4.6 Article

A kinesin adapter directly mediates dendritic mRNA localization during neural development in mice

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 295, 期 19, 页码 6605-6628

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.RA118.005616

关键词

neuron; kinesin; brain-derived neurotrophic factor (BDNF); synapse; RNA interference (RNAi); BDNF; kinesin; mRNA localization; PAT1; ZBP1

资金

  1. National Institutes of Health [GM084805]
  2. National Science Foundation (NSF) [0819022, 0960367]
  3. Hunter College of the City University of New York
  4. Lehman College of the City University of New York
  5. Graduate Center of the City University of New York
  6. Direct For Biological Sciences
  7. Div Of Biological Infrastructure [0960367] Funding Source: National Science Foundation
  8. Div Of Molecular and Cellular Bioscience
  9. Direct For Biological Sciences [0819022] Funding Source: National Science Foundation

向作者/读者索取更多资源

Motor protein-based active transport is essential for mRNA localization and local translation in animal cells, yet how mRNA granules interact with motor proteins remains poorly understood. Using an unbiased yeast two?hybrid screen for interactions between murine RNA-binding proteins (RBPs) and motor proteins, here we identified protein interaction with APP tail-1 (PAT1) as a potential direct adapter between zipcode-binding protein 1 (ZBP1, a ?-actin RBP) and the kinesin-I motor complex. The amino acid sequence of mouse PAT1 is similar to that of the kinesin light chain (KLC), and we found that PAT1 binds to KLC directly. Studying PAT1 in mouse primary hippocampal neuronal cultures from both sexes and using structured illumination microscopic imaging of these neurons, we observed that brain-derived neurotrophic factor (BDNF) enhances co-localization of dendritic ZBP1 and PAT1 within granules that also contain kinesin-I. PAT1 is essential for BDNF-stimulated neuronal growth cone development and dendritic protrusion formation, and we noted that ZBP1 and PAT1 co-locate along with ?-actin mRNA in actively transported granules in living neurons. Acute disruption of the PAT1?ZBP1 interaction in neurons with PAT1 siRNA or a dominant-negative ZBP1 construct diminished localization of ?-actin mRNA but not of Ca2+/calmodulin-dependent protein kinase II? (CaMKII?) mRNA in dendrites. The aberrant ?-actin mRNA localization resulted in abnormal dendritic protrusions and growth cone dynamics. These results suggest a critical role for PAT1 in BDNF-induced ?-actin mRNA transport during postnatal development and reveal a new molecular mechanism for mRNA localization in vertebrates.

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