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Spatial and temporal expression of the Grainyhead-like transcription factor family during murine development. , Auden A., Gene Expr Patterns. October 1, 2006; 6 (8): 964-70.
Distinct domain-dependent effect of syntaxin1A on amiloride-sensitive sodium channel (ENaC) currents in HT-29 colonic epithelial cells. , Saxena SK., Int J Biol Sci. November 6, 2006; 3 (1): 47-56.
The immunoglobulin-like domain is involved in interaction of Neuregulin1 with ErbB. , Eto K., Biochem Biophys Res Commun. November 17, 2006; 350 (2): 263-71.
Shh/ BMP-4 signaling pathway is essential for intestinal epithelial development during Xenopus larval-to-adult remodeling. , Ishizuya-Oka A ., Dev Dyn. December 1, 2006; 235 (12): 3240-9.
Recent progress in structure-function analyses of Nramp proton-dependent metal-ion transporters. , Courville P., Biochem Cell Biol. December 1, 2006; 84 (6): 960-78.
Identification of an intestinal folate transporter and the molecular basis for hereditary folate malabsorption. , Qiu A., Cell. December 1, 2006; 127 (5): 917-28.
Amino terminal tyrosine phosphorylation of human MIXL1. , Guo W., J Mol Signal. December 5, 2006; 1 6.
RAP55, a cytoplasmic mRNP component, represses translation in Xenopus oocytes. , Tanaka KJ., J Biol Chem. December 29, 2006; 281 (52): 40096-106.
Lung specific developmental expression of the Xenopus laevis surfactant protein C and B genes. , Hyatt BA ., Gene Expr Patterns. January 1, 2007; 7 (1-2): 8-14.
Evidence for a cooperative role of gelatinase A and membrane type-1 matrix metalloproteinase during Xenopus laevis development. , Hasebe T ., Mech Dev. January 1, 2007; 124 (1): 11-22.
FoxN3 is required for craniofacial and eye development of Xenopus laevis. , Schuff M., Dev Dyn. January 1, 2007; 236 (1): 226-39.
The effects of quinidine and its chiral isolates on erg-1sm potassium current and correlation with gastrointestinal augmentation. , Cvetanovic I., Am J Ther. January 1, 2007; 14 (3): 269-76.
Roles of Matrix Metalloproteinases and ECM Remodeling during Thyroid Hormone-Dependent Intestinal Metamorphosis in Xenopus laevis. , Fu L., Organogenesis. January 1, 2007; 3 (1): 14-9.
Inhibition of the intestinal absorption of bile acids using cationic derivatives: mechanism and repercussions. , Vicens M., Biochem Pharmacol. February 1, 2007; 73 (3): 394-404.
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.
Regeneration of the amphibian intestinal epithelium under the control of stem cell niche. , Ishizuya-Oka A ., Dev Growth Differ. February 1, 2007; 49 (2): 99-107.
Expression of matrix metalloproteinase genes in regressing or remodeling organs during amphibian metamorphosis. , Fujimoto K ., Dev Growth Differ. February 1, 2007; 49 (2): 131-43.
Disease-associated casein kinase I delta mutation may promote adenomatous polyps formation via a Wnt/beta-catenin independent mechanism. , Tsai IC., Int J Cancer. March 1, 2007; 120 (5): 1005-12.
Intestinal morphogenesis. , Rubin DC., Curr Opin Gastroenterol. March 1, 2007; 23 (2): 111-4.
Chlamydiae in free-ranging and captive frogs in Switzerland. , Blumer C., Vet Pathol. March 1, 2007; 44 (2): 144-50.
Transport of nicotinate and structurally related compounds by human SMCT1 (SLC5A8) and its relevance to drug transport in the mammalian intestinal tract. , Gopal E., Pharm Res. March 1, 2007; 24 (3): 575-84.
WNK4 regulates activity of the epithelial Na+ channel in vitro and in vivo. , Ring AM., Proc Natl Acad Sci U S A. March 6, 2007; 104 (10): 4020-4.
Evaluation of the effects of the marine toxin okadaic acid by using FETAX assay. , Casarini L., Toxicol Lett. March 8, 2007; 169 (2): 145-51.
Pairing morphology with gene expression in thyroid hormone-induced intestinal remodeling and identification of a core set of TH-induced genes across tadpole tissues. , Buchholz DR ., Dev Biol. March 15, 2007; 303 (2): 576-90.
Novel cationic and neutral glycocholic acid and polyamine conjugates able to inhibit transporters involved in hepatic and intestinal bile acid uptake. , Vicens M., Bioorg Med Chem. March 15, 2007; 15 (6): 2359-67.
Functional properties of multiple isoforms of human divalent metal-ion transporter 1 ( DMT1). , Mackenzie B., Biochem J. April 1, 2007; 403 (1): 59-69.
