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Journal of Molecular Biology|February 15, 2015
A first line of stress defense: small heat shock proteins and their function in protein homeostasisMartin Haslbeck, Elizabeth Vierling
Antioxidants (Basel, Switzerland)|July 27, 2022
Focus on Nitric Oxide Homeostasis: Direct and Indirect Enzymatic Regulation of Protein Denitrosation Reactions in PlantsPatrick Treffon, Elizabeth Vierling
The Journal of Biological Chemistry|September 26, 2002
Changes in oligomerization are essential for the chaperone activity of a small heat shock protein in vivo and in vitroKim C Giese, Elizabeth Vierling
The Journal of Biological Chemistry|May 21, 2004
Mutants in a small heat shock protein that affect the oligomeric state. Analysis and allele-specific suppressionKim C Giese, Elizabeth Vierling
The New Phytologist|April 17, 2020
Plant small heat shock proteins - evolutionary and functional diversityElizabeth R Waters, Elizabeth Vierling
Proceedings of the National Academy of Sciences of the United States of America|September 1, 2009
Substrate binding site flexibility of the small heat shock protein molecular chaperonesNomalie Jaya, Victor Garcia, Elizabeth Vierling
Biophysical Journal|June 19, 2014
Replica exchange molecular dynamics simulations provide insight into substrate recognition by small heat shock proteinsSunita Patel, Elizabeth Vierling, Florence Tama
Trends in Biochemical Sciences|December 20, 2011
Small heat shock proteins and α-crystallins: dynamic proteins with flexible functionsEman Basha, Heather O'Neill, Elizabeth Vierling
Plant Physiology|June 14, 2003
Arabidopsis hot mutants define multiple functions required for acclimation to high temperaturesSuk-Whan Hong, Ung Lee, Elizabeth Vierling
The Journal of Biological Chemistry|November 9, 2006
The N-terminal arm of small heat shock proteins is important for both chaperone activity and substrate specificityEman Basha, Kenneth L Friedrich, Elizabeth Vierling
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