Lateral wall protein content mediates alterations in cochlear outer hair cell mechanics before and after hearing onset

被引:14
|
作者
Jensen-Smith, Heather [1 ]
Hallworth, Richard [1 ]
机构
[1] Creighton Univ, Dept Biomed Sci, Omaha, NE 68178 USA
来源
CELL MOTILITY AND THE CYTOSKELETON | 2007年 / 64卷 / 09期
关键词
development; outer hair cell; specific stiffness; spectrin; actin; prestin;
D O I
10.1002/cm.20217
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Specialized outer hair cells (OHCs) housed within the mammalian cochlea exhibit active, nonlinear, mechanical responses to auditory stimulation termed electromotility. The extraordinary frequency resolution capacity of the cochlea requires an exquisitely equilibrated mechanical system of sensory and supporting cells. OHC electromotile length change, stiffness, and force generation are responsible for a 100-fold increase in hearing sensitivity by augmenting vibrational input to nonmotile sensory inner hair cells. Characterization of OHC mechanics is crucial for understanding and ultimately preventing permanent functional deficits due to overstimulation or as a consequence of various cochlear pathologies. The OHCs' major structural assembly is a highly-specialized lateral wall. The lateral wall consists of three structures; a plasma membrane highly-enriched with the motor-protein prestin, an actin-spectrin cortical lattice, and one or more layers of subsurface cistemae. Technical difficulties in independently manipulating each lateral wall constituent have constrained previous attempts to analyze the determinants of OHCs' mechanical properties. Temporal separations in the accumulation of each lateral wall constituent during postnatal development permit associations between lateral wall structure and OHC mechanics. We compared developing and adult gerbil OHC axial stiffness using calibrated glass fibers. Alterations in each lateral wall component and OHC stiffness were correlated as a function of age. Reduced F-actin labeling was correlated with reduced OHC stiffness before hearing onset. Prestin incorporation into the PM was correlated with increased OHC stiffness at hearing onset. Our data indicate lateral wall F-actin and prestin are the primary determinants of OHC mechanical properties before and after hearing onset, respectively.
引用
收藏
页码:705 / 717
页数:13
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