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3J1T

High affinity dynein microtubule binding domain - tubulin complex

Summary for 3J1T
Entry DOI10.2210/pdb3j1t/pdb
Related3J1U
EMDB information5439
DescriptorCytoplasmic dynein 1 heavy chain 1, seryl t-RNA synthetase chimera, Tubulin alpha-1B chain, Tubulin beta-2B chain (3 entities in total)
Functional Keywordsmotor protein-structural protein complex, motor protein/structural protein
Biological sourceMus musculus (mouse)
More
Total number of polymer chains3
Total formula weight116777.79
Authors
Redwine, W.B.,Hernandez-Lopez, R.,Zou, S.,Huang, J.,Reck-Peterson, S.L.,Leschziner, A.E. (deposition date: 2012-06-25, release date: 2012-09-26, Last modification date: 2024-02-21)
Primary citationRedwine, W.B.,Hernandez-Lopez, R.,Zou, S.,Huang, J.,Reck-Peterson, S.L.,Leschziner, A.E.
Structural basis for microtubule binding and release by dynein.
Science, 337:1532-1536, 2012
Cited by
PubMed Abstract: Cytoplasmic dynein is a microtubule-based motor required for intracellular transport and cell division. Its movement involves coupling cycles of track binding and release with cycles of force-generating nucleotide hydrolysis. How this is accomplished given the ~25 nanometers separating dynein's track- and nucleotide-binding sites is not understood. Here, we present a subnanometer-resolution structure of dynein's microtubule-binding domain bound to microtubules by cryo-electron microscopy that was used to generate a pseudo-atomic model of the complex with molecular dynamics. We identified large rearrangements triggered by track binding and specific interactions, confirmed by mutagenesis and single-molecule motility assays, which tune dynein's affinity for microtubules. Our results provide a molecular model for how dynein's binding to microtubules is communicated to the rest of the motor.
PubMed: 22997337
DOI: 10.1126/science.1224151
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (9.7 Å)
Structure validation

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