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Summary Anatomy Item Literature (14955) Expression Attributions Wiki
XB-ANAT-468

Papers associated with whole organism (and has2)

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Cell contacts and pericellular matrix in the Xenopus gastrula chordamesoderm., Luu O., PLoS One. January 1, 2024; 19 (2): e0297420.                  


Cell-cell contact landscapes in Xenopus gastrula tissues., Barua D., Proc Natl Acad Sci U S A. September 28, 2021; 118 (39):                                           


Using an aquatic model, Xenopus laevis, to uncover the role of chromodomain 1 in craniofacial disorders., Wyatt BH., Genesis. February 1, 2021; 59 (1-2): e23394.                        


Expression of hyaluronan synthases upregulated by thyroid hormone is involved in intestinal stem cell development during Xenopus laevis metamorphosis., Fujimoto K., Dev Genes Evol. December 1, 2018; 228 (6): 267-273.


Hyaluronan is required for cranial neural crest cells migration and craniofacial development., Casini P., Dev Dyn. February 1, 2012; 241 (2): 294-302.              


Distinct Xenopus Nodal ligands sequentially induce mesendoderm and control gastrulation movements in parallel to the Wnt/PCP pathway., Luxardi G., Development. February 1, 2010; 137 (3): 417-26.          


Early requirement of Hyaluronan for tail regeneration in Xenopus tadpoles., Contreras EG., Development. September 1, 2009; 136 (17): 2987-96.                    


In vitro organogenesis from undifferentiated cells in Xenopus., Asashima M., Dev Dyn. June 1, 2009; 238 (6): 1309-20.                      


XHAPLN3 plays a key role in cardiogenesis by maintaining the hyaluronan matrix around heart anlage., Ito Y., Dev Biol. July 1, 2008; 319 (1): 34-45.                          


XHas2 activity is required during somitogenesis and precursor cell migration in Xenopus development., Ori M., Development. February 1, 2006; 133 (4): 631-40.                        


Microarray-based identification of VegT targets in Xenopus., Taverner NV., Mech Dev. March 1, 2005; 122 (3): 333-54.                                          


Regulated gene expression of hyaluronan synthases during Xenopus laevis development., Nardini M., Gene Expr Patterns. May 1, 2004; 4 (3): 303-8.        


Has2 is required upstream of Rac1 to govern dorsal migration of lateral cells during zebrafish gastrulation., Bakkers J., Development. February 1, 2004; 131 (3): 525-37.


Effects of TGF-beta on hyaluronan anabolism in fibroblasts derived from the synovial membrane of the rabbit temporomandibular joint., Tanimoto K., J Dent Res. January 1, 2004; 83 (1): 40-4.


The human hyaluronan synthase genes: genomic structures, proximal promoters and polymorphic microsatellite markers., Monslow J., Int J Biochem Cell Biol. August 1, 2003; 35 (8): 1272-83.


Characterization of hyaluronan synthase expression and hyaluronan synthesis in bone marrow mesenchymal progenitor cells: predominant expression of HAS1 mRNA and up-regulated hyaluronan synthesis in bone marrow cells derived from multiple myeloma patients., Calabro A., Blood. October 1, 2002; 100 (7): 2578-85.


Manipulation of hyaluronan synthase expression in prostate adenocarcinoma cells alters pericellular matrix retention and adhesion to bone marrow endothelial cells., Simpson MA., J Biol Chem. March 22, 2002; 277 (12): 10050-7.


Platelet-derived growth factor stimulates the formation of versican-hyaluronan aggregates and pericellular matrix expansion in arterial smooth muscle cells., Evanko SP., Arch Biochem Biophys. October 1, 2001; 394 (1): 29-38.


Up-regulation of putative hyaluronan synthase mRNA by basic fibroblast growth factor and insulin-like growth factor-1 in human skin fibroblasts., Kuroda K., J Dermatol Sci. June 1, 2001; 26 (2): 156-60.


Hyaluronan synthase elevation in metastatic prostate carcinoma cells correlates with hyaluronan surface retention, a prerequisite for rapid adhesion to bone marrow endothelial cells., Simpson MA., J Biol Chem. May 25, 2001; 276 (21): 17949-57.


Regulation of renal proximal tubular epithelial cell hyaluronan generation: implications for diabetic nephropathy., Jones S., Kidney Int. May 1, 2001; 59 (5): 1739-49.


Differential regulation and expression of hyaluronan synthases in human articular chondrocytes, synovial cells and osteosarcoma cells., Recklies AD., Biochem J. February 15, 2001; 354 (Pt 1): 17-24.


Glucocorticoids induce a near-total suppression of hyaluronan synthase mRNA in dermal fibroblasts and in osteoblasts: a molecular mechanism contributing to organ atrophy., Zhang W., Biochem J. July 1, 2000; 349 (Pt 1): 91-7.


Synthesis of hyaluronan of distinctly different chain length is regulated by differential expression of Xhas1 and 2 during early development of Xenopus laevis., Köprunner M., Mech Dev. February 1, 2000; 90 (2): 275-8.


The effect of mechanical strain on hyaluronan metabolism in embryonic fibrocartilage cells., Dowthwaite GP., Matrix Biol. December 1, 1999; 18 (6): 523-32.


Expression of hyaluronan synthase messenger ribonucleic acids and their induction by interleukin-1beta in human orbital fibroblasts: potential insight into the molecular pathogenesis of thyroid-associated ophthalmopathy., Kaback LA., J Clin Endocrinol Metab. November 1, 1999; 84 (11): 4079-84.


Hyaluronan synthase expression in bovine eyes., Usui T., Invest Ophthalmol Vis Sci. March 1, 1999; 40 (3): 563-7.


Characterization and molecular evolution of a vertebrate hyaluronan synthase gene family., Spicer AP., J Biol Chem. January 23, 1998; 273 (4): 1923-32.              


Molecular cloning and characterization of a putative mouse hyaluronan synthase., Spicer AP., J Biol Chem. September 20, 1996; 271 (38): 23400-6.

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