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Neocortical Chandelier Cells Developmentally Shape Axonal Arbors through Reorganization but Establish Subcellular Synapse Specificity without Refinement.

eNeuro. 2017; 
Steinecke A, Hozhabri E, Tapanes S, Ishino Y, Zeng H, Kamasawa N, Taniguchi H.
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Gene Synthesis The triple GFP unit was generated by gene synthesis (Genscript) and contains sequences for Em- erald GFP (Life Technologies), TagGFP2 (Evrogen) and hu- manized Renilla GFP variants, which have been linked together by viral T2A and P2A oligopeptide sequences. Get A Quote

摘要

Diverse types of cortical interneurons (INs) mediate various kinds of inhibitory control mechanisms to balance and shape network activity. Distinct IN subtypes develop uniquely organized axonal arbors that innervate different subcellular compartments of excitatory principal neurons (PNs), which critically contribute to determining their output properties. However, it remains poorly understood how they establish this peculiar axonal organization and synaptic connectivity during development. Here, taking advantage of genetic labeling of IN progenitors, we examined developmental processes of axonal arbors and synaptic connections formed by murine chandelier cells (ChCs), which innervate axon initial segments (AISs... More

关键词

axon initial segment; axonal remodeling; chandelier cell; cortical interneuron; subcellular synapse specificity