Anti-Frataxin抗体[18A5DB1] (ab110328)

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ab110328 被引用在 19 文献中.

  • Distante S  et al. Blood removal therapy in hereditary hemochromatosis induces a stress response resulting in improved genome integrity. Transfusion 56:1435-41 (2016). PubMed: 27045387
  • Chapdelaine P  et al. Development of an AAV9 coding for a 3XFLAG-TALEfrat#8-VP64 able to increase in vivo the human frataxin in YG8R mice. Gene Ther 23:606-14 (2016). WB ; Human . PubMed: 27082765
  • Li L  et al. Activating frataxin expression by repeat-targeted nucleic acids. Nat Commun 7:10606 (2016). WB ; Human . PubMed: 26842135
  • Nabhan JF  et al. Intrathecal delivery of frataxin mRNA encapsulated in lipid nanoparticles to dorsal root ganglia as a potential therapeutic for Friedreich's ataxia. Sci Rep 6:20019 (2016). IHC . PubMed: 26883577
  • Palandri A  et al. Frataxin inactivation leads to steroid deficiency in flies and human ovarian cells. Hum Mol Genet 24:2615-26 (2015). WB . PubMed: 25628335
  • Koeppen AH  et al. The pathogenesis of cardiomyopathy in Friedreich ataxia. PLoS One 10:e0116396 (2015). Human . PubMed: 25738292
  • Lazaropoulos M  et al. Frataxin levels in peripheral tissue in Friedreich ataxia. Ann Clin Transl Neurol 2:831-42 (2015). ICC/IF ; Human . PubMed: 26339677
  • Nabhan JF  et al. Perturbation of cellular proteostasis networks identifies pathways that modulate precursor and intermediate but not mature levels of frataxin. Sci Rep 5:18251 (2015). IP . PubMed: 26671574
  • Mahishi LH  et al. miR-886-3p levels are elevated in Friedreich ataxia. J Neurosci 32:9369-73 (2012). WB . PubMed: 22764244
  • Selak MA  et al. Blood cells from Friedreich ataxia patients harbor frataxin deficiency without a loss of mitochondrial function. Mitochondrion 11:342-50 (2011). PubMed: 21147271
  • Koeppen AH  et al. The neuropathology of late-onset Friedreich's ataxia. Cerebellum 10:96-103 (2011). PubMed: 21128039
  • Gakh O  et al. Normal and Friedreich ataxia cells express different isoforms of frataxin with complementary roles in iron-sulfur cluster assembly. J Biol Chem 285:38486-501 (2010). PubMed: 20889968
  • Rai M  et al. Two new pimelic diphenylamide HDAC inhibitors induce sustained frataxin upregulation in cells from Friedreich's ataxia patients and in a mouse model. PLoS One 5:e8825 (2010). PubMed: 20098685
  • Nadanaciva S  et al. Lateral-flow immunoassay for detecting drug-induced inhibition of mitochondrial DNA replication and mtDNA-encoded protein synthesis. J Immunol Methods 343:1-12 (2009). PubMed: 19152798
  • Chou CJ  et al. Pimelic diphenylamide 106 is a slow, tight-binding inhibitor of class I histone deacetylases. J Biol Chem 283:35402-9 (2008). PubMed: 18953021
  • Schmucker S  et al. The in vivo mitochondrial two-step maturation of human frataxin. Hum Mol Genet 17:3521-31 (2008). PubMed: 18725397
  • Long S  et al. Mitochondrial localization of human frataxin is necessary but processing is not for rescuing frataxin deficiency in Trypanosoma brucei. Proc Natl Acad Sci U S A 105:13468-73 (2008). PubMed: 18768799
  • Willis JH  et al. Lateral-flow immunoassay for the frataxin protein in Friedreich's ataxia patients and carriers. Mol Genet Metab 94:491-7 (2008). PubMed: 18485778
  • Li K  et al. Iron-dependent regulation of frataxin expression: implications for treatment of Friedreich ataxia. Hum Mol Genet 17:2265-73 (2008). PubMed: 18424449