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Supplementary Material for: Gα<sub>i</sub> Proteins are Indispensable for Hearing

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DataCite Commons2020-08-29 更新2024-07-27 收录
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<b><i>Background/Aims:</i></b> From invertebrates to mammals, Gα<sub>i</sub> proteins act together with their common binding partner Gpsm2 to govern cell polarization and planar organization in virtually any polarized cell. Recently, we demonstrated that Gα<sub>i3</sub>-deficiency in pre-hearing murine cochleae pointed to a role of Gα<sub>i3</sub> for asymmetric migration of the kinocilium as well as the orientation and shape of the stereociliary (“hair”) bundle, a requirement for the progression of mature hearing. We found that the lack of Gα<sub>i3</sub> impairs stereociliary elongation and hair bundle shape in high-frequency cochlear regions, linked to elevated hearing thresholds for high-frequency sound. How these morphological defects translate into hearing phenotypes is not clear. <b><i>Methods:</i></b> Here, we studied global and conditional <i>Gnai3</i> and <i>Gnai2</i> mouse mutants deficient for either one or both Gα<sub>i</sub> proteins. Comparative analyses of global versus Foxg1-driven conditional mutants that mainly delete in the inner ear and telencephalon in combination with functional tests were applied to dissect essential and redundant functions of different Gα<sub>i</sub> isoforms and to assign specific defects to outer or inner hair cells, the auditory nerve, satellite cells or central auditory neurons. <b><i>Results:</i></b> Here we report that lack of Gα<sub>i3</sub> but not of the ubiquitously expressed Gα<sub>i2</sub> elevates hearing threshold, accompanied by impaired hair bundle elongation and shape in high-frequency cochlear regions. During the crucial reprogramming of the immature inner hair cell (IHC) synapse into a functional sensory synapse of the mature IHC deficiency for Gα<sub>i2</sub> or Gα<sub>i3</sub> had no impact. In contrast, double-deficiency for Gα<sub>i2</sub> and Gα<sub>i3</sub> isoforms results in abnormalities along the entire tonotopic axis including profound deafness associated with stereocilia defects. In these mice, postnatal IHC synapse maturation is also impaired. In addition, the analysis of conditional versus global Gα<sub>i3</sub>-deficient mice revealed that the amplitude of ABR wave IV was disproportionally elevated in comparison to ABR wave I indicating that Gα<sub>i3</sub> is selectively involved in generation of neural gain during auditory processing. <b><i>Conclusion:</i></b> We propose a so far unrecognized complexity of isoform-specific and overlapping Gα<sub>i</sub> protein functions particular during final differentiation processes.

提供机构:
Karger Publishers
创建时间:
2018-06-25
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