Mecp2 knock-out astrocytes affect synaptogenesis by interleukin 6 dependent mechanisms

Elena Albizzati, Martina Breccia, Elena Florio, Cecilia Cabasino, Francesca Maddalena Postogna, Riccardo Grassi,Enrica Boda, Cristina Battaglia, Clara De Palma, Concetta De Quattro,Davide Pozzi, Nicoletta Landsberger,Angelisa Frasca

ISCIENCE(2024)

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摘要
Synaptic abnormalities are a hallmark of several neurological diseases, and clarification of the underlying mechanisms represents a crucial step toward the development of therapeutic strategies. Rett syndrome (RTT) is a rare neurodevelopmental disorder, mainly affecting females, caused by mutations in the X -linked methyl-CpG-binding protein 2 (MECP2) gene, leading to a deep derangement of synaptic connectivity. Although initial studies supported the exclusive involvement of neurons, recent data have highlighted the pivotal contribution of astrocytes in RTT pathogenesis through non -cell autonomous mechanisms. Since astrocytes regulate synapse formation and functionality by releasing multiple molecules, we investigated the influence of soluble factors secreted by Mecp2 knock -out (KO) astrocytes on synapses. We found that Mecp2 deficiency in astrocytes negatively affects their ability to support synaptogenesis by releasing synaptotoxic molecules. Notably, neuronal inputs from a dysfunctional astrocyte-neuron crosstalk lead KO astrocytes to aberrantly express IL -6, and blocking IL -6 activity prevents synaptic alterations.
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关键词
Astrocytes,Synaptogenesis,Rett syndrome,Mecp2,astroglia-neuron crosstalk,Interleukin-6,paracrine molecules,non-cell autonomous mechanisms
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