Gene/Protein
Disease
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Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
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Drug
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Target Concepts:
Gene/Protein
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Query: EC:3.6.4.4 (
kinesin
)
5,033
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The function of the multi-PDZ domain scaffold protein GRIP1 (
glutamate receptor interacting protein 1
) in neurons is unclear. To explore the function of GRIP1 in hippocampal neurons, we used RNA interference (RNAi) to knock down the expression of GRIP1. Knockdown of GRIP1 by small interfering RNA (siRNA) in cultured hippocampal neurons caused a loss of dendrites, associated with mislocalization of the GRIP-interacting proteins GIuR2 (AMPA receptor subunit), EphB2 (receptor tyrosine kinase) and KIF5 (also known as kinesin 1; microtubule motor). The loss of dendrites by GRIP1-siRNA was rescued by overexpression of the extracellular domain of EphB2, and was phenocopied by overexpression of the intracellular domain of EphB2 and extracellular application of ephrinB-Fc fusion proteins. Neurons from EphB1-EphB2-EphB3 triple knockout mice showed abnormal dendrite morphogenesis. Disruption of the KIF5-GRIP1 interaction inhibited EphB2 trafficking and strongly impaired dendritic growth. These results indicate an important role for GRIP1 in dendrite morphogenesis by serving as an adaptor protein for
kinesin
-dependent transport of EphB receptors to dendrites.
...
PMID:GRIP1 controls dendrite morphogenesis by regulating EphB receptor trafficking. 1596 73
Regulation of cargo transport via adaptor molecules is essential for neuronal development. However, the role of PDZ scaffolding proteins as adaptors in neuronal cargo trafficking is still poorly understood. Here, we show by genetic deletion in mice that the multi-PDZ domain scaffolding protein
glutamate receptor interacting protein 1
(
GRIP1
) is required for dendrite development. We identify an interaction between
GRIP1
and 14-3-3 proteins that is essential for the function of
GRIP1
as an adaptor protein in dendritic cargo transport. Mechanistically, 14-3-3 binds to the
kinesin
-1 binding region in
GRIP1
in a phospho-dependent manner and detaches
GRIP1
from the
kinesin
-1 motor protein complex thereby regulating cargo transport. A single point mutation in the Thr956 of
GRIP1
in transgenic mice impairs dendritic development. Together, our results show a regulatory role for
GRIP1
during microtubule-based transport and suggest a crucial function for 14-3-3 proteins in controlling
kinesin
-1 motor attachment during neuronal development.
...
PMID:The GRIP1/14-3-3 pathway coordinates cargo trafficking and dendrite development. 2457 23
The GluA2 subunit of AMPA-type glutamate receptors (AMPARs) regulates excitatory synaptic transmission in neurons. In addition, the transsynaptic cell adhesion molecule N-cadherin controls excitatory synapse function and stabilizes dendritic spine structures. At postsynaptic membranes, GluA2 physically binds N-cadherin, underlying spine growth and synaptic modulation. We report that N-cadherin binds to PSD-95/SAP90/DLG/ZO-1 (PDZ) domain 2 of the
glutamate receptor interacting protein 1
(
GRIP1
) through its intracellular C terminus. N-cadherin and GluA2-containing AMPARs are presorted to identical transport vesicles for dendrite delivery, and live imaging reveals cotransport of both proteins. The
kinesin
KIF5 powers GluA2/N-cadherin codelivery by using
GRIP1
as a multilink interface. Notably, GluA2 and N-cadherin use different PDZ domains on
GRIP1
to simultaneously bind the transport complex, and interference with either binding motif impairs the turnover of both synaptic cargoes. Depolymerization of microtubules, deletion of the KIF5 motor domain, or specific blockade of AMPAR exocytosis affects delivery of GluA2/N-cadherin vesicles. At the functional level, interference with this cotransport reduces the number of spine protrusions and excitatory synapses. Our data suggest the concept that the multi-PDZ-domain adaptor protein
GRIP1
can act as a scaffold at trafficking vesicles in the combined delivery of AMPARs and N-cadherin into dendrites.
...
PMID:GRIP1 interlinks N-cadherin and AMPA receptors at vesicles to promote combined cargo transport into dendrites. 2463 25