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Expression and processing of mature human frataxin after gene therapy in mice.
Rojsajjakul, Teerapat; Selvan, Nithya; De, Bishnu; Rosenberg, Jonathan B; Kaminsky, Stephen M; Sondhi, Dolan; Janki, Peter; Crystal, Ronald G; Mesaros, Clementina; Khanna, Richie; Blair, Ian A.
Afiliação
  • Rojsajjakul T; University of Pennsylvania Philadelphia.
  • Selvan N; LEXEO Therapeutics, Inc.
  • De B; Weill Cornell College of Medicine.
  • Rosenberg JB; Weill Cornell College of Medicine.
  • Kaminsky SM; Weill Cornell College of Medicine.
  • Sondhi D; Weill Cornell College of Medicine.
  • Janki P; LEXEO Therapeutics, Inc.
  • Crystal RG; Weill Cornell College of Medicine.
  • Mesaros C; University of Pennsylvania Philadelphia.
  • Khanna R; LEXEO Therapeutics, Inc.
  • Blair IA; University of Pennsylvania Philadelphia.
Res Sq ; 2023 Dec 28.
Article em En | MEDLINE | ID: mdl-38234818
ABSTRACT
Friedreich's ataxia is a degenerative and progressive multisystem disorder caused by mutations in the highly conserved frataxin (FXN) gene that results in FXN protein deficiency and mitochondrial dysfunction. While gene therapy approaches are promising, consistent induction of therapeutic FXN protein expression that is sub-toxic has proven challenging, and numerous therapeutic approaches are being tested in animal models. FXN (hFXN in humans, mFXN in mice) is proteolytically modified in mitochondria to produce mature FXN. However, unlike endogenous hFXN, endogenous mFXN is further processed into N-terminally truncated, extra-mitochondrial mFXN forms of unknown function. This study assessed mature exogenous hFXN expression levels in the heart and liver of C57Bl/6 mice 7-10 months after intravenous administration of a recombinant adeno-associated virus encoding hFXN (AAVrh.10hFXN) and examined the potential for hFXN truncation in mice. AAVrh.10hFXN induced dose-dependent expression of hFXN in the heart and liver. Interestingly, hFXN was processed into truncated forms, but found at lower levels than mature hFXN. However, the truncations were at different positions than mFXN. AAVrh.10hFXN induced mature hFXN expression in mouse heart and liver at levels that approximated endogenous mFXN levels. These results demonstrate that AAVrh.10hFXN may induce expression of therapeutic levels of mature hFXN in mice.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Res Sq Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Res Sq Ano de publicação: 2023 Tipo de documento: Article
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