4.7 Article

Mitochondrial and Redox Modifications in Huntington Disease Induced Pluripotent Stem Cells Rescued by CRISPR/Cas9 CAGs Targeting

期刊

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fcell.2020.576592

关键词

induced pluripotent stem cells; huntington disease; mitochondrial dysfunction; neural stem cells; reactive oxygen species; transcriptional deregulation

资金

  1. 'FLAD Life Science 2020' prize - 'Fundacao Luso-Americana para o Desenvolvimento' (FLAD), Portugal
  2. European Regional Development Fund (ERDF), through the Centro 2020 Regional Operational Programme [CENTRO-010145-FEDER-000012-HealthyAging2020]
  3. European Regional Development Fund (ERDF), through COMPETE 2020-Operational Programme for Competitiveness and Internationalization
  4. Portuguese national funds via FCT-Fundacao para a Ciencia e a Tecnologia [POCI-01-0145-FEDER-007440, POCI-010145-FEDER-029621, POCI-01-0145-FEDER-016428, AICTPAC/0010/2015, POCI-01-0145-FEDER-30943, PTDC/MEC-PSQ/30943/2017, PTDC/MED-NEU/27946/2017]
  5. National Mass Spectrometry Network (RNEM) [POCI-01-0145-FEDER-402-022125, ROTEIRO/0028/2013, UID/NEU/04539/2019, UIDB/04539/2020]
  6. Fundação para a Ciência e a Tecnologia [PTDC/MEC-PSQ/30943/2017, PTDC/MED-NEU/27946/2017] Funding Source: FCT

向作者/读者索取更多资源

Mitochondrial deregulation has gained increasing support as a pathological mechanism in Huntington's disease (HD), a genetic-based neurodegenerative disorder caused by CAG expansion in theHTTgene. In this study, we thoroughly investigated mitochondrial-based mechanisms in HD patient-derived iPSC (HD-iPSC) and differentiated neural stem cells (NSC)versuscontrol cells, as well as in cells subjected to CRISPR/Cas9-CAG repeat deletion. We analyzed mitochondrial morphology, function and biogenesis, linked to exosomal release of mitochondrial components, glycolytic flux, ATP generation and cellular redox status. Mitochondria in HD cells exhibited round shape and fragmented morphology. Functionally, HD-iPSC and HD-NSC displayed lower mitochondrial respiration, exosomal release of cytochrome c, decreased ATP/ADP, reduced PGC-1 alpha and complex III subunit expression and activity, and were highly dependent on glycolysis, supported by pyruvate dehydrogenase (PDH) inactivation. HD-iPSC and HD-NSC mitochondria showed ATP synthase reversal and increased calcium retention. Enhanced mitochondrial reactive oxygen species (ROS) were also observed in HD-iPSC and HD-NSC, along with decreased UCP2 mRNA levels. CRISPR/Cas9-CAG repeat deletion in HD-iPSC and derived HD-NSC ameliorated mitochondrial phenotypes. Data attests for intricate metabolic and mitochondrial dysfunction linked to transcriptional deregulation as early events in HD pathogenesis, which are alleviated following CAG deletion.

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