Literature DB >> 25250574

Leiomodin-3 dysfunction results in thin filament disorganization and nemaline myopathy.

Michaela Yuen, Sarah A Sandaradura, James J Dowling, Alla S Kostyukova, Natalia Moroz, Kate G Quinlan, Vilma-Lotta Lehtokari, Gianina Ravenscroft, Emily J Todd, Ozge Ceyhan-Birsoy, David S Gokhin, Jérome Maluenda, Monkol Lek, Flora Nolent, Christopher T Pappas, Stefanie M Novak, Adele D'Amico, Edoardo Malfatti, Brett P Thomas, Stacey B Gabriel, Namrata Gupta, Mark J Daly, Biljana Ilkovski, Peter J Houweling, Ann E Davidson, Lindsay C Swanson, Catherine A Brownstein, Vandana A Gupta, Livija Medne, Patrick Shannon, Nicole Martin, David P Bick, Anders Flisberg, Eva Holmberg, Peter Van den Bergh, Pablo Lapunzina, Leigh B Waddell, Darcée D Sloboda, Enrico Bertini, David Chitayat, William R Telfer, Annie Laquerrière, Carol C Gregorio, Coen A C Ottenheijm, Carsten G Bönnemann, Katarina Pelin, Alan H Beggs, Yukiko K Hayashi, Norma B Romero, Nigel G Laing, Ichizo Nishino, Carina Wallgren-Pettersson, Judith Melki, Velia M Fowler, Daniel G MacArthur, Kathryn N North, Nigel F Clarke.   

Abstract

Nemaline myopathy (NM) is a genetic muscle disorder characterized by muscle dysfunction and electron-dense protein accumulations (nemaline bodies) in myofibers. Pathogenic mutations have been described in 9 genes to date, but the genetic basis remains unknown in many cases. Here, using an approach that combined whole-exome sequencing (WES) and Sanger sequencing, we identified homozygous or compound heterozygous variants in LMOD3 in 21 patients from 14 families with severe, usually lethal, NM. LMOD3 encodes leiomodin-3 (LMOD3), a 65-kDa protein expressed in skeletal and cardiac muscle. LMOD3 was expressed from early stages of muscle differentiation; localized to actin thin filaments, with enrichment near the pointed ends; and had strong actin filament-nucleating activity. Loss of LMOD3 in patient muscle resulted in shortening and disorganization of thin filaments. Knockdown of lmod3 in zebrafish replicated NM-associated functional and pathological phenotypes. Together, these findings indicate that mutations in the gene encoding LMOD3 underlie congenital myopathy and demonstrate that LMOD3 is essential for the organization of sarcomeric thin filaments in skeletal muscle.

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Year:  2014        PMID: 25250574      PMCID: PMC4347224          DOI: 10.1172/JCI75199

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  37 in total

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  70 in total

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2.  Treatment with ActRIIB-mFc Produces Myofiber Growth and Improves Lifespan in the Acta1 H40Y Murine Model of Nemaline Myopathy.

Authors:  Jennifer Tinklenberg; Hui Meng; Lin Yang; Fujun Liu; Raymond G Hoffmann; Mahua Dasgupta; Kenneth P Allen; Alan H Beggs; Edna C Hardeman; R Scott Pearsall; Robert H Fitts; Michael W Lawlor
Journal:  Am J Pathol       Date:  2016-04-18       Impact factor: 4.307

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7.  Myostatin inhibition using mRK35 produces skeletal muscle growth and tubular aggregate formation in wild type and TgACTA1D286G nemaline myopathy mice.

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Journal:  Hum Mol Genet       Date:  2018-02-15       Impact factor: 6.150

8.  Characterizing interaction forces between actin and proteins of the tropomodulin family reveals the presence of the N-terminal actin-binding site in leiomodin.

Authors:  Baran Arslan; Mert Colpan; Kevin T Gray; Nehal I Abu-Lail; Alla S Kostyukova
Journal:  Arch Biochem Biophys       Date:  2017-12-06       Impact factor: 4.013

9.  Neonatal fractures as a presenting feature of LMOD3-associated congenital myopathy.

Authors:  Megan Abbott; Mahim Jain; Rachel Pferdehirt; Yuqing Chen; Alyssa Tran; Mehmet B Duz; Mehmet Seven; Richard A Gibbs; Donna Muzny; Brendan Lee; Ronit Marom; Lindsay C Burrage
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10.  Biochemical Activities of the Wiskott-Aldrich Syndrome Homology Region 2 Domains of Sarcomere Length Short (SALS) Protein.

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