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Defective Tmprss3-Associated Hair Cell Degeneration in Inner Ear Organoids.


ABSTRACT: Mutations in the gene encoding the type II transmembrane protease 3 (TMPRSS3) cause human hearing loss, although the underlying mechanisms that result in TMPRSS3-related hearing loss are still unclear. We combined the use of stem cell-derived inner ear organoids with single-cell RNA sequencing to investigate the role of TMPRSS3. Defective Tmprss3 leads to hair cell apoptosis without altering the development of hair cells and the formation of the mechanotransduction apparatus. Prior to degeneration, Tmprss3-KO hair cells demonstrate reduced numbers of BK channels and lower expressions of genes encoding calcium ion-binding proteins, suggesting a disruption in intracellular homeostasis. A proteolytically active TMPRSS3 was detected on cell membranes in addition to ER of cells in inner ear organoids. Our in vitro model recapitulated salient features of genetically associated inner ear abnormalities and will serve as a powerful tool for studying inner ear disorders.

SUBMITTER: Tang PC 

PROVIDER: S-EPMC6626982 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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Defective Tmprss3-Associated Hair Cell Degeneration in Inner Ear Organoids.

Tang Pei-Ciao PC   Alex Alpha L AL   Nie Jing J   Lee Jiyoon J   Roth Adam A AA   Booth Kevin T KT   Koehler Karl R KR   Hashino Eri E   Nelson Rick F RF  

Stem cell reports 20190613 1


Mutations in the gene encoding the type II transmembrane protease 3 (TMPRSS3) cause human hearing loss, although the underlying mechanisms that result in TMPRSS3-related hearing loss are still unclear. We combined the use of stem cell-derived inner ear organoids with single-cell RNA sequencing to investigate the role of TMPRSS3. Defective Tmprss3 leads to hair cell apoptosis without altering the development of hair cells and the formation of the mechanotransduction apparatus. Prior to degenerati  ...[more]

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