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Proteomic identification of FHL1 as the protein mutated in human reducing body myopathy.
J Clin Invest. 2008 Mar;118(3):904-12. doi: 10.1172/JCI34450.
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Clinical, histological and genetic characterization of reducing body myopathy caused by mutations in FHL1.
Brain. 2009 Feb;132(Pt 2):452-64. doi: 10.1093/brain/awn325. Epub 2009 Jan 29.
4
Novel FHL1 mutation in a family with reducing body myopathy.
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Consequences of mutations within the C terminus of the FHL1 gene.
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Phenotypic heterogeneity in British patients with a founder mutation in the FHL1 gene.
Eur J Hum Genet. 2011 Oct;19(10):1038-44. doi: 10.1038/ejhg.2011.84. Epub 2011 Jun 1.
7
Reducing body myopathy associated with the LIM2 p.(His123Arg) FHL1 variant.
Clin Neurol Neurosurg. 2021 Aug;207:106795. doi: 10.1016/j.clineuro.2021.106795. Epub 2021 Jul 7.
9
FHL1 mutants that cause clinically distinct human myopathies form protein aggregates and impair myoblast differentiation.
J Cell Sci. 2014 May 15;127(Pt 10):2269-81. doi: 10.1242/jcs.140905. Epub 2014 Mar 14.
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Proteomic characterization of aggregate components in an intrafamilial variable FHL1-associated myopathy.
Neuromuscul Disord. 2013 May;23(5):418-26. doi: 10.1016/j.nmd.2013.02.006. Epub 2013 Mar 13.

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Novel insights into post-myocardial infarction cardiac remodeling through algorithmic detection of cell-type composition shifts.
PLoS Genet. 2025 Jul 24;21(7):e1011807. doi: 10.1371/journal.pgen.1011807. eCollection 2025 Jul.
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Myofibrillar myopathy: towards a mechanism-based definition as a Z-disk-opathy.
Curr Opin Neurol. 2025 Jun 10. doi: 10.1097/WCO.0000000000001397.
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Review: Utility of mass spectrometry in rare disease research and diagnosis.
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The FHL1 myopathy spectrum revisited: a literature review and report of two new patients.
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Dominantly inherited muscle disorders: understanding their complexity and exploring therapeutic approaches.
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A comprehensive study of skeletal muscle imaging in FHL1-related reducing body myopathy.
Ann Clin Transl Neurol. 2023 Aug;10(8):1442-1455. doi: 10.1002/acn3.51834. Epub 2023 Jul 22.
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Understanding the molecular basis of cardiomyopathy.
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[Genomics and proteomics in the research of neuromuscular diseases].
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The transcriptional repression activity of KyoT2 on the Notch/RBP-J pathway is regulated by PIAS1-catalyzed SUMOylation.
J Mol Biol. 2007 Jun 29;370(1):27-38. doi: 10.1016/j.jmb.2007.04.010. Epub 2007 Apr 12.
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Unfolded protein response and aggresome formation in hereditary reducing-body myopathy.
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Pathological consequences of VCP mutations on human striated muscle.
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Familial reducing body myopathy.
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Four and a half LIM protein 1 binds myosin-binding protein C and regulates myosin filament formation and sarcomere assembly.
J Biol Chem. 2006 Mar 17;281(11):7666-83. doi: 10.1074/jbc.M512552200. Epub 2006 Jan 9.
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The multifunctional roles of the four-and-a-half-LIM only protein FHL2.
Cell Mol Life Sci. 2006 Feb;63(3):268-84. doi: 10.1007/s00018-005-5438-z.
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Regulation of NKT cell development by SAP, the protein defective in XLP.
Nat Med. 2005 Mar;11(3):340-5. doi: 10.1038/nm1189. Epub 2005 Feb 13.
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The PcG protein HPC2 inhibits RBP-J-mediated transcription by interacting with LIM protein KyoT2.
FEBS Lett. 2005 Feb 14;579(5):1220-6. doi: 10.1016/j.febslet.2005.01.022. Epub 2005 Jan 26.
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Mutations in ZASP define a novel form of muscular dystrophy in humans.
Ann Neurol. 2005 Feb;57(2):269-76. doi: 10.1002/ana.20376.
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The LIM domain: from the cytoskeleton to the nucleus.
Nat Rev Mol Cell Biol. 2004 Nov;5(11):920-31. doi: 10.1038/nrm1499.

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