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G6pd deficiency does not affect the cytosolic glutathione or thioredoxin antioxidant defense in mouse cochlea

  • Karessa White
  • , Mi Jung Kim
  • , Dalian Ding
  • , Chul Han
  • , Hyo Jin Park
  • , Zaimary Meneses
  • , Masaru Tanokura
  • , Paul Linser
  • , Richard Salvi
  • , Shinichi Someya
  • University of Florida
  • The University of Tokyo

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

Glucose-6-phosphate dehydrogenase (G6PD) is the first and rate-limiting enzyme of the pentose phosphate pathway; it catalyzes the conversion of glucose-6-phosphate to 6-phosphogluconate and NADP+ to NADPH and is thought to be the principal source of NADPH for the cytosolic glutathione and thioredoxin antioxidant defense systems. We investigated the roles of G6PD in the cytosolic antioxidant defense in the cochlea of G6pd hypomorphic mice that were backcrossed onto normal-hearing CBA/CaJ mice. Young G6pd-deficient mice displayed a significant decrease in cytosolic G6PD protein levels and activities in the inner ears. However, G6pd deficiency did not affect the cytosolic NADPH redox state, or glutathione or thioredoxin antioxidant defense in the inner ears. No histological abnormalities or oxidative damage was observed in the cochlea of G6pd hemizygous males or homozygous females. Furthermore, G6pd deficiency did not affect auditory brainstem response hearing thresholds, wave I amplitudes or wave I latencies in young males or females. In contrast, G6pd deficiency resulted in increased activities and protein levels of cytosolic isocitrate dehydrogenase 1, an enzyme that catalyzes the conversion of isocitrateto α-ketoglutarate and NADP+ to NADPH, in the inner ear. In a mouse inner ear cell line, knock down of Idh1, but not G6pd, decreased cell growth rates, cytosolic NADPH levels, and thioredoxin reductase activities. Therefore, under normal physiological conditions, G6pd deficiency does not affect the cytosolic glutathione or thioredoxin antioxidant defense in mouse cochlea. Under G6pd deficiency conditions, isocitrate dehydrogenase 1 likely functions as the principal source of NADPH for cytosolic antioxidant defense in the cochlea.

Original languageEnglish
Pages (from-to)5770-5781
Number of pages12
JournalJournal of Neuroscience
Volume37
Issue number23
DOIs
StatePublished - Jun 7 2017

Keywords

  • Antioxidant defense
  • Cochlea
  • Glutathione
  • NADPH
  • Redox
  • Thioredoxin

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