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   An autism-associated variant of epac2 reveals a role for ras/epac2 signaling in controlling basal dendrite maintenance in mice  
   
نویسنده srivastava d.p. ,woolfrey k.m. ,jones k.a. ,anderson c.t. ,smith k.r. ,russell t.a. ,lee h. ,yasvoina m.v. ,wokosin d.l. ,ozdinler p.h. ,shepherd g.m.g. ,penzes p.
منبع plos biology - 2012 - دوره : 10 - شماره : 6
چکیده    The architecture of dendritic arbors determines circuit connectivity,receptive fields,and computational properties of neurons,and dendritic structure is impaired in several psychiatric disorders. while apical and basal dendritic compartments of pyramidal neurons are functionally specialized and differentially regulated,little is known about mechanisms that selectively maintain basal dendrites. here we identified a role for the ras/epac2 pathway in maintaining basal dendrite complexity of cortical neurons. epac2 is a guanine nucleotide exchange factor (gef) for the ras-like small gtpase rap,and it is highly enriched in the adult mouse brain. we found that in vivo epac2 knockdown in layer 2/3 cortical neurons via in utero electroporation reduced basal dendritic architecture,and that epac2 knockdown in mature cortical neurons in vitro mimicked this effect. overexpression of an epac2 rare coding variant,found in human subjects diagnosed with autism,also impaired basal dendritic morphology. this mutation disrupted epac2's interaction with ras,and inhibition of ras selectively interfered with basal dendrite maintenance. finally,we observed that components of the ras/epac2/rap pathway exhibited differential abundance in the basal versus apical dendritic compartments. these findings define a role for epac2 in enabling crosstalk between ras and rap signaling in maintaining basal dendrite complexity,and exemplify how rare coding variants,in addition to their disease relevance,can provide insight into cellular mechanisms relevant for brain connectivity. © 2012 srivastava et al.
آدرس department of physiology,northwestern university feinberg school of medicine,chicago,il,united states,department of neuroscience and centre for the cellular basis of behaviour,the james black centre,king's college london,institute of psychiatry,london, United Kingdom, department of physiology,northwestern university feinberg school of medicine,chicago,il, United States, department of physiology,northwestern university feinberg school of medicine,chicago,il, United States, department of physiology,northwestern university feinberg school of medicine,chicago,il, United States, department of physiology,northwestern university feinberg school of medicine,chicago,il, United States, department of physiology,northwestern university feinberg school of medicine,chicago,il, United States, weinberg college of arts and sciences,northwestern university,evanston,il, United States, davee department of neurology,northwestern university feinberg school of medicine,chicago,il, United States, department of physiology,northwestern university feinberg school of medicine,chicago,il, United States, davee department of neurology,northwestern university feinberg school of medicine,chicago,il,united states,cognitive neurology and disease center,northwestern university feinberg school of medicine,chicago,il,united states,lurie cancer research center,northwestern university feinberg school of medicine,chicago,il, United States, department of physiology,northwestern university feinberg school of medicine,chicago,il, United States, department of physiology,northwestern university feinberg school of medicine,chicago,il,united states,lurie cancer research center,northwestern university feinberg school of medicine,chicago,il,united states,department of psychiatry and behavioral sciences,northwestern university feinberg school of medicine,chicago,il, United States
 
     
   
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