Calsyntenins Function as Synaptogenic Adhesion Molecules in Concert with Neurexins

  • Um, Ji Won
  • Pramanik, Gopal
  • Ko, Ji Seung
  • Song, Min-Young
  • Lee, Dongmin
  • 외 5명
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초록

Multiple synaptic adhesion molecules govern synapse formation. Here, we propose calsyntenin-3/alcadein-beta as a synapse organizer that specifically induces presynaptic differentiation in heterologous synapse-formation assays. Calsyntenin-3 (CST-3) is highly expressed during various postnatal periods of mouse brain development. The simultaneous knockdown of all three CSTs, but not CST-3 alone, decreases inhibitory, but not excitatory, synapse densities in cultured hippocampal neurons. Moreover, the knockdown of CSTs specifically reduces inhibitory synaptic transmission in vitro and in vivo. Remarkably, the loss of CSTs induces a concomitant decrease in neuron soma size in a non-cell-autonomous manner. Furthermore, alpha-neurexins (alpha-Nrxs) are components of a CST-3 complex involved in CST-3-mediated presynaptic differentiation. However, CST-3 does not directly bind to Nrxs. Viewed together, these data suggest that the three CSTs redundantly regulate inhibitory synapse formation, inhibitory synapse function, and neuron development in concert with Nrxs.

키워드

INHIBITORY SYNAPSE FORMATIONMEMBRANE-PROTEINSCEREBROSPINAL-FLUIDALPHA-NEUREXINSNEUROLIGIN-1DELETIONRECEPTORCASY-1CARGOMOUSE
제목
Calsyntenins Function as Synaptogenic Adhesion Molecules in Concert with Neurexins
저자
Um, Ji WonPramanik, GopalKo, Ji SeungSong, Min-YoungLee, DongminKim, HyunPark, Kang-SikSuedhof, Thomas C.Tabuchi, KatsuhikoKo, Jaewon
DOI
10.1016/j.celrep.2014.02.010
발행일
2014-03
유형
Article
저널명
Cell Reports
6
6
페이지
1096 ~ 1109