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N -acetylneuraminate pyruvate lyase controls sialylation of muscle glycoproteins essential for muscle regeneration and function.

Authors :
Da Silva A
Dort J
Orfi Z
Pan X
Huang S
Kho I
Heckel E
Muscarnera G
van Vliet PP
Sturiale L
Messina A
Romeo DA
van Karnebeek CDM
Wen XY
Hinek A
Molina T
Andelfinger G
Ellezam B
Yamanaka Y
Olivos HJ
Morales CR
Joyal JS
Lefeber DJ
Garozzo D
Dumont NA
Pshezhetsky AV
Source :
Science advances [Sci Adv] 2023 Jun 30; Vol. 9 (26), pp. eade6308. Date of Electronic Publication: 2023 Jun 30.
Publication Year :
2023

Abstract

Deleterious variants in N- acetylneuraminate pyruvate lyase (NPL) cause skeletal myopathy and cardiac edema in humans and zebrafish, but its physiological role remains unknown. We report generation of mouse models of the disease: Npl <superscript>R63C</superscript> , carrying the human p.Arg63Cys variant, and Npl <superscript>del116</superscript> with a 116-bp exonic deletion. In both strains, NPL deficiency causes drastic increase in free sialic acid levels, reduction of skeletal muscle force and endurance, slower healing and smaller size of newly formed myofibers after cardiotoxin-induced muscle injury, increased glycolysis, partially impaired mitochondrial function, and aberrant sialylation of dystroglycan and mitochondrial LRP130 protein. NPL-catalyzed degradation of sialic acid in the muscle increases after fasting and injury and in human patient and mouse models with genetic muscle dystrophy, demonstrating that NPL is essential for muscle function and regeneration and serves as a general marker of muscle damage. Oral administration of N- acetylmannosamine rescues skeletal myopathy, as well as mitochondrial and structural abnormalities in Npl <superscript>R63C</superscript> mice, suggesting a potential treatment for human patients.

Details

Language :
English
ISSN :
2375-2548
Volume :
9
Issue :
26
Database :
MEDLINE
Journal :
Science advances
Publication Type :
Academic Journal
Accession number :
37390204
Full Text :
https://doi.org/10.1126/sciadv.ade6308