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Dual control of Kinesin-1 recruitment to microtubules by Ensconsin in Drosophila neuroblasts and oocytes.

Development. 2019 Apr 17;146(8)
Mathieu Métivier 1 , Brigette Y Monroy 2 , Emmanuel Gallaud 1 , Renaud Caous 1 , Aude Pascal 1 , Laurent Richard-Parpaillon 1 , Antoine Guichet 3 , Kassandra M Ori-McKenney 2 , Régis Giet 4
Mathieu Métivier 1 , Brigette Y Monroy 2 , Emmanuel Gallaud 1 , Renaud Caous 1 , Aude Pascal 1 , Laurent Richard-Parpaillon 1 , Antoine Guichet 3 , Kassandra M Ori-McKenney 2 , Régis Giet 4
+ et al

[No authors listed]

Author information
  • 1 Univ. Rennes, CNRS, IGDR (Institut de Génétique et Développement de Rennes) - UMR 6290, F-35000 Rennes, France.
  • 2 University of California, Davis, One Shields Avenue, Davis, CA 95616, USA.
  • 3 Institut Jacques Monod-Université Paris Diderot-Paris 7, 15 rue Hélène Brion, 75205 Paris Cedex 13, France.
  • 4 Univ. Rennes, CNRS, IGDR (Institut de Génétique et Développement de Rennes) - UMR 6290, F-35000 Rennes, France regis.giet@univ-rennes1.fr.

摘要


Drosophila Ensconsin (also known as MAP7) controls spindle length, centrosome separation in brain neuroblasts (NBs) and asymmetric transport in oocytes. The control of spindle length by Ensconsin is Kinesin-1 independent but centrosome separation and oocyte transport require targeting of Kinesin-1 to microtubules by Ensconsin. However, the molecular mechanism used for this targeting remains unclear. Ensconsin contains a microtubule (MT)-binding domain (MBD) and a Kinesin-binding domain (KBD). Rescue experiments show that only full-length Ensconsin restores the spindle length phenotype. KBD expression rescues ensc centrosome separation defects in NBs, but not the fast oocyte streaming and the localization of Staufen and Gurken. Interestingly, the KBD can stimulate Kinesin-1 targeting to MTs in vivo and in vitro We propose that a KBD and Kinesin-1 complex is a minimal activation module that increases Kinesin-1 affinity for MTs. Addition of the MBD present in full-length Ensconsin allows this process to occur directly on the MT and triggers higher Kinesin-1 targeting. This dual regulation by Ensconsin is essential for optimal Kinesin-1 targeting to MTs in oocytes, but not in NBs, illustrating the importance of adapting Kinesin-1 recruitment to different biological contexts. © 2019. Published by The Company of Biologists Ltd.

KEYWORDS: Drosophila, Ensconsin, Kinesin-1, Microtubule, Neuroblast, Oocyte