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The Journal of Biological Chemistry|May 21, 2004
Expression of a dominant negative heat shock factor-1 construct inhibits aneuploidy in prostate carcinoma cellsYiqun Wang, Jimmy R Theriault, Haiying He, et al.Experimental Cell Research|August 26, 1998
Physical connections between feeder cells and recipient normal mammary epithelial cellsU K Ehmann, M A Stevenson, S K Calderwood, et al.The Journal of Biological Chemistry|July 11, 1998
Transcriptional activity of heat shock factor 1 at 37 degrees C is repressed through phosphorylation on two distinct serine residues by glycogen synthase kinase 3 and protein kinases Calpha and CzetaB Chu, R Zhong, F Soncin, et al.Trends in Biochemical Sciences|February 18, 2006
Heat shock proteins in cancer: chaperones of tumorigenesisStuart K Calderwood, Md Abdul Khaleque, Douglas B Sawyer, et al.The Journal of Steroid Biochemistry and Molecular Biology|October 20, 2006
Co-expression of steroid receptors (estrogen receptor alpha and/or progesterone receptors) and Her-2/neu: Clinical implicationsDaniel R Ciocca, Francisco E Gago, Mariel A Fanelli, et al.The Journal of Biological Chemistry|October 27, 1997
Heat shock factor 1 represses Ras-induced transcriptional activation of the c-fos geneC Chen, Y Xie, M A Stevenson, et al.Biochimica Et Biophysica Acta. Molecular Cell Research|December 15, 2021
Heat shock proteins in cell signaling and cancerBenjamin J Lang, Thomas L Prince, Yuka Okusha, et al.Sub-Cellular Biochemistry|December 15, 2022
Cdc37 as a Co-chaperone to Hsp90Thomas L Prince, Benjamin J Lang, Yuka Okusha, et al.Journal of Cellular Physiology|April 1, 1992
Inhibition of heat shock gene expression does not block the development of thermotoleranceS B Bader, B D Price, L A Mannheim-Rodman, et al.Frontiers in Immunology|January 31, 2020
Immunological Outcomes Mediated Upon Binding of Heat Shock Proteins to Scavenger Receptors SCARF1 and LOX-1, and Endocytosis by Mononuclear PhagocytesAyesha Murshid, Thiago J Borges, Cristina Bonorino, et al.Pageof 22