Eukaryotic cells exhibit a characteristic response to hyperthermic treatment, involving morphological and cytoskeletal alterations and the induction of heat shock protein synthesis. Small GTPases of the Ras superfamily are known to serve as molecular switches which mediate responses to extracellular stimuli. We addressed here how small GTPase Rac1 integrates signals from heat stress and simultaneously induces various cellular changes in mammalian cells. As evidence that Rac1 is implicated in the heat shock response, we first demonstrated that both mild (41.5°C) and severe (43°C) heat shock induced membrane translocation of Rac1. Following inhibition of the activation or palmitoylation of Rac1, the size of its plasma membrane-bound pool was ...
Cellular signaling by small GTPases is critically dependent on proper spatio-temporal orchestration ...
The ability of photosynthetic organisms to adapt to increases in environmental temperatures is becom...
The ability of photosynthetic organisms to adapt to increases in environmental temperatures is becom...
Eukaryotic cells exhibit a characteristic response to hyperthermic treatment, involving morphologica...
Eukaryotic cells exhibit a characteristic response to hyperthermic treatments involving morphologica...
<p>(<b>A</b>) Localization of Rac1 to the crude membrane fraction in response to heat shock treatmen...
AbstractThe classic heat shock (stress) response (HSR) was originally attributed to protein denatura...
AbstractHyperthermia such as that occurring during fever may improve cell survival during infection,...
AbstractHyperthermia such as that occurring during fever may improve cell survival during infection,...
Aging and pathophysiological conditions are linked to membrane changes which modulate membrane-contr...
Aging and pathophysiological conditions are linked to membrane changes which modulate membrane-contr...
Aging and pathophysiological conditions are linked to membrane changes which modulate membrane-contr...
substrate 1 (Rac1) belongs to the Ras-homologous (Rho) family of small GTPases, which transduce sign...
The heat shock response (HSR) is a highly conserved molecular response to various types of stresses,...
The molecular basis of heat shock response (HSR), a cellular defense mechanism against various stres...
Cellular signaling by small GTPases is critically dependent on proper spatio-temporal orchestration ...
The ability of photosynthetic organisms to adapt to increases in environmental temperatures is becom...
The ability of photosynthetic organisms to adapt to increases in environmental temperatures is becom...
Eukaryotic cells exhibit a characteristic response to hyperthermic treatment, involving morphologica...
Eukaryotic cells exhibit a characteristic response to hyperthermic treatments involving morphologica...
<p>(<b>A</b>) Localization of Rac1 to the crude membrane fraction in response to heat shock treatmen...
AbstractThe classic heat shock (stress) response (HSR) was originally attributed to protein denatura...
AbstractHyperthermia such as that occurring during fever may improve cell survival during infection,...
AbstractHyperthermia such as that occurring during fever may improve cell survival during infection,...
Aging and pathophysiological conditions are linked to membrane changes which modulate membrane-contr...
Aging and pathophysiological conditions are linked to membrane changes which modulate membrane-contr...
Aging and pathophysiological conditions are linked to membrane changes which modulate membrane-contr...
substrate 1 (Rac1) belongs to the Ras-homologous (Rho) family of small GTPases, which transduce sign...
The heat shock response (HSR) is a highly conserved molecular response to various types of stresses,...
The molecular basis of heat shock response (HSR), a cellular defense mechanism against various stres...
Cellular signaling by small GTPases is critically dependent on proper spatio-temporal orchestration ...
The ability of photosynthetic organisms to adapt to increases in environmental temperatures is becom...
The ability of photosynthetic organisms to adapt to increases in environmental temperatures is becom...