To survive elevated temperatures, ectotherms adjust the fluidity of membranes by fine-tuning lipid desaturation levels in a process previously described to be cell-autonomous. We have discovered that, in Caenorhabditis elegans, neuronal Heat shock Factor 1 (HSF-1), the conserved master regulator of the heat shock response (HSR)- causes extensive fat remodelling in peripheral tissues. These changes include a decrease in fat desaturase and acid lipase expression in the intestine, and a global shift in the saturation levels of plasma membrane’s phospholipids. The observed remodelling of plasma membrane is in line with ectothermic adaptive responses and gives worms a cumulative advantage to warm temperatures. We have determined that at least si...
In the nematode Caenorhabditis elegans, insulin/insulin-like growth factor 1 (IGF-1) signaling (IIS)...
This work addresses two major unsolved questions in the field of C. elegans neuroscience and stress ...
Regulation and dynamic behavior of the heat shock transcription factor HSF-1 in C. elegans Eukaryoti...
To survive elevated temperatures, ectotherms adjust the fluidity of membranes by fine-tuning lipid d...
To survive elevated temperatures, ectotherms adjust the fluidity of membranes by fine-tuning lipid d...
To survive elevated temperatures, ectotherms adjust the fluidity of membranes by fine-tuning lipid d...
Response to hyperthermia, highly conserved from bacteria to humans, involves transcriptional upregul...
Background: Cellular mechanisms aimed at repairing protein damage and maintaining homeostasis, widel...
Background: Cellular mechanisms aimed at repairing protein damage and maintaining homeostasis, widel...
Background: Cellular mechanisms aimed at repairing protein damage and maintaining homeostasis, widel...
Background: Cellular mechanisms aimed at repairing protein damage and maintaining homeostasis, widel...
SummaryBackgroundCellular mechanisms aimed at repairing protein damage and maintaining homeostasis, ...
Eukaryotic cells respond to heat stress by activating the transcription factor HSF1. In addition to ...
Eukaryotic cells respond to heat stress by activating the transcription factor HSF1. In addition to ...
Eukaryotic cells respond to heat stress by activating the transcription factor HSF1. In addition to ...
In the nematode Caenorhabditis elegans, insulin/insulin-like growth factor 1 (IGF-1) signaling (IIS)...
This work addresses two major unsolved questions in the field of C. elegans neuroscience and stress ...
Regulation and dynamic behavior of the heat shock transcription factor HSF-1 in C. elegans Eukaryoti...
To survive elevated temperatures, ectotherms adjust the fluidity of membranes by fine-tuning lipid d...
To survive elevated temperatures, ectotherms adjust the fluidity of membranes by fine-tuning lipid d...
To survive elevated temperatures, ectotherms adjust the fluidity of membranes by fine-tuning lipid d...
Response to hyperthermia, highly conserved from bacteria to humans, involves transcriptional upregul...
Background: Cellular mechanisms aimed at repairing protein damage and maintaining homeostasis, widel...
Background: Cellular mechanisms aimed at repairing protein damage and maintaining homeostasis, widel...
Background: Cellular mechanisms aimed at repairing protein damage and maintaining homeostasis, widel...
Background: Cellular mechanisms aimed at repairing protein damage and maintaining homeostasis, widel...
SummaryBackgroundCellular mechanisms aimed at repairing protein damage and maintaining homeostasis, ...
Eukaryotic cells respond to heat stress by activating the transcription factor HSF1. In addition to ...
Eukaryotic cells respond to heat stress by activating the transcription factor HSF1. In addition to ...
Eukaryotic cells respond to heat stress by activating the transcription factor HSF1. In addition to ...
In the nematode Caenorhabditis elegans, insulin/insulin-like growth factor 1 (IGF-1) signaling (IIS)...
This work addresses two major unsolved questions in the field of C. elegans neuroscience and stress ...
Regulation and dynamic behavior of the heat shock transcription factor HSF-1 in C. elegans Eukaryoti...