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  1. 1.   A Zpr1 co-chaperone mediates folding of eukaryotic translation elongation factor 1A via a GTPase cycle
  2. McQuown, Alexander J; Nelliat, Anjali R; Reif, Dvir; Sabbarini, Ibrahim M; Membreno, Britnie Santiago; Wu,Colin; Denic, Vladimir
  3. Molecular Cell. 2023, Aug 16; 81(17): 3108-3122.
  1. 2.   HSF1 physically neutralizes amyloid oligomers to empower overgrowth and bestow neuroprotection
  2. Tang,Zijian; Su,Kuo-Hui; Xu, Meng; Dai,Chengkai
  3. Science advances. 2020, Nov; 6(46): pii: eabc6871.
  1. 3.   Targeting the Oncogenic Long Non-coding RNA SLNCR1 by Blocking Its Sequence-Specific Binding to the Androgen Receptor
  2. Schmidt, Karyn; Weidmann, Chase A; Hilimire, Thomas A; Yee, Elaine; Hatfield, Breanne M; Schneekloth,Jay; Weeks, Kevin M; Novina, Carl D
  3. Cell reports. 2020, Jan 14; 30(2): 541-554.e5.
  1. 4.   The heat-shock, or HSF1-mediated proteotoxic stress, response in cancer: from proteomic stability to oncogenesis
  2. Dai, Chengkai
  3. Philosophical transactions of the Royal Society of London. Series B, Biological sciences. 2018, Jan 19; (1738): Art 20160525.
  1. 5.   HECT and RING finger families of E3 ubiquitin ligases at a glance
  2. Metzger, M. B.; Hristova, V. A.; Weissman, A. M.
  3. Journal of Cell Science. 2012, Feb; 125(3): 531-537.
  1. 6.   Gp96(SIV)Ig immunization induces potent polyepitope specific, multifunctional memory responses in rectal and vaginal mucosa
  2. Strbo, N.; Vaccari, M.; Pahwa, S.; Kolber, M. A.; Fisher, E.; Gonzalez, L.; Doster, M. N.; Hryniewicz, A.; Felber, B. K.; Pavlakis, G. N.; Franchini, G.; Podack, E. R.
  3. Vaccine. 2011, Mar; 29(14): 2619-2625.
  1. 7.   Modulation of stress genes expression profile by nitric oxide-releasing aspirin in Jurkat T leukemia cells
  2. Nath, N.; Chattopadhyay, M.; Kodela, R.; Tian, S.; Vlismas, P.; Boring, D.; Crowell, J. A.; Kashfi, K.
  3. Biochemical Pharmacology. 2010, Jun; 79(12): 1759-1771.
  1. 8.   Alternative transcripts expressed by small bristles, the Drosophila melanogaster nxf1 gene
  2. Ivankova, N.; Tretyakova, I.; Lyozin, G. T.; Avanesyan, E.; Zolotukhin, A.; Zatsepina, O. G.; Evgen'ev, M. B.; Mamon, L. A.
  3. Gene. 2010, Jun; 458(1-2): 11-19.
  1. 9.   Modulation of angiogenesis by dithiolethione-modified NSAIDs and valproic acid
  2. Isenberg, J. S.; Jia, Y.; Field, L.; Ridnour, L. A.; Sparatore, A.; Del Soldato, P.; Sowers, A. L.; Yeh, G. C.; Moody, T. W.; Wink, D. A.; Ramchandran, R.; Roberts, D. D.
  3. British Journal of Pharmacology. 2007, May; 151(1): 142-151.
  1. 10.   The chemical defensome: Environmental sensing and response genes in the Strongylocentrotus purpuratus genome
  2. Goldstone, J. V.; Hamdoun, A.; Cole, B. J.; Howard-Ashby, M.; Nebert, D. W.; Scally, M.; Dean, M.; Epel, D.; Hahn, M. E.; Stegeman, J. J.
