A missense mutation in human INSC causes peripheral neuropathy

Author:

Yeh Jui-YuORCID,Chao Hua-Chuan,Hong Cheng-Li,Hung Yu-Chien,Tzou Fei-YangORCID,Hsiao Cheng-Tsung,Li Jeng-LinORCID,Chen Wen-Jie,Chou Cheng-TaORCID,Tsai Yu-Shuen,Liao Yi-ChuORCID,Lin Yu-ChunORCID,Lin SueweiORCID,Huang Shu-YiORCID,Kennerson Marina,Lee Yi-ChungORCID,Chan Chih-ChiangORCID

Abstract

AbstractPAR3/INSC/LGN form an evolutionarily conserved complex required for asymmetric cell division in the developing brain, but its post-developmental function and disease relevance in the peripheral nervous system (PNS) remains unknown. We mapped a new locus for axonal Charcot–Marie-Tooth disease (CMT2) and identified a missense mutation c.209 T > G (p.Met70Arg) in the INSC gene. Modeling the INSCM70R variant in Drosophila, we showed that it caused proprioceptive defects in adult flies, leading to gait defects resembling those in CMT2 patients. Cellularly, PAR3/INSC/LGN dysfunction caused tubulin aggregation and necrotic neurodegeneration, with microtubule-stabilizing agents rescuing both morphological and functional defects of the INSCM70R mutation in the PNS. Our findings underscore the critical role of the PAR3/INSC/LGN machinery in the adult PNS and highlight a potential therapeutic target for INSC-associated CMT2.

Funder

National Science and Technology Council

National Health Research Institutes

National Taiwan University

NYMU | Brain Research Center, National Yang-Ming University

Publisher

Springer Science and Business Media LLC

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