Spine plasticity of dentate gyrus parvalbumin-positive interneurons is regulated by experience

被引:0
|
作者
Kaufhold, Dorthe [1 ,2 ]
de las Casas, Eduardo Maristany [3 ]
Ocana-Fernandez, Maria Del Angel [1 ]
Cazala, Aurore [1 ]
Yuan, Mei [1 ]
Kulik, Akos [4 ,5 ]
Cholvin, Thibault [1 ]
Steup, Stefanie [1 ]
Sauer, Jonas -Frederic [1 ]
Eyre, Mark D. [1 ]
Elgueta, Claudio [1 ]
Strueber, Michael [6 ]
Bartos, Marlene [1 ]
机构
[1] Albert Ludwigs Univ Freiburg, Inst Physiol 1, Fac Med, D-79104 Freiburg, Germany
[2] Albert Ludwigs Univ Freiburg, Fac Biol, D-79104 Freiburg, Germany
[3] Humboldt Univ, Inst Biol, Neuronal Plast, D-10117 Berlin, Germany
[4] Albert Ludwigs Univ Freiburg, Inst Physiol 2, Fac Med, D-79104 Freiburg, Germany
[5] Albert Ludwigs Univ Freiburg, BIOSS Ctr Biol Signaling Studies, D-79104 Freiburg, Germany
[6] Goethe Univ, Epilepsy Ctr Frankfurt Rhine Main, Ctr Neurol & Neurosurg, D-60528 Frankfurt, Germany
来源
CELL REPORTS | 2024年 / 43卷 / 03期
基金
欧洲研究理事会;
关键词
DENDRITIC SPINES; EXCITATORY SYNAPSES; SYNAPTIC PLASTICITY; STRUCTURAL BASIS; GRANULE CELLS; BASKET CELLS; IN-VIVO; MEMORY; AMPA; MECHANISMS;
D O I
10.1016/j.celrep.2024.113806
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Experience -driven alterations in neuronal activity are followed by structural -functional modifications allowing cells to adapt to these activity changes. Structural plasticity has been observed for cortical principal cells. However, how GABAergic interneurons respond to experience -dependent network activity changes is not well understood. We show that parvalbumin-expressing interneurons (PVIs) of the dentate gyrus (DG) possess dendritic spines, which undergo behaviorally induced structural dynamics. Glutamatergic inputs at PVI spines evoke signals with high spatial compartmentalization defined by neck length. Mice experiencing novel contexts form more PVI spines with elongated necks and exhibit enhanced network and PVI activity and cFOS expression. Enhanced green fluorescent protein reconstitution across synaptic partner -mediated synapse labeling shows that experience -driven PVI spine growth boosts targeting of PVI spines over shafts by glutamatergic synapses. Our findings propose a role for PVI spine dynamics in regulating PVI excitation by their inputs, which may allow PVIs to dynamically adjust their functional integration in the DG microcircuitry in relation to network computational demands.
引用
收藏
页数:22
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