The small heat shock protein (sHsp) chaperones are crucial for cell survival and can prevent aggregation of client proteins that partially unfold under destabilizing conditions. Most investigations on the chaperone activity of sHsps are based on a limited set of thermosensitive model substrate client proteins since the endogenous targets are often not known. There is a high diversity among sHsps with a single conserved β-sandwich fold domain defining the family, the α-crystallin domain, whereas the N-terminal and C-terminal regions are highly variable in length and sequence among various sHsps and conserved only within orthologues. The endogenous targets are probably also varying among various sHsps, cellular compartments, cell type and org...
SYNOPSIS. Evidence indicates that small heat-shock proteins (Hsps) are involved in stress tolerance,...
Includes bibliographical references (p. 62-63)All organisms respond to high temperatures by synthesi...
A low molecular weight heat shock protein which localizes to chloroplasts has been identified in se...
Heat shock proteins (HSPs) are a ubiquitous family of protein chaperones, which prevent irreversible...
Plants synthesize several classes of small (15- to 30-kD monomer) heat-shock proteins (sHSPs) in res...
Small heat shock proteins (sHsps) are found in all organisms and evolved early in the history of lif...
sHSPs are induced at elevated temperatures in virtually all organisms and they are believed to help ...
Diverse higher plant species synthesize low molecular weight (LMW) heat shock proteins (...
The nuclear-encoded chloroplast-localized Hsp21 is an oligomeric heat shock protein (Hsp), belonging...
The goal of this dissertation is to provide information critical for understanding the function of t...
The conservation of the carboxyl-terminal heat shock domain among small (sm) cytoplasmic and chlor...
Acquired tolerance to heat stress is an increased resistance to elevated temperature following a pri...
The α-crystallin-related, small heat shock proteins (smHSPs) are ubiquitous in nature, but are unusu...
Molecular chaperones are proteins found in virtually every organism and are essential to cell surviv...
Several plant species are known to synthesize low-molecular-weight nucleus-encoded heat shock prote...
SYNOPSIS. Evidence indicates that small heat-shock proteins (Hsps) are involved in stress tolerance,...
Includes bibliographical references (p. 62-63)All organisms respond to high temperatures by synthesi...
A low molecular weight heat shock protein which localizes to chloroplasts has been identified in se...
Heat shock proteins (HSPs) are a ubiquitous family of protein chaperones, which prevent irreversible...
Plants synthesize several classes of small (15- to 30-kD monomer) heat-shock proteins (sHSPs) in res...
Small heat shock proteins (sHsps) are found in all organisms and evolved early in the history of lif...
sHSPs are induced at elevated temperatures in virtually all organisms and they are believed to help ...
Diverse higher plant species synthesize low molecular weight (LMW) heat shock proteins (...
The nuclear-encoded chloroplast-localized Hsp21 is an oligomeric heat shock protein (Hsp), belonging...
The goal of this dissertation is to provide information critical for understanding the function of t...
The conservation of the carboxyl-terminal heat shock domain among small (sm) cytoplasmic and chlor...
Acquired tolerance to heat stress is an increased resistance to elevated temperature following a pri...
The α-crystallin-related, small heat shock proteins (smHSPs) are ubiquitous in nature, but are unusu...
Molecular chaperones are proteins found in virtually every organism and are essential to cell surviv...
Several plant species are known to synthesize low-molecular-weight nucleus-encoded heat shock prote...
SYNOPSIS. Evidence indicates that small heat-shock proteins (Hsps) are involved in stress tolerance,...
Includes bibliographical references (p. 62-63)All organisms respond to high temperatures by synthesi...
A low molecular weight heat shock protein which localizes to chloroplasts has been identified in se...