl EJ., Dev Biol. March 1, 2011; 351 (1): 135-45.                    


Programming pluripotent precursor cells derived from Xenopus embryos to generate specific tissues and organs., Borchers A., Genes (Basel). November 18, 2010; 1 (3): 413-26.      


Disease progression and search for monogenic diabetes among children with new onset type 1 diabetes negative for ICA, GAD- and IA-2 Antibodies., Pörksen S., BMC Endocr Disord. September 23, 2010; 10 16.      


Molecular and functional characterization of two distinct IGF binding protein-6 genes in zebrafish., Wang X., Am J Physiol Regul Integr Comp Physiol. May 1, 2009; 296 (5): R1348-57.


IGFBP-4 is an inhibitor of canonical Wnt signalling required for cardiogenesis., Zhu W., Nature. July 17, 2008; 454 (7202): 345-9.                        


Iptakalim, a vascular ATP-sensitive potassium (KATP) channel opener, closes rat pancreatic beta-cell KATP channels and increases insulin release., Misaki N., J Pharmacol Exp Ther. August 1, 2007; 322 (2): 871-8.


Characterization of the agr2 gene, a homologue of X. laevis anterior gradient 2, from the zebrafish, Danio rerio., Shih LJ., Gene Expr Patterns. February 1, 2007; 7 (4): 452-60.                


Expression analysis of IGFBP-rP10, IGFBP-like and Mig30 in early Xenopus development., Kuerner KM., Dev Dyn. October 1, 2006; 235 (10): 2861-7.                                          


GLUT8 is dispensable for embryonic development but influences hippocampal neurogenesis and heart function., Membrez M., Mol Cell Biol. June 1, 2006; 26 (11): 4268-76.


Connective-tissue growth factor modulates WNT signalling and interacts with the WNT receptor complex., Mercurio S., Development. May 1, 2004; 131 (9): 2137-47.                    


Evolving potassium channels by means of yeast selection reveals structural elements important for selectivity., Bichet D., Proc Natl Acad Sci U S A. March 30, 2004; 101 (13): 4441-6.


Inhibition of ATP-sensitive K+ channels by taurine through a benzamido-binding site on sulfonylurea receptor 1., Park EJ., Biochem Pharmacol. March 15, 2004; 67 (6): 1089-96.


Xenopus Cyr61 regulates gastrulation movements and modulates Wnt signalling., Latinkic BV., Development. June 1, 2003; 130 (11): 2429-41.        


Mouse system-N amino acid transporter, mNAT3, expressed in hepatocytes and regulated by insulin-activated and phosphoinositide 3-kinase-dependent signalling., Gu S., Biochem J. May 1, 2003; 371 (Pt 3): 721-31.


Differential selectivity of insulin secretagogues: mechanisms, clinical implications, and drug interactions., Gribble FM., J Diabetes Complications. January 1, 2003; 17 (2 Suppl): 11-5.


The 25-kDa synaptosome-associated protein (SNAP-25) binds and inhibits delayed rectifier potassium channels in secretory cells., Ji J., J Biol Chem. June 7, 2002; 277 (23): 20195-204.


Endoderm is required for vascular endothelial tube formation, but not for angioblast specification., Vokes SA., Development. February 1, 2002; 129 (3): 775-85.            


Gene expression for a novel protein RGPR-p117 in various species: the stimulation by intracellular signaling factors., Misawa H., J Cell Biochem. January 1, 2002; 87 (2): 188-93.


The voltage-gated Ca2+ channel is the Ca2+ sensor of fast neurotransmitter release., Atlas D., Cell Mol Neurobiol. December 1, 2001; 21 (6): 717-31.


Induction of pancreatic differentiation by signals from blood vessels., Lammert E., Science. October 19, 2001; 294 (5542): 564-7.


The small muscle-specific protein Csl modifies cell shape and promotes myocyte fusion in an insulin-like growth factor 1-dependent manner., Palmer S., J Cell Biol. May 28, 2001; 153 (5): 985-98.                    


