Department of Developmental Neurobiology, St. Jude Children's Research Hospital, Memphis, TN, USA.
PLoS One. 2012;7(9):e45453. doi: 10.1371/journal.pone.0045453. Epub 2012 Sep 21.
The mammalian outer hair cells (OHCs) provide a positive mechanical feedback to enhance the cochlea's hearing sensitivity and frequency selectivity. Although the OHC-specific, somatic motor protein prestin is required for cochlear amplification, it remains unclear whether prestin can provide sufficient cycle-by-cycle feedback. In cochlear mechanical modeling, varying amounts of OHC motor activity should provide varying degrees of feedback efficiency to adjust the gain of cochlear amplifier at resonant frequencies. Here we created and characterized two new prestin-hypomorphic mouse models with reduced levels of wild-type prestin. OHCs from these mice exhibited length, total elementary charge movement (Q(max)), charge density, and electromotility intermediate between those of wild-type and prestin-null mice. Remarkably, measurements of auditory brainstem responses and distortion product otoacoustic emissions from these mice displayed wild-type like hearing sensitivities at 4-22 kHz. These results indicate that as low as 26.7% Q(max), 34.0% charge density and 44.0% electromotility in OHCs were sufficient for wild-type-like hearing sensitivity in mice at 4-22 kHz, and that these in vitro parameters of OHCs did not correlate linearly with the feedback efficiency for in vivo gain of the cochlear amplifier. Our results thus provide valuable data for modeling cochlear mechanics and will stimulate further mechanistic analysis of the cochlear amplifier.
哺乳动物的外毛细胞 (OHC) 提供正向机械反馈,以增强耳蜗的听力灵敏度和频率选择性。尽管 OHC 特异性的体细胞质马达蛋白 prestin 是耳蜗放大所必需的,但仍不清楚 prestin 是否能提供足够的循环循环反馈。在耳蜗机械建模中,不同数量的 OHC 运动活性应提供不同程度的反馈效率,以调整耳蜗放大器在共振频率处的增益。在这里,我们创建并表征了两种具有降低水平野生型 prestin 的新型 prestin 功能减退型小鼠模型。这些小鼠的 OHC 表现出长度、总基本电荷量移动 (Q(max))、电荷量密度和电动力介于野生型和 prestin 缺失型小鼠之间。值得注意的是,这些小鼠的听觉脑干反应和畸变产物耳声发射测量显示在 4-22 kHz 处具有野生型听力敏感度。这些结果表明,OHC 中的 Q(max)低至 26.7%、电荷密度低至 34.0%和电动力低至 44.0%,足以在 4-22 kHz 处使小鼠具有野生型听力敏感度,并且这些 OHC 的体外参数与耳蜗放大器的体内增益的反馈效率没有线性相关。因此,我们的结果为耳蜗力学建模提供了有价值的数据,并将刺激对耳蜗放大器的进一步机制分析。