  3. Developmental Biology. 2006, Dec; 300(1): 366-384.
  1. 11.   An estrogen receptor chimera senses ligands by nuclear translocation
  2. Martinez, E. D.; Rayasam, G. V.; Dull, A. B.; Walker, D. A.; Hager, G. L.
  3. Journal of Steroid Biochemistry and Molecular Biology. 2005, DEC; 97(4): 307-321.
  1. 12.   Effect of posttranscriptional regulatory elements on transgene expression and virus production in the context of retrovirus vectors
  2. Hlavaty, J.; Schittmayer, M.; Stracke, A.; Jandl, G.; Knapp, E.; Felber, B. K.; Salmons, B.; Gunzburg, W. H.; Renner, M.
  3. Virology. 2005, OCT 10; 341(1): 1-11.
  1. 13.   Linking tumor cell cytotoxicity to mechanism of drug action: An integrated analysis of gene expression, small-molecule screening and structural databases
  2. Covell, D. G.; Wallqvist, A.; Huang, R. L.; Thanki, N.; Rabow, A. A.; Lu, X. J.
  3. Proteins-Structure Function and Bioinformatics. 2005, MAY 15; 59(3): 403-433.
  1. 14.   The search for novel drug leads for predominately antitumor therapies by utilizing mother nature's pharmacophoric libraries
  2. Kingston, D. G. I.; Newman, D. J.
  3. Current Opinion in Drug Discovery & Development. 2005, MAR; 8(2): 207-227.
  1. 15.   Identification of oxidized mitochondria proteins in alcohol-exposed human hepatoma cells and mouse liver
  2. Suh, S. K.; Hood, B. L.; Kim, B. J.; Conrads, T. P.; Veenstra, T. D.; Song, B. J.
  3. Proteomics. 2004, NOV; 4(11): 3401-3412.
  1. 16.   Overexpression of the tumor autocrine motility factor receptor Gp78, a ubiquitin protein ligase, results in increased ubiquitinylation and decreased secretion of apolipoprotein B100 in HepG2 cells
  2. Liang, J. S.; Kim, T.; Fang, S. Y.; Yamaguchi, J.; Weissman, A. M.; Fisher, E. A.; Ginsberg, H. N.
  3. Journal of Biological Chemistry. 2003 278(26): 23984-23988.
  1. 17.   Developmental regulation of mitogen-activated protein kinase- activated kinases-2 and-3 (MAPKAPK-2/-3) in vivo during corpus luteum formation in the rat
  2. Maizels, E. T.; Mukherjee, A.; Sithanandam, G.; Peters, C. A.; Cottom, J.; Mayo, K. E.; Hunzicker-Dunn, M.
  3. Molecular Endocrinology. 2001 15(5): 716-733.
  1. 18.   A Mitochondrial-Like Chaperonin 60 Gene in Giardia Lamblia - Evidence That Diplomonads Once Harbored an Endosymbiont Related to the Progenitor of Mitochondria
  2. Roger, A. J.; Svard, S. G.; Tovar, J.; Clark, C. G.; Smith, M. W.; Gillin, F. D.; Sogin, M. L.
  3. Proceedings of the National Academy of Sciences of the United States of America. 1998 95(1): 229-234.
  1. 19.   Enhanced Levels of Staphylococcus Aureus Stress Protein Groel and Dnak Homologs Early in Infection of Human Epithelial Cells
  2. Qoronfleh, M. W.; Bortner, C. A.; Schwartzberg, P.; Wilkinson, B. J.
  3. Infection and Immunity. 1998 66(6): 3024-3027.
  1. 20.   Association of Arsenic-Induced Malignant Transformation With Dna Hypomethylation and Aberrant Gene Expression
  2. Zhao, C. Q.; Young, M. R.; Diwan, B. A.; Coogan, T. P.; Waalkes, M. P.
  3. Proceedings of the National Academy of Sciences of the United States of America. 1997 94(20): 10907-10912.
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