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TRIOBP-5 sculpts stereocilia rootlets and stiffens supporting cells enabling hearing
Tatsuya Katsuno, Inna A. Belyantseva, Alexander X. Cartagena-Rivera, Keisuke Ohta, Shawn M. Crump, Ronald S. Petralia, Kazuya Ono, Risa Tona, Ayesha Imtiaz, Atteeq Rehman, Hiroshi Kiyonari, Mari Kaneko, Ya-Xian Wang, Takaya Abe, Makoto Ikeya, Cristina Fenollar-Ferrer, Gavin P. Riordan, Elisabeth A. Wilson, Tracy S. Fitzgerald, Kohei Segawa, Koichi Omori, Juichi Ito, Gregory I. Frolenkov, Thomas B. Friedman, Shin-ichiro Kitajiri
Tatsuya Katsuno, Inna A. Belyantseva, Alexander X. Cartagena-Rivera, Keisuke Ohta, Shawn M. Crump, Ronald S. Petralia, Kazuya Ono, Risa Tona, Ayesha Imtiaz, Atteeq Rehman, Hiroshi Kiyonari, Mari Kaneko, Ya-Xian Wang, Takaya Abe, Makoto Ikeya, Cristina Fenollar-Ferrer, Gavin P. Riordan, Elisabeth A. Wilson, Tracy S. Fitzgerald, Kohei Segawa, Koichi Omori, Juichi Ito, Gregory I. Frolenkov, Thomas B. Friedman, Shin-ichiro Kitajiri
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Research Article Neuroscience

TRIOBP-5 sculpts stereocilia rootlets and stiffens supporting cells enabling hearing

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Abstract

TRIOBP remodels the cytoskeleton by forming unusually dense F-actin bundles and is implicated in human cancer, schizophrenia, and deafness. Mutations ablating human and mouse TRIOBP-4 and TRIOBP-5 isoforms are associated with profound deafness, as inner ear mechanosensory hair cells degenerate after stereocilia rootlets fail to develop. However, the mechanisms regulating formation of stereocilia rootlets by each TRIOBP isoform remain unknown. Using 3 new Triobp mouse models, we report that TRIOBP-5 is essential for thickening bundles of F-actin in rootlets, establishing their mature dimensions and for stiffening supporting cells of the auditory sensory epithelium. The coiled-coil domains of this isoform are required for reinforcement and maintenance of stereocilia rootlets. A loss of TRIOBP-5 in mouse results in dysmorphic rootlets that are abnormally thin in the cuticular plate but have increased widths and lengths within stereocilia cores, and causes progressive deafness recapitulating the human phenotype. Our study extends the current understanding of TRIOBP isoform–specific functions necessary for life-long hearing, with implications for insight into other TRIOBPopathies.

Authors

Tatsuya Katsuno, Inna A. Belyantseva, Alexander X. Cartagena-Rivera, Keisuke Ohta, Shawn M. Crump, Ronald S. Petralia, Kazuya Ono, Risa Tona, Ayesha Imtiaz, Atteeq Rehman, Hiroshi Kiyonari, Mari Kaneko, Ya-Xian Wang, Takaya Abe, Makoto Ikeya, Cristina Fenollar-Ferrer, Gavin P. Riordan, Elisabeth A. Wilson, Tracy S. Fitzgerald, Kohei Segawa, Koichi Omori, Juichi Ito, Gregory I. Frolenkov, Thomas B. Friedman, Shin-ichiro Kitajiri

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Figure 8

TRIOBP-5 deficiency results in decreased supporting-cell stiffness and fragile hair cell stereocilia.

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TRIOBP-5 deficiency results in decreased supporting-cell stiffness and f...
(A) Topographic image (top) and stiffness map (bottom) of live organ of Corti explants (P5, cochlear middle turn) from TriobpΔEx9-10/+ heterozygotes (left) and TriobpΔEx9-10/ΔEx9-10 mutant littermates (right) visualized by atomic force microscopy using PeakForce Tapping mode (PFT-AFM). Transverse stiffness (E, elastic Young’s modulus) of the reticular lamina measured in regions of interest (ROIs) overlaying supporting cells (for example, white square in TriobpΔEx9-10/ΔEx9-10 stiffness image). Scale bars: 5 μm. (B) Box-and-whisker plots of E values on apical surfaces of inner pillar (IPC), outer pillar (OPC), and Deiters’ row 1 (DC1) and 2 (DC2) cells. Bars show mean ± SD Asterisks indicate statistical significance between Triobp-5+/ΔEx9-10 and Triobp-5ΔEx9-10/ΔEx9-10 cells. ***P < 0.001 (2-tailed t test with Welch’s correction). n indicates the number of cells. Data points represent individual supporting cells for TriobpΔEx9-10/+ mice (gray) and TriobpΔEx9-10/ΔEx9-10 mice (purple), 5 and 4 mice, respectively. (C) Deflections of stereocilia bundles by a fluid-jet in wild-type (top) and TriobpΔEx9-10/ΔEx9-10 live IHCs (bottom). Responses to maximal pressure steps of ±25 mmHg are shown. See also Supplemental Video 3. The puff pipette is visible at the bottom of the panels. (D) Average displacements of stereocilia bundles as a function of fluid-jet pressure in wild-type (gray open symbols) and TriobpΔEx9-10/ΔEx9-10 (black solid symbols) IHCs at P8. Alternating positive and negative stimuli presented in increasing order. Examples of bundle deflections are shown in inset. Number of cells (number of mice): wild-type, n = 44 (6); TriobpΔEx9-10/ΔEx9-10 n = 49 (6). Data are shown as mean ± SEM. Asterisks indicate statistical significance of differences between wild-type and TriobpΔEx9-10/ΔEx9-10 mice. **P < 0.01; ***P < 0.001 (t test of independent variables).

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