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Summary Expression Phenotypes Gene Literature (25) GO Terms (11) Nucleotides (902) Proteins (44) Interactants (280) Wiki
XB--1009629

Papers associated with sparc

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Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development., Rankin SA, Rankin SA, Steimle JD, Yang XH, Rydeen AB, Agarwal K, Chaturvedi P, Ikegami K, Herriges MJ, Moskowitz IP, Zorn AM., Elife. January 1, 2021; 10


Mitochondrial ROS cause motor deficits induced by synaptic inactivity: Implications for synapse pruning., Sidlauskaite E, Gibson JW, Megson IL, Whitfield PD, Tovmasyan A, Batinic-Haberle I, Murphy MP, Moult PR, Cobley JN., Redox Biol. January 1, 2018; 16 344-351.                    


Evolution of dental tissue mineralization: an analysis of the jawed vertebrate SPARC and SPARC-L families., Enault S, Muñoz D, Simion P, Ventéo S, Sire JY, Marcellini S, Debiais-Thibaud M., BMC Evol Biol. January 1, 2018; 18 (1): 127.            


Bone regeneration after traumatic skull injury in Xenopus tropicalis., Muñoz D, Castillo H, Henríquez JP, Marcellini S., Mech Dev. January 1, 2018; 154 153-161.          


Identification of new regulators of embryonic patterning and morphogenesis in Xenopus gastrulae by RNA sequencing., Popov IK, Kwon T, Crossman DK, Crowley MR, Wallingford JB, Chang C., Dev Biol. January 1, 2017; 426 (2): 429-441.                    


Targeted Pth4-expressing cell ablation impairs skeletal mineralization in zebrafish., Suarez-Bregua P, Saxena A, Bronner ME, Rotllant J., PLoS One. January 1, 2017; 12 (10): e0186444.              


SPARC triggers a cell-autonomous program of synapse elimination., López-Murcia FJ, Terni B, Llobet A., Proc Natl Acad Sci U S A. October 27, 2015; 112 (43): 13366-71.              


Expression of the amelogenin gene in the skin of Xenopus tropicalis., Okada M, Tazawa I, Nakajima K, Yaoita Y., Zoolog Sci. March 1, 2013; 30 (3): 154-9.  


Knockdown of SPARC leads to decreased cell-cell adhesion and lens cataracts during post-gastrula development in Xenopus laevis., Huynh MH, Zhu SJ, Kollara A, Brown T, Winklbauer R, Ringuette M., Dev Genes Evol. March 1, 2011; 220 (11-12): 315-27.


Two families of Xenopus tropicalis skeletal genes display well-conserved expression patterns with mammals in spite of their highly divergent regulatory regions., Espinoza J, Sanchez M, Sanchez A, Hanna P, Torrejon M, Buisine N, Sachs L, Marcellini S., Evol Dev. November 1, 2010; 12 (6): 541-51.


Database of queryable gene expression patterns for Xenopus., Gilchrist MJ, Christensen MB, Bronchain O, Brunet F, Chesneau A, Fenger U, Geach TJ, Ironfield HV, Kaya F, Kricha S, Lea R, Massé K, Néant I, Paillard E, Parain K, Perron M, Sinzelle L, Souopgui J, Thuret R, Ymlahi-Ouazzani Q, Pollet N., Dev Dyn. June 1, 2009; 238 (6): 1379-88.          


Global expression of simulated microgravity-responsive genes in Xenopus liver cells., Ikuzawa M, Asashima M., Zoolog Sci. August 1, 2008; 25 (8): 828-37.


Temporal regulation of global gene expression and cellular morphology in Xenopus kidney cells in response to clinorotation., Kitamoto J, Fukui A, Asashima M., Adv Space Res. January 1, 2005; 35 (9): 1654-61.


Interaction between SPARC and tubulin in Xenopus., Huynh MH, Sodek K, Lee H, Ringuette M., Cell Tissue Res. September 1, 2004; 317 (3): 313-7.


Novel functions of the matricellular proteins osteopontin and osteonectin/SPARC., Sodek J, Zhu B, Huynh MH, Brown TJ, Ringuette M., Connect Tissue Res. January 1, 2002; 43 (2-3): 308-19.


Association of SPARC (osteonectin, BM-40) with extracellular and intracellular components of the ciliated surface ectoderm of Xenopus embryos., Huynh MH, Hong H, Delovitch S, Desser S, Ringuette M., Cell Motil Cytoskeleton. October 1, 2000; 47 (2): 154-62.


A calcium-binding motif in SPARC/osteonectin inhibits chordomesoderm cell migration during Xenopus laevis gastrulation: evidence of counter-adhesive activity in vivo., Huynh MH, Sage EH, Ringuette M., Dev Growth Differ. August 1, 1999; 41 (4): 407-18.          


Regulation of SPARC expression during early Xenopus development: evolutionary divergence and conservation of DNA regulatory elements between amphibians and mammals., Damjanovski S, Huynh MH, Motamed K, Sage EH, Ringuette M., Dev Genes Evol. January 1, 1998; 207 (7): 453-61.


Ectopic expression of SPARC in Xenopus embryos interferes with tissue morphogenesis: identification of a bioactive sequence in the C-terminal EF hand., Damjanovski S, Karp X, Funk S, Sage EH, Ringuette MJ., J Histochem Cytochem. May 1, 1997; 45 (5): 643-55.


Transient expression of SPARC in the dorsal axis of early Xenopus embryos: correlation with calcium-dependent adhesion and electrical coupling., Damjanovski S, Malaval L, Ringuette MJ., Int J Dev Biol. September 1, 1994; 38 (3): 439-46.      


Developmental anomalies of Xenopus embryos following microinjection of SPARC antibodies., Purcell L, Gruia-Gray J, Scanga S, Ringuette M., J Exp Zool. February 1, 1993; 265 (2): 153-64.


Expression and distribution of SPARC in early Xenopus laevis embryos., Ringuette M, Drysdale T, Liu F., Rouxs Arch Dev Biol. December 1, 1992; 202 (1): 4-9.


Molecular analysis of Xenopus laevis SPARC (Secreted Protein, Acidic, Rich in Cysteine). A highly conserved acidic calcium-binding extracellular-matrix protein., Damjanovski S, Liu F, Ringuette M., Biochem J. January 15, 1992; 281 ( Pt 2) 513-7.


Expression of SPARC/osteonectin in tissues of bony and cartilaginous vertebrates., Ringuette M, Damjanovski S, Wheeler D., Biochem Cell Biol. April 1, 1991; 69 (4): 245-50.


Intertissular variations in osteonectin: a monoclonal antibody directed to bone osteonectin shows reduced affinity for platelet osteonectin., Malaval L, Darbouret B, Preaudat C, Jolu JP, Delmas PD., J Bone Miner Res. April 1, 1991; 6 (4): 315-23.

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