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3VKH

X-ray structure of a functional full-length dynein motor domain

Replaces:  3AY1
Summary for 3VKH
Entry DOI10.2210/pdb3vkh/pdb
Related3AY1 3VKG
DescriptorDynein heavy chain, cytoplasmic, ADENOSINE-5'-DIPHOSPHATE (2 entities in total)
Functional Keywordsaaa+ protein, molecular motor, microtubles, motor protein
Biological sourceDictyostelium discoideum (Slime mold)
Cellular locationCytoplasm, cytoskeleton: P34036
Total number of polymer chains2
Total formula weight772080.30
Authors
Kon, T.,Oyama, T.,Shimo-Kon, R.,Suto, K.,Kurisu, G. (deposition date: 2011-11-16, release date: 2012-03-14, Last modification date: 2023-11-08)
Primary citationKon, T.,Oyama, T.,Shimo-Kon, R.,Imamula, K.,Shima, T.,Sutoh, K.,Kurisu, G.
The 2.8 A crystal structure of the dynein motor domain
Nature, 484:345-350, 2012
Cited by
PubMed Abstract: Dyneins are microtubule-based AAA(+) motor complexes that power ciliary beating, cell division, cell migration and intracellular transport. Here we report the most complete structure obtained so far, to our knowledge, of the 380-kDa motor domain of Dictyostelium discoideum cytoplasmic dynein at 2.8 Å resolution; the data are reliable enough to discuss the structure and mechanism at the level of individual amino acid residues. Features that can be clearly visualized at this resolution include the coordination of ADP in each of four distinct nucleotide-binding sites in the ring-shaped AAA(+) ATPase unit, a newly identified interaction interface between the ring and mechanical linker, and junctional structures between the ring and microtubule-binding stalk, all of which should be critical for the mechanism of dynein motility. We also identify a long-range allosteric communication pathway between the primary ATPase and the microtubule-binding sites. Our work provides a framework for understanding the mechanism of dynein-based motility.
PubMed: 22398446
DOI: 10.1038/nature10955
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (3.8 Å)
Structure validation

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