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KIF1A inhibition immortalizes brain stem cells but blocks BDNF-mediated neuronal migration.

Nat Neurosci. 2016; 
Carabalona A, Hu DJ, Vallee RB.
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Plasmid DNA Preparation 1/Neo (GenScript) as it was reported previously9; for the postnatal experiments the two different shRNA were subcloned into an mU6pro vector45; for the conditional experiment we cloned the miR30-based Kif1a shRNA in the pCALSL-mir30 vector (Addgene plasmid 13786 (ref. Get A Quote

摘要

Brain neural stem cells (radial glial progenitors, RGPs) undergo a mysterious form of cell cycle-entrained interkinetic nuclear migration (INM) that is driven apically by cytoplasmic dynein and basally by the kinesin KIF1A, which has recently been implicated in human brain developmental disease. To understand the consequences of altered basal INM and the roles of KIF1A in disease, we performed constitutive and conditional RNAi and expressed mutant KIF1A in E16 to P7 rat RGPs and neurons. RGPs inhibited in basal INM still showed normal cell cycle progression, although neurogenic divisions were severely reduced. Postmitotic neuronal migration was independently disrupted at the multipolar stage and accompanied by ... More

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