Eukaryotic cells contain distinct membrane-bound organelles, which compartmentalise cellular proteins to fulfil a variety of vital functions. Many organelles have long been regarded as isolated and static entities (e.g., peroxisomes, mitochondria, lipid droplets), but it is now evident that they display dynamic changes, interact with each other, share certain proteins and show metabolic cooperation and cross-talk. Despite great advances in the identification and characterisation of essential components and molecular mechanisms associated with the biogenesis and function of organelles, information on how organelles interact and are incorporated into metabolic pathways and signaling networks is just beginning to emerge. Organelle cooperation ...
Since their initial observation, contact sites formed between different organelles have transitioned...
Peroxisomes are important metabolic organelles found in virtually all eukaryotic cells. Since their ...
Cellular homeostasis depends on the precisely coordinated use of lipids as fuels for energy producti...
Eukaryotic cells contain distinct membrane-bound organelles, which compartmentalize cellular protein...
BackgroundSpatial compartmentalization of metabolic pathways within membrane-separated organelles is...
ReviewThis Document is Protected by copyright and was first published by Frontiers. All rights reser...
This is the final version of the article. Available from Frontiers Media via the DOI in this recordS...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
Cellular organelles are not static but show dynamism-a property that is likely relevant for their fu...
This is the final version. Available from Frontiers Media via the DOI in this record. Biotechnology ...
Over the past decades, peroxisomes have emerged as key regulators in overall cellular lipid and reac...
This is the author accepted manuscript. The final version is available on open access from Elsevier ...
Interorganellar connectivity is fundamental for the maintenance of organellar and cellular functiona...
Eukaryotic cells are characterized by their exquisite compartmentalization resulting from a cornucop...
Membrane contact sites between mitochondria and other organelles are important for lipid and ion exc...
Since their initial observation, contact sites formed between different organelles have transitioned...
Peroxisomes are important metabolic organelles found in virtually all eukaryotic cells. Since their ...
Cellular homeostasis depends on the precisely coordinated use of lipids as fuels for energy producti...
Eukaryotic cells contain distinct membrane-bound organelles, which compartmentalize cellular protein...
BackgroundSpatial compartmentalization of metabolic pathways within membrane-separated organelles is...
ReviewThis Document is Protected by copyright and was first published by Frontiers. All rights reser...
This is the final version of the article. Available from Frontiers Media via the DOI in this recordS...
This is the author accepted manuscript. The final version is available from Wiley via the DOI in thi...
Cellular organelles are not static but show dynamism-a property that is likely relevant for their fu...
This is the final version. Available from Frontiers Media via the DOI in this record. Biotechnology ...
Over the past decades, peroxisomes have emerged as key regulators in overall cellular lipid and reac...
This is the author accepted manuscript. The final version is available on open access from Elsevier ...
Interorganellar connectivity is fundamental for the maintenance of organellar and cellular functiona...
Eukaryotic cells are characterized by their exquisite compartmentalization resulting from a cornucop...
Membrane contact sites between mitochondria and other organelles are important for lipid and ion exc...
Since their initial observation, contact sites formed between different organelles have transitioned...
Peroxisomes are important metabolic organelles found in virtually all eukaryotic cells. Since their ...
Cellular homeostasis depends on the precisely coordinated use of lipids as fuels for energy producti...