RRC ID 85009
著者 Guo Q, Kouyama-Suzuki E, Shirai Y, Tabuchi K.
タイトル Jun N-Terminal Kinase Inhibitor Suppresses CASK Deficiency-Induced Cerebellar Granular Cell Death in MICPCH Syndrome Model Mice.
ジャーナル Cells
Abstract Microcephaly with pontine and cerebellar hypoplasia (MICPCH) syndrome is a severe neurodevelopmental disorder caused by a deficiency in the X-linked gene calcium/calmodulin-dependent serine protein kinase (CASK). A better understanding of the role of CASK in the pathophysiology of neurodevelopmental disorders may provide insights into novel therapeutic and diagnostic strategies for MICPCH syndrome and other neurodegenerative diseases. To investigate this, we generated CASK knockout (KO) cerebellar granule (CG) cell culture from CASK floxed (CASKflox/flox) mice by infecting lentiviruses expressing codon-improved Cre recombinase (iCre). We performed RNA-sequencing (RNA-seq) on these cells and found that CASK-KO CG cells underwent apoptosis by activating intracellular Jun N-terminal kinase (JNK) signaling and upregulating reactive oxygen species (ROS)-related gene expression. We also performed mouse gait analysis and limb clasping behavior experiments on trans-heterozygous CASK-KO and Hprt-eGFP (CASK+/- HprteGFP/+) mice. The CASK+/- HprteGFP/+ mice exhibited cerebellar ataxic phenotypes as judged by the scores of these experiments compared to the CASK wild-type control (CASK+/+ HprteGFP/+) mice. Interestingly, the administration of the JNK inhibitor, JNK-IN-8, in CASK-KO CG cell cultures increased CG cell survival by reducing ROS generation. Moreover, injection of JNK-IN-8 into the cerebellum of CASK+/- HprteGFP/+ mice suppressed CG cell death and alleviated cerebellar ataxic phenotypes in vivo. In conclusion, JNK-IN-8 suppresses the cell death and activation of the ROS pathway in CASK-KO CG cells in both in vitro and in vivo models, suggesting its potential as a therapeutic strategy for cerebellar neurodegeneration in MICPCH syndrome.
巻・号 14(10)
公開日 2025-5-20
DOI 10.3390/cells14100750
PII cells14100750
PMID 40422253
PMC PMC12109623
MeSH Animals Apoptosis / drug effects Cell Death / drug effects Cerebellum* / abnormalities Cerebellum* / drug effects Cerebellum* / pathology Developmental Disabilities Disease Models, Animal Genetic Diseases, X-Linked* Guanylate Kinases* / deficiency Guanylate Kinases* / genetics Guanylate Kinases* / metabolism JNK Mitogen-Activated Protein Kinases* / antagonists & inhibitors JNK Mitogen-Activated Protein Kinases* / metabolism Mice Mice, Knockout Microcephaly* / drug therapy Microcephaly* / genetics Microcephaly* / pathology Nervous System Malformations* / drug therapy Nervous System Malformations* / genetics Nervous System Malformations* / pathology Protein Kinase Inhibitors* / pharmacology Reactive Oxygen Species / metabolism
IF 4.366
リソース情報
実験動物マウス RBRC09532