Click here to close Hello! We notice that you are using Internet Explorer, which is not supported by Echinobase and may cause the site to display incorrectly. We suggest using a current version of Chrome, FireFox, or Safari.
Echinobase

Summary Expression Gene Literature (23) GO Terms (0) Nucleotides (5) Proteins (1) Interactants (85) Wiki
ECB-GENEPAGE-23028114

Papers associated with LOC579909



???displayGene.coCitedPapers???

???pagination.result.count???

???pagination.result.page??? 1

Sort Newest To Oldest Sort Oldest To Newest

Cloning and expression of cDNA encoding a protein that binds a palindromic promoter element essential for induction of fungal cutinase by plant cutin., Li D, Kolattukudy PE., J Biol Chem. May 19, 1995; 270 (20): 11753-6.


Regulation of constitutively expressed and induced cutinase genes by different zinc finger transcription factors in Fusarium solani f. sp. pisi (Nectria haematococca)., Li D, Sirakova T, Rogers L, Ettinger WF, Kolattukudy PE., J Biol Chem. March 8, 2002; 277 (10): 7905-12.


The Drosophila Pipsqueak protein defines a new family of helix-turn-helix DNA-binding proteins., Siegmund T, Lehmann M., Dev Genes Evol. April 1, 2002; 212 (3): 152-7.


The SWIRM domain: a conserved module found in chromosomal proteins points to novel chromatin-modifying activities., Aravind L, Iyer LM., Genome Biol. July 24, 2002; 3 (8): RESEARCH0039.      


Expression of a gene encoding a Gata transcription factor during embryogenesis of the starfish Asterina miniata., Hinman VF, Davidson EH., Gene Expr Patterns. August 1, 2003; 3 (4): 419-22.


Expression of AmKrox, a starfish ortholog of a sea urchin transcription factor essential for endomesodermal specification., Hinman VF, Davidson EH., Gene Expr Patterns. August 1, 2003; 3 (4): 423-6.


Expression and function of blimp1/krox, an alternatively transcribed regulatory gene of the sea urchin endomesoderm network., Livi CB, Davidson EH., Dev Biol. May 15, 2006; 293 (2): 513-25.


Developmental expression of HpNanos, the Hemicentrotus pulcherrimus homologue of nanos., Fujii T, Mitsunaga-Nakatsubo K, Saito I, Iida H, Sakamoto N, Akasaka K, Yamamoto T., Gene Expr Patterns. June 1, 2006; 6 (5): 572-7.


A homologue of snail is expressed transiently in subsets of mesenchyme cells in the sea urchin embryo and is down-regulated in axis-deficient embryos., Hardin J, Illingworth CA., Dev Dyn. November 1, 2006; 235 (11): 3121-31.


The C2H2 zinc finger genes of Strongylocentrotus purpuratus and their expression in embryonic development., Materna SC, Howard-Ashby M, Gray RF, Davidson EH., Dev Biol. December 1, 2006; 300 (1): 108-20.


Meisetz and the birth of the KRAB motif., Birtle Z, Ponting CP., Bioinformatics. December 1, 2006; 22 (23): 2841-5.


High regulatory gene use in sea urchin embryogenesis: Implications for bilaterian development and evolution., Howard-Ashby M, Materna SC, Brown CT, Tu Q, Oliveri P, Cameron RA, Davidson EH., Dev Biol. December 1, 2006; 300 (1): 27-34.


Fez function is required to maintain the size of the animal plate in the sea urchin embryo., Yaguchi S, Yaguchi J, Wei Z, Jin Y, Angerer LM, Inaba K., Development. October 1, 2011; 138 (19): 4233-43.


Crypton transposons: identification of new diverse families and ancient domestication events., Kojima KK, Jurka J., Mob DNA. October 19, 2011; 2 (1): 12.              


[Evolutional principles of homology in regulatory genes of myogenesis]., Ozerniuk ID, Miuge NS., Izv Akad Nauk Ser Biol. January 1, 2012; (4): 383-90.


Zinc finger homeobox is required for the differentiation of serotonergic neurons in the sea urchin embryo., Yaguchi J, Angerer LM, Inaba K, Yaguchi S., Dev Biol. March 1, 2012; 363 (1): 74-83.


Insights into bilaterian evolution from three spiralian genomes., Simakov O, Marletaz F, Cho SJ, Edsinger-Gonzales E, Havlak P, Hellsten U, Kuo DH, Larsson T, Lv J, Arendt D, Savage R, Osoegawa K, de Jong P, Grimwood J, Chapman JA, Shapiro H, Aerts A, Otillar RP, Terry AY, Boore JL, Grigoriev IV, Lindberg DR, Seaver EC, Weisblat DA, Putnam NH, Rokhsar DS., Nature. January 24, 2013; 493 (7433): 526-31.          


Two adaptor molecules of MyD88 and TRAF6 in Apostichopus japonicus Toll signaling cascade: molecular cloning and expression analysis., Lu Y, Li C, Zhang P, Shao Y, Su X, Li Y, Li T., Dev Comp Immunol. December 1, 2013; 41 (4): 498-504.


MOZ and MORF acetyltransferases: Molecular interaction, animal development and human disease., Yang XJ., Biochim Biophys Acta. August 1, 2015; 1853 (8): 1818-26.


Identification and functional characterization of TNF receptor associated factor 3 in the sea cucumber Apostichopus japonicus., Yang L, Chang Y, Wang Y, Wei J, Ge C, Song J., Dev Comp Immunol. June 1, 2016; 59 128-35.


The sea cucumber genome provides insights into morphological evolution and visceral regeneration., Zhang X, Sun L, Yuan J, Sun Y, Gao Y, Zhang L, Li S, Dai H, Hamel JF, Liu C, Yu Y, Liu S, Lin W, Guo K, Jin S, Xu P, Storey KB, Huan P, Zhang T, Zhou Y, Zhang J, Lin C, Li X, Xing L, Huo D, Sun M, Wang L, Mercier A, Li F, Yang H, Xiang J., PLoS Biol. October 12, 2017; 15 (10): e2003790.              


A Survey on Tubulin and Arginine Methyltransferase Families Sheds Light on P. lividus Embryo as Model System for Antiproliferative Drug Development., Ragusa MA, Nicosia A, Costa S, Casano C, Gianguzza F., Int J Mol Sci. April 30, 2019; 20 (9):                     


The potential role of Krüppel-like factor 13 (Aj-klf13) in the intestine regeneration of sea cucumber Apostichopus japonicus., Chen L, Yao F, Qin Y, Shao Y, Fang L, Yu X, Wang S, Hou L., Gene. April 20, 2020; 735 144407.

???pagination.result.page??? 1