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Proceedings of the National Academy of Sciences of the United States of America|December 10, 1999
Chloroplast small heat shock proteins: evidence for atypical evolution of an organelle-localized proteinE R Waters, E VierlingMolecular Biology and Evolution|May 20, 1999
The diversification of plant cytosolic small heat shock proteins preceded the divergence of mossesE R Waters, E VierlingPlant Physiology|January 13, 2000
A small heat shock protein cooperates with heat shock protein 70 systems to reactivate a heat-denatured proteinG J Lee, E VierlingProceedings of the National Academy of Sciences of the United States of America|April 13, 2000
Mutants of Arabidopsis thaliana defective in the acquisition of tolerance to high temperature stressS W Hong, E VierlingPlant Physiology|July 1, 1983
P(700) Chlorophyll a-Protein : Purification, Characterization, and Antibody PreparationE Vierling, R S AlbertePlant Physiology|May 1, 1985
Ribulose 1,5-Bisphosphate Carboxylase Synthesis during Heat ShockE Vierling, J L KeyThe Journal of Biological Chemistry|November 18, 1994
Dynamics of small heat shock protein distribution within the chloroplasts of higher plantsK W Osteryoung, E VierlingThe Journal of Cell Biology|December 1, 1983
Regulation of synthesis of the photosystem I reaction centerE Vierling, R S AlberteThe Journal of Biological Chemistry|May 6, 1994
A 21-kDa chloroplast heat shock protein assembles into high molecular weight complexes in vivo and in OrganelleQ Chen, K Osteryoung, E VierlingMolecular & General Genetics : MGG|June 1, 1993
Poly(A) tail length of a heat shock protein RNA is increased by severe heat stress, but intron splicing is unaffectedK W Osteryoung, H Sundberg, E VierlingPageof 5