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Updated: Dec 7, 2025

Aip1p Dynamics Are Altered by the R256H Mutation in Actin
Published on: July 30, 2014
Asymmetric muscle weakness due to ACTA1 mosaic mutations
Xavière Lornage1, Susana Quijano-Roy1, Helge Amthor1
1From the Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC) (X.L., J.L., J.B.); Inserm U1258 (X.L., J.L., J.B.); CNRS UMR7104 (X.L., J.L., J.B.); Strasbourg University (X.L., J.L., J.B.), Illkirch; CHU Raymond Poincaré (S.Q.-R., H.A., R.-Y.C.), APHP, Université de Versailles Saint Quentin en Yvelines, Garches; Laboratoire de Biochimie Génétique et Moléculaire (N.M.), IBP, CHU Grenoble Alpes; National Genotyping Center (CNG) (J.-F.D.), Genomics Institute, Office of Atomic Energy and Alternative Energies, Evry; Neuromuscular Morphology Unit (N.B.R.), Myology Institute, GHU Pitié-Salpêtrière; and Centre de Référence de Pathologie Neuromusculaire Paris-Est (N.B.R.), Institut de Myologie, GHU Pitié-Salpêtrière, Assistance Publique-Hôpitaux de Paris, France.
Objective:
To characterize 2 unrelated patients with either asymmetric or unilateral muscle weakness at the clinical, genetic, histologic, and ultrastructural level.
Methods:
The patients underwent thorough clinical examination, whole-body MRI, and exome sequencing. Muscle morphology was assessed by histology and electron microscopy.
Results:
Both patients presented with early-onset hypotonia, delayed motor milestones, scoliosis, and reduced pulmonary function. Patient P1 manifested unilateral muscle weakness exclusively affecting the left side of the body; the asymmetry was less pronounced in patient P2. Muscle biopsies from both patients showed nemaline rods as the main histopathologic hallmark, and MRI revealed major fatty infiltrations in selective head, proximal, and distal muscles, correlating with the degree of muscle weakness asymmetry. Exome sequencing on blood DNA from both patients identified de novo ACTA1 missense mutations in a small number of reads, suggesting mutation mosaicism. Subsequent Sanger sequencing confirmed the presence of the mutations on muscle DNA, while they were barely detectable on blood DNA.
Conclusions:
De novo mutations can occur anytime during embryonic development and may result in a mosaic pattern of affected cells and tissues and lead to the development of an asymmetric clinical picture. The present study points out that mosaic mutations might not be easily detectable on leukocyte DNA and thereby escape routine genetic analysis, and possibly account for a significant number of molecularly undiagnosed patients.
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