Mitochondrial fission is facilitated by dynamin-related protein Drp1 and a variety of its receptors. However, the molecular mechanism of how Drp1 is recruited to the mitochondrial surface by receptors MiD49 and MiD51 remains elusive. Here, we showed that the interaction between Drp1 and MiD51 is regulated by GTP binding and depends on the polymerization of Drp1. We identified two regions on MiD51 that directly bind to Drp1, and found that dimerization of MiD51, relevant to residue C452, is required for mitochondrial dynamics regulation. Our Results have suggested a multi-faceted regulatory mechanism for the interaction between Drp1 and MiD51 that illustrates the potentially complicated and tight regulation of mitochondrial fission.</div
Several mitochondrial outer membrane proteins—Fis1, Mff, MiD49, and MiD51—have been proposed to pro...
Mitochondria are dynamic organelles that continually adapt their morphology by fusion and fission ev...
International audienceThe mitochondrial network constantly changes and remodels its shape to face th...
Mitochondrial fission is facilitated by dynamin-related protein Drp1 and a variety of its receptors....
Mitochondrial fission requires the recruitment of dynamin-related protein 1 (Drp1) to mitochondria a...
SummaryMitochondrial fission requires recruitment of dynamin-related protein 1 (Drp1) to the mitocho...
Dynamin-related protein 1 (Drp1) is the GTP-hydrolyzing mechanoenzyme that catalyzes mitochondrial f...
Mitochondrial inheritance, genome maintenance and metabolic adaptation depend on organelle fission b...
Mitochondrial fission requires recruitment of dynamin- related protein 1 (Drp1) to the mitochondria...
Mitochondrial fission is important for organelle transport, inheritance, and turnover, and alteratio...
Dynamin-related protein 1 (Drp1) is a GTPase of the dynamin superfamily that catalyzes mitochondrial...
[[abstract]]Mitochondria in cells comprise a tubulovesicular reticulum shaped by dynamic fission and...
AbstractMitochondrial morphology changes dynamically by coordinated fusion and fission and cytoskele...
Mitochondrial fission requires recruitment of dynamin-related protein 1 (Drp1) to the mitochondrial ...
While the dynamin GTPase Drp1 plays a critical role during mitochondrial fission, mechanisms control...
Several mitochondrial outer membrane proteins—Fis1, Mff, MiD49, and MiD51—have been proposed to pro...
Mitochondria are dynamic organelles that continually adapt their morphology by fusion and fission ev...
International audienceThe mitochondrial network constantly changes and remodels its shape to face th...
Mitochondrial fission is facilitated by dynamin-related protein Drp1 and a variety of its receptors....
Mitochondrial fission requires the recruitment of dynamin-related protein 1 (Drp1) to mitochondria a...
SummaryMitochondrial fission requires recruitment of dynamin-related protein 1 (Drp1) to the mitocho...
Dynamin-related protein 1 (Drp1) is the GTP-hydrolyzing mechanoenzyme that catalyzes mitochondrial f...
Mitochondrial inheritance, genome maintenance and metabolic adaptation depend on organelle fission b...
Mitochondrial fission requires recruitment of dynamin- related protein 1 (Drp1) to the mitochondria...
Mitochondrial fission is important for organelle transport, inheritance, and turnover, and alteratio...
Dynamin-related protein 1 (Drp1) is a GTPase of the dynamin superfamily that catalyzes mitochondrial...
[[abstract]]Mitochondria in cells comprise a tubulovesicular reticulum shaped by dynamic fission and...
AbstractMitochondrial morphology changes dynamically by coordinated fusion and fission and cytoskele...
Mitochondrial fission requires recruitment of dynamin-related protein 1 (Drp1) to the mitochondrial ...
While the dynamin GTPase Drp1 plays a critical role during mitochondrial fission, mechanisms control...
Several mitochondrial outer membrane proteins—Fis1, Mff, MiD49, and MiD51—have been proposed to pro...
Mitochondria are dynamic organelles that continually adapt their morphology by fusion and fission ev...
International audienceThe mitochondrial network constantly changes and remodels its shape to face th...