ZPR1-Dependent Neurodegeneration Is Mediated by the JNK Signaling Pathway

The zinc finger protein ZPR1 deficiency causes neurodegeneration and results in a mild spinal muscular atrophy (SMA)-like disease in mice with reduced Zpr1 gene dosage. Mutation of the survival motor neuron 1 ( SMN1 ) gene causes SMA. Spinal muscular atrophy is characterized by the degeneration of t...

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Main Authors: Xiaoting Jiang, Annapoorna Kannan, Laxman Gangwani
Format: Article
Language:English
Published: SAGE Publishing 2019-08-01
Series:Journal of Experimental Neuroscience
Online Access:https://doi.org/10.1177/1179069519867915
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spelling doaj-6af4e1bd6c7440fd99a2892a395daf892020-11-25T03:16:19ZengSAGE PublishingJournal of Experimental Neuroscience1179-06952019-08-011310.1177/1179069519867915ZPR1-Dependent Neurodegeneration Is Mediated by the JNK Signaling PathwayXiaoting Jiang0Annapoorna Kannan1Laxman Gangwani2Department of Immunobiology, Houston Methodist Research Institute, Houston, TX, USACenter of Emphasis in Neurosciences, Department of Molecular and Translational Medicine, Paul L. Foster School of Medicine, Texas Tech University Health Sciences Center El Paso, El Paso, TX, USAGraduate School of Biomedical Sciences, Texas Tech University Health Sciences Center El Paso, El Paso, TX, USAThe zinc finger protein ZPR1 deficiency causes neurodegeneration and results in a mild spinal muscular atrophy (SMA)-like disease in mice with reduced Zpr1 gene dosage. Mutation of the survival motor neuron 1 ( SMN1 ) gene causes SMA. Spinal muscular atrophy is characterized by the degeneration of the spinal cord motor neurons caused by chronic low levels of SMN protein. ZPR1 interacts with SMN and is required for nuclear accumulation of SMN. Patients with SMA express reduced levels of ZPR1. Reduced Zpr1 gene dosage increases neurodegeneration and severity of SMA disease in mice. Mechanisms underlying ZPR1-dependent neurodegeneration are largely unknown. We report that neurodegeneration caused by ZPR1 deficiency is mediated by the c-Jun NH 2 -terminal kinase (JNK) group of mitogen-activated protein kinases (MAPK). ZPR1-dependent neuron degeneration is mediated by central nervous system (CNS)-specific isoform JNK3. ZPR1 deficiency activates the MAPK signaling cascade, MLK3 → MKK7 → JNK3, which phosphorylates c-Jun and activates caspase-mediated neuron degeneration. Neurons from Jnk3 -null mice show resistance to ZPR1-dependent neurodegeneration. Pharmacologic inhibition of JNK reduces degeneration of ZPR1-deficient neurons. These data show that ZPR1-dependent neurodegeneration is mediated by the JNK signaling pathway and suggest that ZPR1 downregulation in SMA may contribute to JNK-mediated neurodegeneration associated with SMA pathogenesis.https://doi.org/10.1177/1179069519867915
collection DOAJ
language English
format Article
sources DOAJ
author Xiaoting Jiang
Annapoorna Kannan
Laxman Gangwani
spellingShingle Xiaoting Jiang
Annapoorna Kannan
Laxman Gangwani
ZPR1-Dependent Neurodegeneration Is Mediated by the JNK Signaling Pathway
Journal of Experimental Neuroscience
author_facet Xiaoting Jiang
Annapoorna Kannan
Laxman Gangwani
author_sort Xiaoting Jiang
title ZPR1-Dependent Neurodegeneration Is Mediated by the JNK Signaling Pathway
title_short ZPR1-Dependent Neurodegeneration Is Mediated by the JNK Signaling Pathway
title_full ZPR1-Dependent Neurodegeneration Is Mediated by the JNK Signaling Pathway
title_fullStr ZPR1-Dependent Neurodegeneration Is Mediated by the JNK Signaling Pathway
title_full_unstemmed ZPR1-Dependent Neurodegeneration Is Mediated by the JNK Signaling Pathway
title_sort zpr1-dependent neurodegeneration is mediated by the jnk signaling pathway
publisher SAGE Publishing
series Journal of Experimental Neuroscience
issn 1179-0695
publishDate 2019-08-01
description The zinc finger protein ZPR1 deficiency causes neurodegeneration and results in a mild spinal muscular atrophy (SMA)-like disease in mice with reduced Zpr1 gene dosage. Mutation of the survival motor neuron 1 ( SMN1 ) gene causes SMA. Spinal muscular atrophy is characterized by the degeneration of the spinal cord motor neurons caused by chronic low levels of SMN protein. ZPR1 interacts with SMN and is required for nuclear accumulation of SMN. Patients with SMA express reduced levels of ZPR1. Reduced Zpr1 gene dosage increases neurodegeneration and severity of SMA disease in mice. Mechanisms underlying ZPR1-dependent neurodegeneration are largely unknown. We report that neurodegeneration caused by ZPR1 deficiency is mediated by the c-Jun NH 2 -terminal kinase (JNK) group of mitogen-activated protein kinases (MAPK). ZPR1-dependent neuron degeneration is mediated by central nervous system (CNS)-specific isoform JNK3. ZPR1 deficiency activates the MAPK signaling cascade, MLK3 → MKK7 → JNK3, which phosphorylates c-Jun and activates caspase-mediated neuron degeneration. Neurons from Jnk3 -null mice show resistance to ZPR1-dependent neurodegeneration. Pharmacologic inhibition of JNK reduces degeneration of ZPR1-deficient neurons. These data show that ZPR1-dependent neurodegeneration is mediated by the JNK signaling pathway and suggest that ZPR1 downregulation in SMA may contribute to JNK-mediated neurodegeneration associated with SMA pathogenesis.
url https://doi.org/10.1177/1179069519867915
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AT annapoornakannan zpr1dependentneurodegenerationismediatedbythejnksignalingpathway
AT laxmangangwani zpr1dependentneurodegenerationismediatedbythejnksignalingpathway
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