Motor axon navigation relies on Fidgetin-like 1-driven microtubule plus end dynamics
Page 1 of 1
Motor axon navigation relies on Fidgetin-like 1-driven microtubule plus end dynamics
Fassier C, Fréal A, Gasmi L, Delphin C, Ten Martin D, De Gois S, Tambalo M, Bosc C, Mailly P, Revenu C, Peris L, Bolte S, Schneider-Maunoury S, Houart C, Nothias F, Larcher JC, Andrieux A, Hazan J. Motor axon navigation relies on Fidgetin-like 1-driven microtubule plus end dynamics. J Cell Biol. 2018 Mar 13. pii: jcb.201604108. doi: 10.1083/jcb.201604108. [Epub ahead of print]
Similar topics
» BMP- and Neuropilin-1-mediated motor axon navigation relies on spastin alternative translation
» TACC3 is a microtubule plus end-tracking protein that promotes axon elongation and also regulates microtubule plus end dynamics in multiple embryonic cell types
» Collagen XIXa1 is crucial for motor axon navigation at intermediate targets
» Slow Muscle Precursors Lay Down a Collagen XV Matrix Fingerprint to Guide Motor Axon Navigation
» Genetic and chemical modulation of spastin-dependent axon outgrowth in zebrafish embryos indicates a role for impaired microtubule dynamics in hereditary spastic paraplegia
» TACC3 is a microtubule plus end-tracking protein that promotes axon elongation and also regulates microtubule plus end dynamics in multiple embryonic cell types
» Collagen XIXa1 is crucial for motor axon navigation at intermediate targets
» Slow Muscle Precursors Lay Down a Collagen XV Matrix Fingerprint to Guide Motor Axon Navigation
» Genetic and chemical modulation of spastin-dependent axon outgrowth in zebrafish embryos indicates a role for impaired microtubule dynamics in hereditary spastic paraplegia
Page 1 of 1
Permissions in this forum:
You cannot reply to topics in this forum