Growth factors regulate phototransduction in retinal rods by modulating cyclic nucleotide-gated channels through dephosphorylation of a specific tyrosine residue., Savchenko A., Proc Natl Acad Sci U S A. May 8, 2001; 98 (10): 5880-5.


DAPIT, a novel protein down-regulated in insulin-sensitive tissues in streptozotocin-induced diabetes., Päivärinne H., Acta Diabetol. January 1, 2001; 38 (2): 83-6.


Impaired insulin secretion and beta-cell loss in tissue-specific knockout mice with mitochondrial diabetes., Silva JP., Nat Genet. November 1, 2000; 26 (3): 336-40.


Development of the pancreas in Xenopus laevis., Kelly OG., Dev Dyn. August 1, 2000; 218 (4): 615-27.                  


Analysis of farnesyl transferase activity during hormone-induced maturation of Xenopus laevis oocytes., Goalstone ML., J Exp Zool. February 1, 2000; 286 (2): 193-203.


Cloning of a T-type Ca2+ channel isoform in insulin-secreting cells., Zhuang H., Diabetes. January 1, 2000; 49 (1): 59-64.


Altered functional properties of KATP channel conferred by a novel splice variant of SUR1., Sakura H., J Physiol. December 1, 1999; 521 Pt 2 337-50.


Cloning of the Xenopus laevis aldolase C gene and analysis of its promoter function in developing Xenopus embryos and A6 cells., Yatsuki H., Biochim Biophys Acta. November 8, 1998; 1442 (2-3): 199-217.                              


Tissue specificity of sulfonylureas: studies on cloned cardiac and beta-cell K(ATP) channels., Gribble FM., Diabetes. September 1, 1998; 47 (9): 1412-8.


Primary structure and functional expression of a novel non-selective cation channel., Suzuki M., Biochem Biophys Res Commun. January 6, 1998; 242 (1): 191-6.


Phentolamine block of KATP channels is mediated by Kir6.2., Proks P., Proc Natl Acad Sci U S A. October 14, 1997; 94 (21): 11716-20.


Characterization of the human and rat phospholemman (PLM) cDNAs and localization of the human PLM gene to chromosome 19q13.1., Chen LS., Genomics. May 1, 1997; 41 (3): 435-43.


PACAP/VIP receptors in pancreatic beta-cells: their roles in insulin secretion., Inagaki N., Ann N Y Acad Sci. December 26, 1996; 805 44-51; discussion 52-3.


Differences between the catalytic properties of recombinant human PC2 and endogenous rat PC2., Bailyes EM., Biochem J. July 15, 1995; 309 ( Pt 2) 587-94.


Cloning and functional characterization of a third pituitary adenylate cyclase-activating polypeptide receptor subtype expressed in insulin-secreting cells., Inagaki N., Proc Natl Acad Sci U S A. March 29, 1994; 91 (7): 2679-83.


Species and tissue distribution of the regulatory protein of glucokinase., Vandercammen A., Biochem J. September 1, 1993; 294 ( Pt 2) 551-6.


Kinetics of GLUT1 and GLUT4 glucose transporters expressed in Xenopus oocytes., Nishimura H., J Biol Chem. April 25, 1993; 268 (12): 8514-20.


Sequential activation of MAP kinase activator, MAP kinases, and S6 peptide kinase in intact rat liver following insulin injection., Tobe K., J Biol Chem. October 15, 1992; 267 (29): 21089-97.


Evolution of insulin-like growth factor I (IGF-I): structure and expression of an IGF-I precursor from Xenopus laevis., Kajimoto Y., Mol Endocrinol. February 1, 1990; 4 (2): 217-26.


Insulin-like growth factor I (IGF-I) enhances hyaluronic acid synthesis in rabbit pericardium., Honda A., Biochim Biophys Acta. December 14, 1989; 1014 (3): 305-12.


Identification of a novel gene encoding an insulin-responsive glucose transporter protein., Birnbaum MJ., Cell. April 21, 1989; 57 (2): 305-15.


The effects of xenopsin of endocrine pancreas and gastric antrum in dogs., Kawanishi K., Horm Metab Res. July 1, 1978; 10 (4): 283-6.

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