Physiological and molecular mechanisms of inorganic phosphate handling in the toad Bufo bufo. , Møbjerg N., Pflugers Arch. April 1, 2007; 454 (1): 101-13.
Regulation of anion exchanger Slc26a6 by protein kinase C. , Hassan HA., Am J Physiol Cell Physiol. April 1, 2007; 292 (4): C1485-92.
Heme carrier protein 1 ( HCP1) expression and functional analysis in the retina and retinal pigment epithelium. , Sharma S., Exp Cell Res. April 1, 2007; 313 (6): 1251-9.
TSC-box is essential for the nuclear localization and antiproliferative effect of XTSC-22. , Hashiguchi A., Dev Growth Differ. April 1, 2007; 49 (3): 197-204.
p42MAPK-mediated phosphorylation of xEIAP/ XLX in Xenopus cytostatic factor-arrested egg extracts. , Tsuchiya Y., BMC Biochem. April 11, 2007; 8 5.
Differential ability of Ptf1a and Ptf1a-VP16 to convert stomach, duodenum and liver to pancreas. , Jarikji ZH ., Dev Biol. April 15, 2007; 304 (2): 786-99.
Prospective isolation and global gene expression analysis of definitive and visceral endoderm. , Sherwood RI., Dev Biol. April 15, 2007; 304 (2): 541-55.
Zebrafish Slc5a12 encodes an electroneutral sodium monocarboxylate transporter (SMCTn). A comparison with the electrogenic SMCT (SMCTe/Slc5a8). , Plata C., J Biol Chem. April 20, 2007; 282 (16): 11996-2009.
Ultrastructural observations of the tunica muscularis in the small intestine of Xenopus laevis, with special reference to the interstitial cells of Cajal. , Miyamoto-Kikuta S., Cell Tissue Res. May 1, 2007; 328 (2): 271-9.
Functional analysis of the aquaporin gene family in Caenorhabditis elegans. , Huang CG., Am J Physiol Cell Physiol. May 1, 2007; 292 (5): C1867-73.
Oxidative stress, tissue remodeling and regression during amphibian metamorphosis. , Menon J., Comp Biochem Physiol C Toxicol Pharmacol. May 1, 2007; 145 (4): 625-31.
The competence of Xenopus blastomeres to produce neural and retinal progeny is repressed by two endo- mesoderm promoting pathways. , Yan B ., Dev Biol. May 1, 2007; 305 (1): 103-19.
Plethodontid modulating factor, a hypervariable salamander courtship pheromone in the three-finger protein superfamily. , Palmer CA., FEBS J. May 1, 2007; 274 (9): 2300-10.
Characterization of histone lysine-specific demethylase in relation to thyroid hormone-regulated anuran metamorphosis. , Chen W., Dev Growth Differ. May 1, 2007; 49 (4): 325-34.
Two distinct aquaporin-4 cDNAs isolated from medullary cone of quail kidney. , Yang Y ., Comp Biochem Physiol A Mol Integr Physiol. May 1, 2007; 147 (1): 84-93.
Swept source optical coherence microscopy using a Fourier domain mode-locked laser. , Huang SW., Opt Express. May 14, 2007; 15 (10): 6210-7.
Recycling of aromatic amino acids via TAT1 allows efflux of neutral amino acids via LAT2-4F2hc exchanger. , Ramadan T., Pflugers Arch. June 1, 2007; 454 (3): 507-16.
Xenopus cDNA microarray identification of genes with endodermal organ expression. , Park EC ., Dev Dyn. June 1, 2007; 236 (6): 1633-49.
Repression of Wnt/beta-catenin signaling in the anterior endoderm is essential for liver and pancreas development. , McLin VA ., Development. June 1, 2007; 134 (12): 2207-17.
Amphibian metamorphosis. , Brown DD ., Dev Biol. June 1, 2007; 306 (1): 20-33.
Effects of lipopolysaccharide on intestinal P-glycoprotein expression and activity. , Moriguchi J., Eur J Pharmacol. June 22, 2007; 565 (1-3): 220-4.
Expression profiles of the duplicated matrix metalloproteinase-9 genes suggest their different roles in apoptosis of larval intestinal epithelial cells during Xenopus laevis metamorphosis. , Hasebe T ., Dev Dyn. August 1, 2007; 236 (8): 2338-45.
Ectopic germline cells in embryos of Xenopus laevis. , Ikenishi K ., Dev Growth Differ. September 1, 2007; 49 (7): 561-70.
Tripeptides of RS1 ( RSC1A1) inhibit a monosaccharide-dependent exocytotic pathway of Na+-D-glucose cotransporter SGLT1 with high affinity. , Vernaleken A., J Biol Chem. September 28, 2007; 282 (39): 28501-13.