Richard J. McKenney, Ph.D.
Affiliations: | Columbia University, New York, NY |
Area:
Axonal transport, Neural development, DyneinGoogle:
"Richard McKenney"Mean distance: 17.44 (cluster 11) | S | N | B | C | P |
Parents
Sign in to add mentorRichard B. Vallee | grad student | 2010 | Columbia | |
(Mechanochemical Regulation of Cytoplasmic Dynein by LIS1 and NudE.) | ||||
Ronald D. Vale | post-doc | 2016 | UCSF (Cell Biology Tree) |
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Publications
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Rao L, Liu X, Berger F, et al. (2025) The Power of Three: Dynactin associates with three dyneins under load for greater force production. Biorxiv : the Preprint Server For Biology |
Tan TC, Shen Y, Stine LB, et al. (2024) Microtubule-associated protein, MAP1B, encodes functionally distinct polypeptides. The Journal of Biological Chemistry. 107792 |
Guo X, Huang CH, Akagi T, et al. (2024) An Arabidopsis Kinesin-14D motor is associated with midzone microtubules for spindle morphogenesis. Current Biology : Cb. 34: 3747-3762.e6 |
Okada K, Iyer BR, Lammers LG, et al. (2023) Conserved roles for the dynein intermediate chain and Ndel1 in assembly and activation of dynein. Nature Communications. 14: 5833 |
Fan X, McKenney RJ. (2023) Control of motor landing and processivity by the CAP-Gly domain in the KIF13B tail. Nature Communications. 14: 4715 |
Rahi A, Chakraborty M, Agarwal S, et al. (2023) The Ndc80-Cdt1-Ska1 complex is a central processive kinetochore-microtubule coupling unit. The Journal of Cell Biology. 222 |
Okada K, Iyer BR, Lammers LG, et al. (2023) Conserved Roles for the Dynein Intermediate Chain and Ndel1 in Assembly and Activation of Dynein. Biorxiv : the Preprint Server For Biology |
Siahaan V, Tan R, Humhalova T, et al. (2022) Microtubule lattice spacing governs cohesive envelope formation of tau family proteins. Nature Chemical Biology |
Chiba K, Ori-McKenney KM, Niwa S, et al. (2022) Synergistic autoinhibition and activation mechanisms control kinesin-1 motor activity. Cell Reports. 39: 111016 |
Chiba K, Ori-McKenney KM, Niwa S, et al. (2022) Synergistic autoinhibition and activation mechanisms control kinesin-1 motor activity. Cell Reports. 39: 110900 |