Bi

A reconstituted mammalian APC-kinesin complex selectively transports defined packages of axonal mRNAs

Datum
26.02.2020
Zeit
11:00 - 12:00
Sprecher
Sebastian Maurer
Zugehörigkeit
CRG Barcelona, Spain
Sprache
en
Hauptthema
Biologie
Host
Jan Brugues
Beschreibung
Through the asymmetric distribution of mRNAs cells spatially regulate gene expression to create cytoplasmic domains with specialized functions. In neurons, mRNA localization is required for essential processes such as cell polarization, migration and synaptic plasticity underlying long-term memory formation. We report the first reconstitution of a mammalian mRNA transport system revealing that the tumour suppressor adenomatous polyposis coli (APC) forms stable complexes with the axonally localized b-actin and b2B-tubulin mRNAs which are linked to a kinesin-2 via the cargo adaptor KAP3. APC activates kinesin-2 and both proteins are sufficient to drive specific transport of defined mRNA packages. Guanine-rich sequences located in 3’UTRs of axonal mRNAs increase transport efficiency and balance the access of different mRNAs to the transport system. Our findings reveal for the first time a minimal set of proteins sufficient to transport mammalian mRNAs.

Letztmalig verändert: 27.02.2020, 00:07:01

Veranstaltungsort

Max Planck Institute of Molecular Cell Biology and Genetics (CSBD SR Ground Floor)Pfotenhauerstraße10801307Dresden
Telefon
+49 351 210-0
Fax
+49 351 210-2000
E-Mail
MPI-CBG
Homepage
http://www.mpi-cbg.de

Veranstalter

Max Planck Institute of Molecular Cell Biology and GeneticsPfotenhauerstraße10801307Dresden
Telefon
+49 351 210-0
Fax
+49 351 210-2000
E-Mail
MPI-CBG
Homepage
http://www.mpi-cbg.de
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