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zadetkov: 34
1.
  • Oxidative stress and pathol... Oxidative stress and pathology in muscular dystrophies: focus on protein thiol oxidation and dysferlinopathies
    Terrill, Jessica R.; Radley‐Crabb, Hannah G.; Iwasaki, Tomohito ... The FEBS journal, September 2013, Letnik: 280, Številka: 17
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    The muscular dystrophies comprise more than 30 clinical disorders that are characterized by progressive skeletal muscle wasting and degeneration. Although the genetic basis for many of these ...
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2.
  • Calpains, cleaved mini-dysf... Calpains, cleaved mini-dysferlinC72, and L-type channels underpin calcium-dependent muscle membrane repair
    Lek, Angela; Evesson, Frances J; Lemckert, Frances A ... The Journal of neuroscience, 03/2013, Letnik: 33, Številka: 12
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    Dysferlin is proposed as a key mediator of calcium-dependent muscle membrane repair, although its precise role has remained elusive. Dysferlin interacts with a new membrane repair protein, mitsugumin ...
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3.
  • Lack of MG53 in human heart... Lack of MG53 in human heart precludes utility as a biomarker of myocardial injury or endogenous cardioprotective factor
    Lemckert, Frances A; Bournazos, Adam; Eckert, Daniel M ... Cardiovascular research, 05/2016, Letnik: 110, Številka: 2
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    Mitsugumin-53 (MG53/TRIM72) is an E3-ubiquitin ligase that rapidly accumulates at sites of membrane injury and plays an important role in membrane repair of skeletal and cardiac muscle. MG53 has been ...
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4.
  • Loss of ACTN3 gene function... Loss of ACTN3 gene function alters mouse muscle metabolism and shows evidence of positive selection in humans
    Hook, Jeff W; Seto, Jane T; Gunning, Peter W ... Nature genetics, 10/2007, Letnik: 39, Številka: 10
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    More than a billion humans worldwide are predicted to be completely deficient in the fast skeletal muscle fiber protein α-actinin-3 owing to homozygosity for a premature stop codon polymorphism, ...
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5.
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6.
  • Minimal expression of dysfe... Minimal expression of dysferlin prevents development of dysferlinopathy in dysferlin exon 40a knockout mice
    Yasa, Joe; Reed, Claudia E; Bournazos, Adam M ... Acta neuropathologica communications, 01/2023, Letnik: 11, Številka: 1
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    Dysferlin is a Ca -activated lipid binding protein implicated in muscle membrane repair. Recessive variants in DYSF result in dysferlinopathy, a progressive muscular dystrophy. We showed previously ...
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7.
  • Dysferlin, Annexin A1, and ... Dysferlin, Annexin A1, and Mitsugumin 53 Are Upregulated in Muscular Dystrophy and Localize to Longitudinal Tubules of the T-System With Stretch
    Waddell, Leigh B; Lemckert, Frances A; Zheng, Xi F ... Journal of neuropathology and experimental neurology, 2011-April, Letnik: 70, Številka: 4
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    Mutations in dysferlin cause an inherited muscular dystrophy because of defective membrane repair. Three interacting partners of dysferlin are also implicated in membrane resealingcaveolin-3 (in limb ...
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8.
  • The Murine Stanniocalcin 2 ... The Murine Stanniocalcin 2 Gene Is a Negative Regulator of Postnatal Growth
    Chang, Andy C.-M; Hook, Jeff; Lemckert, Frances A ... Endocrinology (Philadelphia), 05/2008, Letnik: 149, Številka: 5
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    Stanniocalcin (STC), a secreted glycoprotein, was first studied in fish as a classical hormone with a role in regulating serum calcium levels. There are two closely related proteins in mammals, STC1 ...
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9.
  • Enzymatic cleavage of myofe... Enzymatic cleavage of myoferlin releases a dual C2-domain module linked to ERK signalling
    Piper, Ann-Katrin; Ross, Samuel E.; Redpath, Gregory M. ... Cellular signalling, 05/2017, Letnik: 33
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    Myoferlin and dysferlin are closely related members of the ferlin family of Ca2+-regulated vesicle fusion proteins. Dysferlin is proposed to play a role in Ca2+-triggered vesicle fusion during ...
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10.
  • Hypertrophy and dietary tyr... Hypertrophy and dietary tyrosine ameliorate the phenotypes of a mouse model of severe nemaline myopathy
    Nguyen, Mai-Anh T; Joya, Josephine E; Kee, Anthony J ... Brain (London, England : 1878), 12/2011, Letnik: 134, Številka: 12
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    Nemaline myopathy, the most common congenital myopathy, is caused by mutations in genes encoding thin filament and thin filament-associated proteins in skeletal muscles. Severely affected patients ...
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zadetkov: 34

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