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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 VierlingThe 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 VierlingJournal of Molecular Biology|February 1, 2008
RecA-dependent cleavage of LexA dimersKim C Giese, Christine B Michalowski, John W LittleProceedings of the National Academy of Sciences of the United States of America|December 21, 2005
Evidence for an essential function of the N terminus of a small heat shock protein in vivo, independent of in vitro chaperone activityKim C Giese, Eman Basha, Belmund Y Catague, et al.The Journal of Biological Chemistry|October 24, 2003
Interactions between small heat shock protein subunits and substrate in small heat shock protein-substrate complexesKenneth L Friedrich, Kim C Giese, Nicole R Buan, et al.The Journal of Biological Chemistry|June 25, 2008
A mutant small heat shock protein with increased thylakoid association provides an elevated resistance against UV-B damage in synechocystis 6803Zsolt Balogi, Ottilia Cheregi, Kim C Giese, et al.The Journal of Biological Chemistry|December 10, 2003
The identity of proteins associated with a small heat shock protein during heat stress in vivo indicates that these chaperones protect a wide range of cellular functionsEman Basha, Garrett J Lee, Linda A Breci, et al.Pageof 1