Control of a hair bundle's mechanosensory function by its mechanical load.

Salvi, Joshua D; Ó Maoiléidigh, Dáibhid; Fabella, Brian A; Tobin, Mélanie; Hudspeth, A J · Proc Natl Acad Sci U S A · 2015

basic_science · Level V

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Abstract

Hair cells, the sensory receptors of the internal ear, subserve different functions in various receptor organs: they detect oscillatory stimuli in the auditory system, but transduce constant and step stimuli in the vestibular and lateral-line systems. We show that a hair cell's function can be controlled experimentally by adjusting its mechanical load. By making bundles from a single organ operate as any of four distinct types of signal detector, we demonstrate that altering only a few key parameters can fundamentally change a sensory cell's role. The motions of a single hair bundle can resemble those of a bundle from the amphibian vestibular system, the reptilian auditory system, or the mammalian auditory system, demonstrating an essential similarity of bundles across species and receptor organs.

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