The endosomal pathway in neuronal dendrites is essential for membrane receptor trafficking and proper synaptic function and plasticity. However, the molecular mechanisms that organize specific endocytic trafficking routes are poorly understood. Here, we identify GRIP-associated protein-1 (GRASP-1) as a neuron-specific effector of Rab4 and key component of the molecular machinery that coordinates recycling endosome maturation in dendrites. We show that GRASP-1 is necessary for AMPA receptor recycling, maintenance of spine morphology, and synaptic plasticity. At the molecular level, GRASP-1 segregates Rab4 from EEA1/Neep21/Rab5-positive early endosomal membranes and coordinates the coupling to Rab11-labelled recycling endosomes by interacting with the endosomal SNARE syntaxin 13. We propose that GRASP-1 connects early and late recycling endosomal compartments by forming a molecular bridge between Rab-specific membrane domains and the endosomal SNARE machinery. The data uncover a new mechanism to achieve specificity and directionality in neuronal membrane receptor trafficking.

Neuron specific rab4 effector grasp-1 coordinates membrane specialization and maturation of recycling endosomes / Hoogenraad, C. C.; Popa, I.; Futai, K.; Sanchez Martinez, E.; Wulf, P. S.; van Vlijmen, T.; Dortland, B. R.; Oorschot, V.; Govers, R.; Monti, Maria; Heck, A. J.; Sheng, M.; Klumperman, J.; Rehmann, H.; Jaarsma, D.; Kapitein, L. C.; van der Sluijs, P.. - In: PLOS BIOLOGY. - ISSN 1544-9173. - 8:1(2010), pp. 1-23. [10.1371/journal.pbio.1000283]

Neuron specific rab4 effector grasp-1 coordinates membrane specialization and maturation of recycling endosomes

MONTI, MARIA;
2010

Abstract

The endosomal pathway in neuronal dendrites is essential for membrane receptor trafficking and proper synaptic function and plasticity. However, the molecular mechanisms that organize specific endocytic trafficking routes are poorly understood. Here, we identify GRIP-associated protein-1 (GRASP-1) as a neuron-specific effector of Rab4 and key component of the molecular machinery that coordinates recycling endosome maturation in dendrites. We show that GRASP-1 is necessary for AMPA receptor recycling, maintenance of spine morphology, and synaptic plasticity. At the molecular level, GRASP-1 segregates Rab4 from EEA1/Neep21/Rab5-positive early endosomal membranes and coordinates the coupling to Rab11-labelled recycling endosomes by interacting with the endosomal SNARE syntaxin 13. We propose that GRASP-1 connects early and late recycling endosomal compartments by forming a molecular bridge between Rab-specific membrane domains and the endosomal SNARE machinery. The data uncover a new mechanism to achieve specificity and directionality in neuronal membrane receptor trafficking.
2010
Neuron specific rab4 effector grasp-1 coordinates membrane specialization and maturation of recycling endosomes / Hoogenraad, C. C.; Popa, I.; Futai, K.; Sanchez Martinez, E.; Wulf, P. S.; van Vlijmen, T.; Dortland, B. R.; Oorschot, V.; Govers, R.; Monti, Maria; Heck, A. J.; Sheng, M.; Klumperman, J.; Rehmann, H.; Jaarsma, D.; Kapitein, L. C.; van der Sluijs, P.. - In: PLOS BIOLOGY. - ISSN 1544-9173. - 8:1(2010), pp. 1-23. [10.1371/journal.pbio.1000283]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/364479
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