TY - JOUR
T1 - Vangl2 in the Dentate Network Modulates Pattern Separation and Pattern Completion
AU - Robert, Benjamin J.A.
AU - Moreau, Maïté M.
AU - Dos Santos Carvalho, Steve
AU - Barthet, Gael
AU - Racca, Claudia
AU - Bhouri, Mehdi
AU - Quiedeville, Anne
AU - Garret, Maurice
AU - Atchama, Bénédicte
AU - Al Abed, Alice Shaam
AU - Guette, Christelle
AU - Henderson, Deborah J.
AU - Desmedt, Aline
AU - Mulle, Christophe
AU - Marighetto, Aline
AU - Montcouquiol, Mireille
AU - Sans, Nathalie
N1 - Publisher Copyright:
© 2020 The Authors
PY - 2020/6/9
Y1 - 2020/6/9
N2 - The organization of spatial information, including pattern completion and pattern separation processes, relies on the hippocampal circuits, yet the molecular and cellular mechanisms underlying these two processes are elusive. Here, we find that loss of Vangl2, a core PCP gene, results in opposite effects on pattern completion and pattern separation processes. Mechanistically, we show that Vangl2 loss maintains young postmitotic granule cells in an immature state, providing increased cellular input for pattern separation. The genetic ablation of Vangl2 disrupts granule cell morpho-functional maturation and further prevents CaMKII and GluA1 phosphorylation, disrupting the stabilization of AMPA receptors. As a functional consequence, LTP at lateral perforant path-GC synapses is impaired, leading to defects in pattern completion behavior. In conclusion, we show that Vangl2 exerts a bimodal regulation on young and mature GCs, and its disruption leads to an imbalance in hippocampus-dependent pattern completion and separation processes.
AB - The organization of spatial information, including pattern completion and pattern separation processes, relies on the hippocampal circuits, yet the molecular and cellular mechanisms underlying these two processes are elusive. Here, we find that loss of Vangl2, a core PCP gene, results in opposite effects on pattern completion and pattern separation processes. Mechanistically, we show that Vangl2 loss maintains young postmitotic granule cells in an immature state, providing increased cellular input for pattern separation. The genetic ablation of Vangl2 disrupts granule cell morpho-functional maturation and further prevents CaMKII and GluA1 phosphorylation, disrupting the stabilization of AMPA receptors. As a functional consequence, LTP at lateral perforant path-GC synapses is impaired, leading to defects in pattern completion behavior. In conclusion, we show that Vangl2 exerts a bimodal regulation on young and mature GCs, and its disruption leads to an imbalance in hippocampus-dependent pattern completion and separation processes.
KW - AMPA receptors
KW - JNK
KW - cognitive processes
KW - computational function
KW - granular cells
KW - hippocampus
KW - memory
KW - noncanonical Wnt-PCP signaling
KW - plasticity
KW - polarity
UR - http://www.scopus.com/inward/record.url?scp=85085983308&partnerID=8YFLogxK
U2 - 10.1016/j.celrep.2020.107743
DO - 10.1016/j.celrep.2020.107743
M3 - Article
SN - 2211-1247
VL - 31
JO - Cell Reports
JF - Cell Reports
IS - 10
M1 - 107743
ER -