Interleukin-13 and its receptor are synaptic proteins involved in plasticity and neuroprotection

Author:

Li Shun,olde Heuvel Florian,Rehman Rida,Li Zhenghui,Aousji Oumayma,Froehlich Albrecht,Zhang Wanhong,Conquest Alison,Woelfle Sarah,Schoen Michael,O’Meara Caitlin,Reinhardt Richard Lee,Voehringer David,Kassubek Jan,Ludolph Albert,Huber-Lang Markus,Knöll Bernd,Morganti-Kossmann Maria Cristina,Boeckers Tobias,Roselli FrancescoORCID

Abstract

AbstractImmune system molecules are expressed by neurons, often for unknown functions. We have identified IL-13 and its receptor IL-13Ra1 as neuronal, synaptic proteins in mouse, rat, and human brains, whose engagement upregulates the phosphorylation of NMDAR and AMPAR subunits and, in turn, increases synaptic activity and CREB-mediated transcription. We demonstrate that increased IL-13 is a hallmark of traumatic brain injury (TBI) in mice as well as in two distinct cohorts of human patients. We also provide evidence that IL-13 upregulation protects neurons from excitotoxic death. We show IL-13 upregulation occurring in several cohorts of human brain samples and in CSF. Thus, IL-13 is a previously unrecognized physiological modulator of synaptic physiology of neuronal origin, with implications for the establishment of synaptic plasticity and the survival of neurons under injury conditions. Furthermore, we suggest that the neuroprotection afforded through the upregulation of IL-13 represents a new entry point for interventions in the pathophysiology of TBI.

Publisher

Cold Spring Harbor Laboratory

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Brain borders at the central stage of neuroimmunology;Nature;2022-12-14

2. Interleukin 4/13 signaling in cardiac regeneration and repair;American Journal of Physiology-Heart and Circulatory Physiology;2022-11-01

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