A structural model reveals energy transduction in dynein
- 5 December 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (49) , 18540-18545
- https://doi.org/10.1073/pnas.0602867103
Abstract
Intracellular active transport is driven by ATP-hydrolyzing motor proteins that move along cytoskeletal filaments. In particular, the microtubule-associated dynein motor is involved in the transport of organelles and vesicles, the maintenance of the Golgi, and mitosis. However, unlike kinesin and myosin, the mechanism by which dynein converts chemical energy into mechanical force remains largely a mystery, due primarily to the lack of a high-resolution molecular structure. Using homology modeling and normal mode analysis, we propose a complete atomic structure and a mechanism for force generation by the motor protein dynein. In agreement with very recent electron microscopy (EM) reconstructions showing dynein as a ring-shaped heptamer, our model consists of six ATPases of the AAA (ATPases associated with various cellular activities) superfamily and a C-terminal domain, which is experimentally known to control motor function. Our model shows a coiled coil spanning the diameter of the motor that accounts for previously unidentified structures in EM studies and provides a potential mechanism for long-range communication between the AAA domains. Furthermore, normal mode analysis reveals that the subunits of the motor that contain the nucleotide binding sites exhibit minimal movement, whereas the rest of the motor is very mobile. Our analysis suggests the likely domain rearrangements of the motor unit that generate its power stroke. This study provides insights into the structure and function of dynein that can guide further experimental investigations into energy transduction in dynein.Keywords
This publication has 37 references indexed in Scilit:
- A Flexible Linkage Between the Dynein Motor and its CargoJournal of Molecular Biology, 2006
- Long Range Allosteric Control of Cytoplasmic Dynein ATPase Activity by the Stalk and C-terminal DomainsPublished by Elsevier ,2005
- Three-dimensional reconstruction of axonemal outer dynein arms in situ by electron tomographyCell Motility, 2005
- Structural Determinants of RhoA Binding and Nucleotide Exchange in Leukemia-associated Rho Guanine-Nucleotide Exchange FactorJournal of Biological Chemistry, 2004
- 25Å Resolution Structure of a Cytoplasmic Dynein Motor Reveals a Seven-member Planar RingJournal of Molecular Biology, 2004
- Structural analysis of a eukaryotic sliding DNA clamp–clamp loader complexNature, 2004
- A link between sequence conservation and domain motion within the AAA+ familyJournal of Structural Biology, 2004
- Evolutionary history and higher order classification of AAA+ ATPasesJournal of Structural Biology, 2003
- Dynein structure and power strokeNature, 2003
- A Unique β-Hairpin Protruding from AAA+ATPase Domain of RuvB Motor Protein Is Involved in the Interaction with RuvA DNA Recognition Protein for Branch Migration of Holliday JunctionsJournal of Biological Chemistry, 2001