Literature DB >> 28925723

Expression patterns of members of the isocitrate dehydrogenase gene family in murine inner ear.

Y-R Kim1,2, K-H Kim1,2, S Lee1,2, S-K Oh3, J-W Park1,2, K-Y Lee4, J-I Baek5, U-K Kim1,2.   

Abstract

Age-related hearing loss (ARHL) is characterized by an age-dependent decline of auditory function characterized by with loss of sensory hair cells, spiral ganglion neurons, and stria vascularis (SV) cells in the cochlea of the inner ear. Aging and age-related diseases result from accumulated oxidative damage caused by reactive oxygen species (ROS) generated by mitochondria. The isocitrate dehydrogenase (IDH) family includes three enzymes in human cells: IDH1, IDH2, and IDH3. Although all three enzymes catalyze the same enzymatic reaction, that is, oxidative decarboxylation of isocitrate to produce α-ketoglutarate, each IDH enzyme has unique features. We identified and characterized IDH expression in the cochlea and vestibule of the murine inner ear. We examined the mRNA expression levels of Idh family members in the cochlea and vestibule using reverse transcription-PCR (RT-PCR) and detected expression of IDH family members in both tissues. We also used immunohistochemistry to localize IDH family members within the cochlea and vestibule of the adult mouse inner ear. IDH1 was detected throughout the cochlea. IDH2 was expressed specifically in the hair cells, spiral ganglion, and stria vascularis. IDH3α was found in the cell bodies of neurons of the spiral ganglion, the stria vascularis, and in types II, IV, and V cells of the spiral ligament in a pattern that resembled the location of the Na+, K+-ATPase ion channel. We postulate that the IDH family participates in transporting K+ ions in the cochlea. In the vestibule, all IDH family members were detected in both hair cells and the vestibular ganglion. We hypothesize that IDH1, IDH2, and IDH3 function to protect proteins in the inner ear from oxidative stress during K+ recycling.

Entities:  

Keywords:  immunohistochemistry; inner ear; isocitrate dehydrogenase; mice; potassium ion recycling; reactive oxygen species

Mesh:

Substances:

Year:  2017        PMID: 28925723     DOI: 10.1080/10520295.2017.1367034

Source DB:  PubMed          Journal:  Biotech Histochem        ISSN: 1052-0295            Impact factor:   1.718


  3 in total

Review 1.  IDH2: A novel biomarker for environmental exposure in blood circulatory system disorders.

Authors:  Ya Qi Gong; Shuang Wei; Yuan Yun Wei; Yong Lin Chen; Jian Cui; Yue Qiu Yu; Xiang Lin; Hong Xia Yan; Hui Qin; Lan Yi
Journal:  Oncol Lett       Date:  2022-06-24       Impact factor: 3.111

2.  Bioinformatic Analysis of the Perilymph Proteome to Generate a Human Protein Atlas.

Authors:  Alina van Dieken; Hinrich Staecker; Heike Schmitt; Jennifer Harre; Andreas Pich; Willi Roßberg; Thomas Lenarz; Martin Durisin; Athanasia Warnecke
Journal:  Front Cell Dev Biol       Date:  2022-04-28

3.  Therapeutic potential of the mitochondria-targeted antioxidant MitoQ in mitochondrial-ROS induced sensorineural hearing loss caused by Idh2 deficiency.

Authors:  Ye-Ri Kim; Jeong-In Baek; Sung Hwan Kim; Min-A Kim; Byeonghyeon Lee; Nari Ryu; Kyung-Hee Kim; Deok-Gyun Choi; Hye-Min Kim; Michael P Murphy; Greg Macpherson; Yeon-Sik Choo; Jinwoong Bok; Kyu-Yup Lee; Jeen-Woo Park; Un-Kyung Kim
Journal:  Redox Biol       Date:  2018-11-20       Impact factor: 11.799

  3 in total

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