Modulating the Endoplasmic Reticulum Stress Response with trans-4,5-Dihydroxy-1,2-Dithiane Prevents Chemically Induced Renal Injury In Vivo
Author:
Publisher
Oxford University Press (OUP)
Subject
Toxicology
Link
http://academic.oup.com/toxsci/article-pdf/88/2/576/4730904/kfi303.pdf
Reference39 articles.
1. Cairo, G., Bardella, L., Schiaffonati, L., and Bernelli-Zazzera, A. (1985). Synthesis of heat shock proteins in rat liver after ischemia and hyperthermia. Hepatology5,357–361.
2. Chen, Q., Jones, T. W., and Stevens, J. L. (1994). Early cellular events couple covalent binding of reactive metabolites to cell killing by nephrotoxic cysteine conjugates. J. Cell. Physiol.161,293–302.
3. Falconi, C., Scotto, P., and De Franciscis, P. (1970). Radioprotection and recovery by dithiothreitol. Experientia26,172–3.
4. Goldberg, A. L. (2003). Protein degradation and protection against misfolded or damaged proteins. Nature426,895–9.
5. Halleck, M. M., Liu, H., North, J., and Stevens, J. L. (1997). Reduction of trans-4,5-dihydroxy-1,2-dithiane by cellular oxidoreductases activates gadd153/chop and grp78 transcription and induces cellular tolerance in kidney epithelial cells. J. Biol. Chem.272,21760–21766.
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