Disruption of tmc1/2a/2b Genes in Zebrafish Reveals Subunit Requirements in Subtypes of Inner Ear Hair Cells

被引:18
|
作者
Smith, Eliot T. [1 ]
Pacentine, Itallia [2 ]
Shipman, Anna [1 ]
Hill, Matthew [2 ]
Nicolson, Teresa [1 ]
机构
[1] Stanford Univ, Stanford Sch Med, Dept Otolaryngol Head & Neck Surg, Stanford, CA 94305 USA
[2] Oregon Hlth & Sci Univ, Oregon Hearing Res Ctr, Portland, OR 97239 USA
关键词
auditory/vestibular system; hair cells; inner ear; mechanoelectrical transduction; mechanosensation; TMC proteins; MECHANOTRANSDUCTION MACHINERY; WEB TOOL; TMC1; TRANSMEMBRANE; CHANNEL; TRANSDUCTION; HEARING; PROTEIN; COMPONENT; CHOPCHOP;
D O I
10.1523/JNEUROSCI.0163-20.2020
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Detection of sound and head movement requires mechanoelectrical transduction (MET) channels at tips of hair-cell stereocilia. In vertebrates, the transmembrane channel-like (TMC) proteins TMC1 and TMC2 fulfill critical roles in MET, and substantial evidence implicates these TMCs as subunits of the MET channel. To identify developmental and functional roles of this Tmc subfamily in the zebrafish inner ear, we tested the effects of truncating mutations in tmc1, tmc2a, and tmc2b on in vivo mechanosensation at the onset of hearing and balance, before gender differentiation. We find that tmc1/2a/2b triple-mutant larvae cannot detect sound or orient with respect to gravity. They lack acoustic-evoked behavioral responses, vestibular-induced eye movements, and hair-cell activity as assessed with FM dye labeling and microphonic potentials. Despite complete loss of hair-cell function, tmc triple-mutant larvae retain normal gross morphology of hair bundles and proper trafficking of known MET components Protocadherin 15a (Pcdh15a), Lipoma HMGIC fusion partner-like 5 (Lhfp15), and Transmembrane inner ear protein (Tmie). Transgenic, hair cell-specific expression of Tmc2b-mEGFP rescues the behavioral and physiological deficits in tmc triple mutants. Results from tmc single and double mutants evince a principle role for Tmc2a and Tmc2b in hearing and balance, respectively, whereas Tmc1 has lower overall impact. Our experiments reveal that, in developing cristae, hair cells stratify into an upper, Tmc2a-dependent layer of teardrop-shaped cells and a lower, Tmc1/2b-dependent tier of gourd-shaped cells. Collectively, our genetic evidence indicates that auditory/vestibular end organs and subsets of hair cells therein rely on distinct combinations of Tmc1/2a/2b.
引用
收藏
页码:4457 / 4468
页数:12
相关论文
共 8 条
  • [1] Subunits of the mechano-electrical transduction channel, Tmc1/2b, require Tmie to localize in zebrafish sensory hair cells
    Pacentine, Itallia V.
    Nicolson, Teresa
    PLOS GENETICS, 2019, 15 (02):
  • [2] Transgenic Tmc2 expression preserves inner ear hair cells and vestibular function in mice lacking Tmc1
    Asai, Yukako
    Pan, Bifeng
    Nist-Lund, Carl
    Galvin, Alice
    Lukashkin, Andrei N.
    Lukashkina, Victoria A.
    Chen, Tianwen
    Zhou, Wu
    Zhu, Hong
    Russell, Ian J.
    Holt, Jeffrey R.
    Geleoc, Gwenaelle S. G.
    SCIENTIFIC REPORTS, 2018, 8
  • [3] TMC1 Forms the Pore of Mechanosensory Transduction Channels in Vertebrate Inner Ear Hair Cells
    Pan, Bifeng
    Akyuz, Nurunisa
    Liu, Xiao-Ping
    Asai, Yukako
    Nist-Lund, Carl
    Kurima, Kiyoto
    Derfler, Bruce H.
    Gyorgy, Bence
    Limapichat, Walrati
    Walujkar, Sanket
    Wimalasena, Lahiru N.
    Sotomayor, Marcos
    Corey, David P.
    Holt, Jeffrey R.
    NEURON, 2018, 99 (04) : 736 - +
  • [4] Mammalian TMC1 or 2 are necessary for scramblase activity in auditory hair cells
    Peineau, Thibault
    Marcovich, Irina
    Rodriguez, Cristobal von Muhlenbrock
    O'Malley, Sydney
    Cui, Runjia
    Ballesteros, Angela
    Holt, Jeffrey R.
    HEARING RESEARCH, 2025, 460
  • [5] Tmc1 Point Mutation Affects Ca2+ Sensitivity and Block by Dihydrostreptomycin of the Mechanoelectrical Transducer Current of Mouse Outer Hair Cells
    Corns, Laura F.
    Johnson, Stuart L.
    Kros, Corne J.
    Marcotti, Walter
    JOURNAL OF NEUROSCIENCE, 2016, 36 (02) : 336 - 349
  • [6] Spatial and temporal inhibition of FGFR2b ligands reveals continuous requirements and novel targets in mouse inner ear morphogenesis
    Urness, Lisa D.
    Wang, Xiaofen
    Doan, Huy
    Shumway, Nathan
    Noyes, C. Albert
    Gutierrez-Magana, Edgar
    Lu, Ree
    Mansour, Suzanne L.
    DEVELOPMENT, 2018, 145 (24):
  • [7] Comparative transcriptome analysis of auditory OC-1 cells and zebrafish inner ear tissues in the absence of human OSBPL2 orthologues
    Shi, Hairong
    Wang, Hongshun
    Yao, Jun
    Lin, Changsong
    Wei, Qinjun
    Lu, Yajie
    Cao, Xin
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2020, 521 (01) : 42 - 49
  • [8] Efficient induction of inner ear hair cell-like cells from mouse ES cells using combination of Math1 transfection and conditioned medium from ST2 stromal cells
    Ouji, Yukiteru
    Sakagami, Masaharu
    Omori, Hiroko
    Higashiyama, Shinji
    Kawai, Norikazu
    Kitahara, Tadashi
    Wanaka, Akio
    Yoshikawa, Masahide
    STEM CELL RESEARCH, 2017, 23 : 50 - 56