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Summary Expression Gene Literature (17) GO Terms (4) Nucleotides (14) Proteins (9) Interactants (105) Wiki
ECB-GENEPAGE-23033520

Papers associated with erg (and LOC115919910)



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ETS family of genes in leukemia and Down syndrome., Papas TS, Watson DK, Sacchi N, Fujiwara S, Seth AK, Fisher RJ, Bhat NK, Mavrothalassitis G, Koizumi S, Jorcyk CL., Am J Med Genet Suppl. January 1, 1990; 7 251-61.


Development of an embryonic skeletogenic mesenchyme lineage in a sea cucumber reveals the trajectory of change for the evolution of novel structures in echinoderms., McCauley BS, Wright EP, Exner C, Kitazawa C, Hinman VF., Evodevo. August 9, 2012; 3 (1): 17.          


Radial glial cells play a key role in echinoderm neural regeneration., Mashanov VS, Zueva OR, García-Arrarás JE., BMC Biol. April 18, 2013; 11 49.                        


The impact of gene expression variation on the robustness and evolvability of a developmental gene regulatory network., Garfield DA, Runcie DE, Babbitt CC, Haygood R, Nielsen WJ, Wray GA., PLoS Biol. October 1, 2013; 11 (10): e1001696.            


Sub-circuits of a gene regulatory network control a developmental epithelial-mesenchymal transition., Saunders LR, McClay DR., Development. April 1, 2014; 141 (7): 1503-13.


Dose-dependent nuclear β-catenin response segregates endomesoderm along the sea star primary axis., McCauley BS, Akyar E, Saad HR, Hinman VF., Development. January 1, 2015; 142 (1): 207-17.


Logics and properties of a genetic regulatory program that drives embryonic muscle development in an echinoderm., Andrikou C, Pai CY, Su YH, Arnone MI., Elife. July 28, 2015; 4                                       


Large-scale gene expression study in the ophiuroid Amphiura filiformis provides insights into evolution of gene regulatory networks., Dylus DV, Czarkwiani A, Stångberg J, Ortega-Martinez O, Dupont S, Oliveri P., Evodevo. January 1, 2016; 7 2.            


Substituting mouse transcription factor Pou4f2 with a sea urchin orthologue restores retinal ganglion cell development., Mao CA, Agca C, Mocko-Strand JA, Wang J, Ullrich-Lüter E, Pan P, Wang SW, Arnone MI, Frishman LJ, Klein WH., Proc Biol Sci. March 16, 2016; 283 (1826): 20152978.          


Thyroid Hormones Accelerate Initiation of Skeletogenesis via MAPK (ERK1/2) in Larval Sea Urchins (Strongylocentrotus purpuratus)., Taylor E, Heyland A., Front Endocrinol (Lausanne). January 1, 2018; 9 439.                          

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