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皮质小白蛋白中间神经元中Fxr1基因的缺失改变了它们的兴奋性突触反应。

Fxr1 Deletion from Cortical Parvalbumin Interneurons Modifies Their Excitatory Synaptic Responses.

作者信息

Scheuer Katherine S, Jansson Anna M, Shen Minjie, Zhao Xinyu, Jackson Meyer B

机构信息

Department of Neuroscience, University of Wisconsin-Madison, Madison, Wisconsin 53705.

Waisman Center, University of Wisconsin-Madison, Madison, Wisconsin 53705.

出版信息

eNeuro. 2025 Jan 15;12(1). doi: 10.1523/ENEURO.0363-24.2024. Print 2025 Jan.

Abstract

Fragile X autosomal homolog 1 (FXR1), a member of the fragile X messenger riboprotein 1 family, has been linked to psychiatric disorders including autism and schizophrenia. Parvalbumin (PV) interneurons play critical roles in cortical processing and have been implicated in FXR1-linked mental illnesses. Targeted deletion of FXR1 from PV interneurons in mice has been shown to alter cortical excitability and elicit schizophrenia-like behavior. This indicates that FXR1 regulates behaviorally relevant electrophysiological functions in PV interneurons. We therefore expressed a genetically encoded hybrid voltage sensor in PV interneurons and used voltage imaging in slices of mouse somatosensory cortex to assess the impact of targeted FXR1 deletion. These experiments showed that PV interneurons lacking FXR1 had excitatory synaptic potentials with larger amplitudes and shorter latencies compared with wild type. Synaptic potential rise-times, decay-times, and half-widths were also impacted to degrees that varied between cortical layer and synaptic input. Thus, FXR1 modulates the responsiveness of PV interneurons to excitatory synaptic inputs. This will enable FXR1 to control cortical processing in subtle ways, with the potential to influence behavior and contribute to psychiatric dysfunction.

摘要

脆性X染色体常染色体同源物1(FXR1)是脆性X信使核糖核蛋白1家族的成员,与包括自闭症和精神分裂症在内的精神疾病有关。小白蛋白(PV)中间神经元在皮层处理过程中起关键作用,并与FXR1相关的精神疾病有关。已证明从小鼠PV中间神经元中靶向缺失FXR1会改变皮层兴奋性并引发类似精神分裂症的行为。这表明FXR1调节PV中间神经元中与行为相关的电生理功能。因此,我们在PV中间神经元中表达了一种基因编码的混合电压传感器,并在小鼠体感皮层切片中使用电压成像来评估靶向缺失FXR1的影响。这些实验表明,与野生型相比,缺乏FXR1的PV中间神经元具有更大振幅和更短潜伏期的兴奋性突触电位。突触电位的上升时间、衰减时间和半高宽也受到影响,其程度在皮层层和突触输入之间有所不同。因此,FXR1调节PV中间神经元对兴奋性突触输入的反应性。这将使FXR1能够以微妙的方式控制皮层处理,有可能影响行为并导致精神功能障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e2c/11735682/a715b0e63f6c/eneuro-12-ENEURO.0363-24.2024-g001.jpg

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