Howard Hughes Medical Institute and Laboratory of Sensory Neuroscience, The Rockefeller University, New York, NY 10065-6399, USA.
Proc Natl Acad Sci U S A. 2012 Feb 7;109(6):1943-8. doi: 10.1073/pnas.1120298109. Epub 2012 Jan 20.
Hair cells in the auditory, vestibular, and lateral-line systems of vertebrates receive inputs through a remarkable variety of accessory structures that impose complex mechanical loads on the mechanoreceptive hair bundles. Although the physiological and morphological properties of the hair bundles in each organ are specialized for detecting the relevant inputs, we propose that the mechanical load on the bundles also adjusts their responsiveness to external signals. We use a parsimonious description of active hair-bundle motility to show how the mechanical environment can regulate a bundle's innate behavior and response to input. We find that an unloaded hair bundle can behave very differently from one subjected to a mechanical load. Depending on how it is loaded, a hair bundle can function as a switch, active oscillator, quiescent resonator, or low-pass filter. Moreover, a bundle displays a sharply tuned, nonlinear, and sensitive response for some loading conditions and an untuned or weakly tuned, linear, and insensitive response under other circumstances. Our simple characterization of active hair-bundle motility explains qualitatively most of the observed features of bundle motion from different organs and organisms. The predictions stemming from this description provide insight into the operation of hair bundles in a variety of contexts.
脊椎动物的听觉、前庭和侧线系统中的毛细胞通过各种辅助结构接收输入,这些结构对机械敏感的毛束施加复杂的机械负载。尽管每个器官中的毛束的生理和形态特性专门用于检测相关输入,但我们提出,束上的机械负载也会调整其对外部信号的响应。我们使用一种简洁的主动毛束运动描述来展示机械环境如何调节束的固有行为和对输入的响应。我们发现,未加载的毛束的行为与受到机械负载的毛束有很大的不同。根据加载方式的不同,毛束可以作为开关、主动振荡器、静止谐振器或低通滤波器。此外,对于某些加载条件,束显示出锐调谐、非线性和敏感的响应,而在其他情况下则表现出未调谐或弱调谐、线性和不敏感的响应。我们对主动毛束运动的简单描述定性地解释了来自不同器官和生物体的束运动的大部分观察特征。这种描述所产生的预测为毛束在各种情况下的工作提供了深入的了解。