Literature DB >> 32891704

Presynaptic PRRT2 Deficiency Causes Cerebellar Dysfunction and Paroxysmal Kinesigenic Dyskinesia.

Dylan J Calame1, Jianfeng Xiao2, Mohammad Moshahid Khan3, T J Hollingsworth4, Yi Xue2, Abigail L Person1, Mark S LeDoux5.   

Abstract

PRRT2 loss-of-function mutations have been associated with familial paroxysmal kinesigenic dyskinesia (PKD), infantile convulsions and choreoathetosis, and benign familial infantile seizures. Dystonia is the foremost involuntary movement disorder manifest by patients with PKD. Using a lacZ reporter and quantitative reverse-transcriptase PCR, we mapped the temporal and spatial distribution of Prrt2 in mouse brain and showed the highest levels of expression in cerebellar cortex. Further investigation into PRRT2 localization within the cerebellar cortex revealed that Prrt2 transcripts reside in granule cells but not Purkinje cells or interneurons within cerebellar cortex, and PRRT2 is presynaptically localized in the molecular layer. Analysis of synapses in the cerebellar molecular layer via electron microscopy showed that Prrt2-/- mice have increased numbers of docked vesicles but decreased vesicle numbers overall. In addition to impaired performance on several motor tasks, approximately 5% of Prrt2-/- mice exhibited overt PKD with clear face validity manifest as dystonia. In Prrt2 mutants, we found reduced parallel fiber facilitation at parallel fiber-Purkinje cell synapses, reduced Purkinje cell excitability, and normal cerebellar nuclear excitability, establishing a potential mechanism by which altered cerebellar activity promotes disinhibition of the cerebellar nuclei, driving motor abnormalities in PKD. Overall, our findings replicate, refine, and expand upon previous work with PRRT2 mouse models, contribute to understanding of paroxysmal disorders of the nervous system, and provide mechanistic insight into the role of cerebellar cortical dysfunction in dystonia.
Copyright © 2020 The Author(s). Published by Elsevier Ltd.. All rights reserved.

Entities:  

Keywords:  Prrt2; cerebellum; dystonia; knock-out mice; paroxysmal kinesigenic dyskinesia

Mesh:

Substances:

Year:  2020        PMID: 32891704      PMCID: PMC9547552          DOI: 10.1016/j.neuroscience.2020.08.034

Source DB:  PubMed          Journal:  Neuroscience        ISSN: 0306-4522            Impact factor:   3.708


  56 in total

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10.  PRRT2 deficiency induces paroxysmal kinesigenic dyskinesia by regulating synaptic transmission in cerebellum.

Authors:  Guo-He Tan; Yuan-Yuan Liu; Lu Wang; Kui Li; Ze-Qiang Zhang; Hong-Fu Li; Zhong-Fei Yang; Yang Li; Dan Li; Ming-Yue Wu; Chun-Lei Yu; Juan-Juan Long; Ren-Chao Chen; Li-Xi Li; Lu-Ping Yin; Ji-Wei Liu; Xue-Wen Cheng; Qi Shen; You-Sheng Shu; Kenji Sakimura; Lu-Jian Liao; Zhi-Ying Wu; Zhi-Qi Xiong
Journal:  Cell Res       Date:  2017-10-20       Impact factor: 25.617

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3.  PRRT2 mutation in a Japanese woman: Adult-onset focal epilepsy coexisting with movement disorders and cerebellar atrophy.

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7.  Age-dependent neurological phenotypes in a mouse model of PRRT2-related diseases.

Authors:  Fay Aj; McMahon T; Im C; Bair-Marshall C; Niesner Kj; Li H; Nelson A; Voglmaier Sm; Fu Y-H; Ptáček Lj
Journal:  Neurogenetics       Date:  2021-06-08       Impact factor: 2.660

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