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An adaptive biomolecular condensation response is conserved across environmentally divergent species
Cells must sense and respond to sudden maladaptive environmental changes—stresses—to survive and thrive. Across eukaryotes, stresses such as heat shock trigger conserved responses: growth arrest, a specific transcriptional response, and biomolecular condensation of protein and mRNA into structures k...
ORGANISM(S): Saccharomyces kudriavzevii ZP591 Kluyveromyces marxianus DMKU3-1042 Saccharomyces cerevisiae (Baker's yeast) 
2024-03-03 | PXD044970 | Pride
Cells must sense and respond to sudden maladaptive environmental changes—stresses—to survive and thrive. Across eukaryotes, stresses such as heat shock trigger conserved responses: growth arrest, a specific transcriptional response, and biomolecular condensation of protein and mRNA into structures k...
ORGANISM(S): Candida albicans (Yeast) 
2024-03-03 | PXD044702 | Pride
Cellular responses to maladaptive environmental changes—stresses—allow for organismal adaptation to diverse and dynamic conditions. Across the tree of life, cells upregulate a highly conserved transcriptional program in response to so-called proteotoxic stresses such as heat shock. Correspondingly, ...
ORGANISM(S): Kluyveromyces marxianus Saccharomyces cerevisiae Saccharomyces kudriavzevii 
2023-07-31 | GSE234499 | GEO
Clathrin-mediated endocytosis is an essential cellular internalisation pathway involving the dynamic assembly of clathrin and accessory proteins to form membrane-bound vesicles. The evolutionarily ancient TSET/TPLATE complex (TPC) plays an essential, but not well-defined role in endocytosis in plant...
ORGANISM(S): Arabidopsis thaliana (Mouse-ear cress) 
2023-12-07 | PXD045068 | Pride
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