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Molecular cloning of hsf1 and hsbp1 cDNAs, and the expression of hsf1, hsbp1 and hsp70 under heat stress in the sea cucumber Apostichopus japonicus. , Xu D, Sun L, Liu S, Zhang L , Yang H ., Comp Biochem Physiol B Biochem Mol Biol. August 1, 2016; 198 1-9.
Rapid changes in heat-shock cognate 70 levels, heat-shock cognate phosphorylation state, heat-shock transcription factor, and metal transcription factor activity levels in response to heavy metal exposure during sea urchin embryonic development. , Pinsino A, Turturici G, Sconzo G, Geraci F., Ecotoxicology. January 1, 2011; 20 (1): 246-54.
The chemical defensome: environmental sensing and response genes in the Strongylocentrotus purpuratus genome. , Goldstone JV, Hamdoun A , Cole BJ, Howard-Ashby M, Nebert DW, Scally M, Dean M, Epel D , Hahn ME, Stegeman JJ., Dev Biol. December 1, 2006; 300 (1): 366-84.
Studies on heat shock proteins in sea urchin development. , Giudice G, Sconzo G, Roccheri MC ., Dev Growth Differ. August 1, 1999; 41 (4): 375-80.
Sea urchin HSF activity in vitro and in transgenic embryos. , Sconzo G, Geraci F, Melfi R, Cascino D, Spinelli G , Giudice G, Sirchia R., Biochem Biophys Res Commun. November 17, 1997; 240 (2): 436-41.
The translational placement of nucleosome cores in vitro determines the access of the transacting factor suGF1 to DNA. , Patterton HG, Hapgood J., Nucleic Acids Res. November 1, 1996; 24 (21): 4349-55.