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Mitochondria are highly dynamic organelles.
Mitochondria are dynamic organelles that change their architecture in normal physiological conditions.
Mitochondria are dynamic organelles that are highly motile and frequently fuse and divide.
The ER and mitochondria are dynamic organelles, moving along the microtubule and interacting with each other (Bravo et al., 2011).
Similarly, nanoparticle based fractionation [24]; density gradient centrifugation [25] and antibody based immunoprecipitation [26] are used to isolate dynamic organelles such as endosome and lysosomes with limited purity.
Major limiting factor in determining the biomolecular composition of these dynamic organelles are the difficulties in isolating these organelles with high purity and high yield [17].
Plasma membrane, endosomes (early or late), and lysosomes are dynamic organelles that are known for their key role in cellular function such as cell signaling [1 3], intracellular [4, 5] and extracellular interaction [6, 7].
As highly dynamic organelles, mitochondria maintain a balance between frequent cycles of fusion and fission, which tightly regulate mitochondrial number, morphology, and functions under ever-changing physiological conditions [10-12] [10-12]
Because mitochondria are dynamic organelles constantly undergoing fission and fusion events, they require a constant and well-regulated supply of phospholipids for membrane integrity.
In yeast, LDs are quite dynamic organelles.
Mitochondria are dynamic organelles that constantly fuse and fragment.
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