Conformational changes in Dnm1 support a contractile mechanism for mitochondrial fission
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Summary
The 3D map showed that Dnm1 adopted a unique helical assembly when compared with dynamin, which is involved in vesicle scission during endocytosis, and the structural studies support the idea that D nm1 has a mechanochemical role during mitochondrial division.
- Type
- article
- Published
- 2010-12-19
- Cited by
- 440
- References
- 58
- Access
- Open access
- OpenAlex
- https://openalex.org/W2004939344
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3017131
Keywords
Dynamin, Mitochondrial fission, Cell biology, Biology, GTP'
References
- Visualization of dynamins.
- The dynamin-related GTPase Dnm1 regulates mitochondrial fission in yeast
- hFis1, a Novel Component of the Mammalian Mitochondrial Fission Machinery*
- Three-dimensional reconstruction of dynamin in the constricted state
- Structure of a Bacterial Dynamin-like Protein Lipid Tube Provides a Mechanism For Assembly and Membrane Curving
- G domain dimerization controls dynamin's assembly-stimulated GTPase activity
- Dynamin undergoes a GTP-dependent conformational change causing vesiculation.
- The WD40 protein Caf4p is a component of the mitochondrial fission machinery and recruits Dnm1p to mitochondria
- Structural basis of oligomerization in the stalk region of dynamin-like MxA
- Identification of the binding site for acidic phospholipids on the pH domain of dynamin: implications for stimulation of GTPase activity.
- Real-time Visualization of Dynamin-catalyzed Membrane Fission and Vesicle Release
- Functional partnership between amphiphysin and dynamin in clathrin-mediated endocytosis
- GTP-dependent twisting of dynamin implicates constriction and tension in membrane fission
- Membrane fission: model for intermediate structures.
- EMAN: semiautomated software for high-resolution single-particle reconstructions.
- Rapid constriction of lipid bilayers by the mechanochemical enzyme dynamin.
- Self-assembly of Human MxA GTPase into Highly Ordered Dynamin-like Oligomers*
- A Model for Dynamin Self-assembly Based on Binding Between Three Different Protein Domains*
- The stalk region of dynamin drives the constriction of dynamin tubes
- Computer visualization of three-dimensional image data using IMOD.
Cited by
- Adapt and Divide: The Emerging Importance of Dynamin Adaptors in Mitochondrial Fission
- Regulation of Mitochondrial Morphology by Lipids
- MORPHOLOGICAL CONTROL OF MITOCHONDRIAL BIOENERGETICS
- Crystal structure and functional analysis of MiD49, a receptor for the mitochondrial fission protein Drp1
- Membrane fission by protein crowding
- Mitochondrial Membrane Dynamics and Inherited Optic Neuropathies.
- DYNAMIN-MEDIATED MEMBRANE FISSION
- The mechanical bond: a work of art.
- Investigation of the mitochondrial functions of proteins genetically associated with Parkinson's Disease
- Structure, regulation, and evolution of the plastid division machinery.
- Mitochondrien als Kraftwerk der β-Zelle
- Does mitochondrial fusion require transmembrane potential?
- Use of a Novel Two Color PALM Method to Examine Structural Properties of Drp1 Helical Rings during Mammalian Mitochondrial Fission In Situ.
- Splitting up the powerhouse: structural insights into the mechanism of mitochondrial fission
- Molecular Mechanisms of Mitochondrial Transport in Neurons
- The Role of ATAD3A and SLC25 Proteins in OPA1 Function
- Dynamic tubulation of mitochondria drives mitochondrial network formation
- Mitochondrial fusion and fission proteins: novel therapeutic targets for combating cardiovascular disease
- Mitochondrial protein quality control in health and disease
- MECHANISMS FOR COUNTERING OXIDATIVE STRESS AND DAMAGE IN RETINAL PIGMENT EPITHELIUM
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- Robust colorimetric assays for dynamin's basal and stimulated GTPase activities.
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