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mechanisms of autophagy, a conserved degradation and recycling process required for cellular homeostasis, stress tolerance and pathogen resistance. Our discoveries have in particular contributed to the current
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mechanisms of autophagy, a conserved degradation and recycling process required for cellular homeostasis and stress responses. The project builds on our previous findings in the Arabidopsis model system
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, Sweden. Research in the Hofius lab (http://www.slu.se/D_Hofius ) focuses on the molecular mechanisms of autophagy, a conserved degradation and recycling process required for cellular homeostasis and stress
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, Sweden. Research in the Hofius lab (http://www.slu.se/D_Hofius ) focuses on the molecular mechanisms of autophagy, a conserved degradation and recycling process required for cellular homeostasis, stress
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Applications are invited for a 2- to 3-year Postdoctoral Fellowship/ Researcher for an interdisciplinary project combining Cell Biology and Systems Neuroscience to study the interplay between sleep and autophagy
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Postdoctoral Research Position- Epigenetic & exosomal regulation of cardiovascular & renal functionu
University of Tennessee Health Science Center- Physiology Department | Memphis, Tennessee | United States | 10 days agofollowings is preferred: epigenetics, CRISP/Cas9, autophagy, stem cell biology, exosomes, viral vectors, renal tubule epithelial cell biology, proteomics, vascular biology or telemetry. Our laboratories
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 5 days ago
-Restricted-Feeding, and metabolism directly regulates autophagy and lifespan. Also, a secondary focus of this work will be on the oxidative stress response in the fly and rodents harboring an engineered
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function. The researcher will work on the developing in vitro cell based models to evaluate the impact of oligonucleotide treatment on important cellular functions e.g. autophagy. The successful candidate is
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of metabolic vulnerabilities in cancer, the role of nutrient scavenging pathways including autophagy in cancer and host metabolism, growth and survival, metabolic control of the anti-tumor immune response
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cholerae. Recent studies have highlighted that the bacterial protein MakA, derived from V. cholerae, can modulate apoptosis, influencing autophagy, and interacting with lipid kinase pathways. The project