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Summary Expression Gene Literature (33) GO Terms (4) Nucleotides (472) Proteins (44) Interactants (627) Wiki
XB-GENEPAGE-6258352

Papers associated with col2a1

Search for col2a1 morpholinos using Textpresso

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3 paper(s) referencing morpholinos

Results 1 - 10 of 33 results

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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. June 15, 2017; 426 (2): 429-441.

WNT16 antagonises excessive canonical WNT activation and protects cartilage in osteoarthritis.
Nalesso G, Thomas BL, Sherwood JC, Yu J, Addimanda O, Eldridge SE, Thorup AS, Dale L, Schett G, Zwerina J, Eltawil N, Pitzalis C, Dell'Accio F.
Ann Rheum Dis. January 1, 2017; 76 (1): 218-226.

Paraxis is required for somite morphogenesis and differentiation in Xenopus laevis.
Sánchez RS, Sánchez SS.
Dev Dyn. August 1, 2015; 244 (8): 973-87.

Comparative Analysis of Cartilage Marker Gene Expression Patterns during Axolotl and Xenopus Limb Regeneration.
Mitogawa K, Makanae A, Satoh A, Satoh A.
PLoS One. January 1, 2015; 10 (7): e0133375.

Molecular footprinting of skeletal tissues in the catshark Scyliorhinus canicula and the clawed frog Xenopus tropicalis identifies conserved and derived features of vertebrate calcification.
Enault S, Muñoz DN, Silva WT, Borday-Birraux V, Bonade M, Oulion S, Ventéo S, Marcellini S, Debiais-Thibaud M.
Front Genet. January 1, 2015; 6 283.

Left-right patterning in Xenopus conjoined twin embryos requires serotonin signaling and gap junctions.
Vandenberg LN, Blackiston DJ, Rea AC, Dore TM, Levin M.
Int J Dev Biol. January 1, 2014; 58 (10-12): 799-809.

Germline Transgenic Methods for Tracking Cells and Testing Gene Function during Regeneration in the Axolotl.
Khattak S, Schuez M, Richter T, Knapp D, Haigo SL, Sandoval-Guzmán T, Hradlikova K, Duemmler A, Kerney R, Tanaka EM.
Stem Cell Reports. January 1, 2013; 1 (1): 90-103.

Cartilage on the move: cartilage lineage tracing during tadpole metamorphosis.
Kerney RR, Brittain AL, Hall BK, Buchholz DR.
Dev Growth Differ. October 1, 2012; 54 (8): 739-52.

Thyroid hormone-dependent development in Xenopus laevis: a sensitive screen of thyroid hormone signaling disruption by municipal wastewater treatment plant effluent.
Searcy BT, Beckstrom-Sternberg SM, Beckstrom-Sternberg JS, Stafford P, Schwendiman AL, Soto-Pena J, Owen MC, Ramirez C, Phillips J, Veldhoen N, Helbing CC, Propper CR.
Gen Comp Endocrinol. May 1, 2012; 176 (3): 481-92.

Median facial clefts in Xenopus laevis: roles of retinoic acid signaling and homeobox genes.
Kennedy AE, Dickinson AJ.
Dev Biol. May 1, 2012; 365 (1): 229-40.

WNT-3A modulates articular chondrocyte phenotype by activating both canonical and noncanonical pathways.
Nalesso G, Sherwood J, Bertrand J, Pap T, Ramachandran M, De Bari C, Pitzalis C, Dell'accio F.
J Cell Biol. May 2, 2011; 193 (3): 551-64.

Early cranial patterning in the direct-developing frog Eleutherodactylus coqui revealed through gene expression.
Kerney R, Gross JB, Hanken J.
Evol Dev. July 1, 2010; 12 (4): 373-82.

Regulatory elements of Xenopus col2a1 drive cartilaginous gene expression in transgenic frogs.
Kerney R, Hall BK, Hanken J.
Int J Dev Biol. January 1, 2010; 54 (1): 141-50.

Gene expression reveals unique skeletal patterning in the limb of the direct-developing frog, Eleutherodactylus coqui.
Kerney R, Hanken J.
Evol Dev. July 1, 2008; 10 (4): 439-48.

Sox9 is required for invagination of the otic placode in mice.
Barrionuevo F, Naumann A, Bagheri-Fam S, Speth V, Taketo MM, Scherer G, Neubüser A.
Dev Biol. May 1, 2008; 317 (1): 213-24.

Runx2 is essential for larval hyobranchial cartilage formation in Xenopus laevis.
Kerney R, Gross JB, Hanken J.
Dev Dyn. June 1, 2007; 236 (6): 1650-62.

Twisted gastrulation modulates bone morphogenetic protein-induced collagen II and X expression in chondrocytes in vitro and in vivo.
Schmidl M, Adam N, Surmann-Schmitt C, Hattori T, Stock M, Dietz U, de Crombrugghe B, Pöschl E, von der Mark K.
J Biol Chem. October 20, 2006; 281 (42): 31790-800.

Members of the lysyl oxidase family are expressed during the development of the frog Xenopus laevis.
Geach TJ, Dale L.
Differentiation. October 1, 2005; 73 (8): 414-24.

Joint development in Xenopus laevis and induction of segmentations in regenerating froglet limb (spike).
Satoh A, Suzuki M, Suzuki M, Amano T, Tamura K, Tamura K, Ide H.
Dev Dyn. August 1, 2005; 233 (4): 1444-53.

JNK and ROKalpha function in the noncanonical Wnt/RhoA signaling pathway to regulate Xenopus convergent extension movements.
Kim GH, Han JK.
Dev Dyn. April 1, 2005; 232 (4): 958-68.

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