Impaired mechanical response of an EDMD mutation leads to motility phenotypes that are repaired by loss of prenylation

Noam Zuela-Sopilniak(Hebrew University of Jerusalem), Monika Zwerger(University of Zurich), Tal Levin(Hebrew University of Jerusalem), Ohad Medalia(Ben-Gurion University of the Negev), Yosef Gruenbaum(Hebrew University of Jerusalem)
Journal of Cell Science
March 31, 2016
Cited by 35Open Access
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Abstract

There are roughly 14 distinct heritable autosomal dominant diseases associated with mutations in lamins A/C, including Emery-Dreifuss muscular dystrophy (EDMD). The mechanical model proposes that the lamin mutations change the mechanical properties of muscle nuclei, leading to cell death and tissue deterioration. Here, we developed an experimental protocol that analyzes the effect of disease-linked lamin mutations on the response of nuclei to mechanical strain in living Caenorhabditis elegans We found that the EDMD mutation L535P disrupts the nuclear mechanical response specifically in muscle nuclei. Inhibiting lamin prenylation rescued the mechanical response of the EDMD nuclei, reversed the muscle phenotypes and led to normal motility. The LINC complex and emerin were also required to regulate the mechanical response of C. elegans nuclei. This study provides evidence to support the mechanical model and offers a potential future therapeutic approach towards curing EDMD.


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