The mammalian dynein/dynactin complex is a strong opponent to kinesin in a tug-of-war competition
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Andrew P. Carter | Ahmet Yildiz | A. Carter | Armando Reimer | A. Yildiz | Max A. Schlager | H. Foster | V. Belyy | Vladislav Belyy | Helen Foster | Armando E. Reimer
[1] S. Burgess,et al. Dynein structure and power stroke , 2003, Nature.
[2] Clare C. Yu,et al. Mechanical stochastic tug-of-war models cannot explain bidirectional lipid-droplet transport , 2011, Proceedings of the National Academy of Sciences.
[3] Samara L. Reck-Peterson,et al. Force-Induced Bidirectional Stepping of Cytoplasmic Dynein , 2007, Cell.
[4] B. C. Carter,et al. Cytoplasmic dynein functions as a gear in response to load , 2004, Nature.
[5] E. Holzbaur,et al. Integrated regulation of motor-driven organelle transport by scaffolding proteins. , 2014, Trends in cell biology.
[6] E. Holzbaur,et al. Dynactin functions as both a dynamic tether and brake during dynein-driven motility , 2014, Nature Communications.
[7] R. Lipowsky,et al. Cooperative cargo transport by several molecular motors. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[8] Ahmet Yildiz,et al. Cytoplasmic Dynein Transports Cargos via Load-Sharing between the Heads , 2014, Nature Communications.
[9] Michael P. Sheetz,et al. One-dimensional diffusion on microtubules of particles coated with cytoplasmic dynein and immunoglobulins. , 1999, Cell structure and function.
[10] Gira Bhabha,et al. Activation of cytoplasmic dynein motility by dynactin-cargo adapter complexes , 2014, Science.
[11] M. Castoldi,et al. Purification of brain tubulin through two cycles of polymerization-depolymerization in a high-molarity buffer. , 2003, Protein expression and purification.
[12] Ahmet Yildiz,et al. TENSION ON THE LINKER GATES THE ATP-DEPENDENT RELEASE OF DYNEIN FROM MICROTUBULES , 2014, Nature Communications.
[13] G. E. Osborn,et al. Ordered Recruitment of Dynactin to the Microtubule Plus-End is Required for Efficient Initiation of Retrograde Axonal Transport , 2013, The Journal of Neuroscience.
[14] E. Holzbaur,et al. JIP1 regulates the directionality of APP axonal transport by coordinating kinesin and dynein motors , 2013, The Journal of cell biology.
[15] A. Hyman,et al. BICD2, dynactin, and LIS1 cooperate in regulating dynein recruitment to cellular structures , 2012, Molecular biology of the cell.
[16] Ha Thanh Thi Hoang,et al. In vitro reconstitution of a highly processive recombinant human dynein complex , 2014, The EMBO journal.
[17] Steven P. Gross,et al. Consequences of Motor Copy Number on the Intracellular Transport of Kinesin-1-Driven Lipid Droplets , 2008, Cell.
[18] Steven M. Block,et al. Force and velocity measured for single kinesin molecules , 1994, Cell.
[19] T. Schroer,et al. Dynactin increases the processivity of the cytoplasmic dynein motor , 1999, Nature Cell Biology.
[20] R. Mallik,et al. Molecular Adaptations Allow Dynein to Generate Large Collective Forces inside Cells , 2013, Cell.
[21] R. Vallee,et al. A Cytoplasmic Dynein Tail Mutation Impairs Motor Processivity , 2010, Nature Cell Biology.
[22] R. Vallee,et al. LIS1 and NudE Induce a Persistent Dynein Force-Producing State , 2010, Cell.
[23] R. Vallee,et al. Autoregulatory Mechanism for Dynactin Control of Processive and Diffusive Dynein Transport , 2014, Nature Cell Biology.
[24] T. Schroer,et al. Structural organization of the dynein-dynactin complex bound to microtubules , 2015, Nature Structural &Molecular Biology.
[25] Roop Mallik,et al. Tug-of-war between dissimilar teams of microtubule motors regulates transport and fission of endosomes , 2009, Proceedings of the National Academy of Sciences.
[26] Kai Zhang,et al. The structure of the dynactin complex and its interaction with dynein , 2015, Science.
[27] Ken’ya Furuta,et al. Autoinhibition and cooperative activation mechanisms of cytoplasmic dynein , 2014, Nature Cell Biology.
[28] R. Mallik,et al. Dynein Clusters into Lipid Microdomains on Phagosomes to Drive Rapid Transport toward Lysosomes , 2016, Cell.
[29] William O. Hancock,et al. Bidirectional cargo transport: moving beyond tug of war , 2014, Nature Reviews Molecular Cell Biology.
[30] Richard B. Vallee,et al. Control of cytoplasmic dynein force production and processivity by its C-terminal domain , 2015, Nature Communications.
[31] Adam G. Hendricks,et al. Motor Coordination via a Tug-of-War Mechanism Drives Bidirectional Vesicle Transport , 2010, Current Biology.
[32] Mark J. Schnitzer,et al. Single kinesin molecules studied with a molecular force clamp , 1999, Nature.
[33] Samara L. Reck-Peterson,et al. Tug-of-War in Motor Protein Ensembles Revealed with a Programmable DNA Origami Scaffold , 2012, Science.
[34] Kechun Zhang,et al. Engineering Cooperativity in Biomotor-Protein Assemblies , 2006, Science.
[35] S. Burgess,et al. Functions and mechanics of dynein motor proteins , 2013, Nature Reviews Molecular Cell Biology.
[36] Samara L. Reck-Peterson,et al. Single-Molecule Analysis of Dynein Processivity and Stepping Behavior , 2006, Cell.
[37] John A. Hammer,et al. The cargo-binding domain regulates structure and activity of myosin 5 , 2006, Nature.
[38] Peter A. Combs,et al. Cytoplasmic Dynein Moves Through Uncoordinated Stepping of the AAA+ Ring Domains , 2012, Science.
[39] D. Hackney,et al. The Structure of the Kinesin-1 Motor-Tail Complex Reveals the Mechanism of Autoinhibition , 2011, Science.
[40] C. Leidel,et al. Measuring molecular motor forces in vivo: implications for tug-of-war models of bidirectional transport. , 2012, Biophysical journal.