Oregon Hearing Research Center, Oregon Health & Science University, Portland, Oregon 97239, USA.
J Neurosci. 2010 Jul 21;30(29):9683-94. doi: 10.1523/JNEUROSCI.1541-10.2010.
The quantitative trait locus ahl8 is a key contributor to the early-onset, age-related hearing loss of DBA/2J mice. A nonsynonymous nucleotide substitution in the mouse fascin-2 gene (Fscn2) is responsible for this phenotype, confirmed by wild-type BAC transgene rescue of hearing loss in DBA/2J mice. In chickens and mice, FSCN2 protein is abundant in hair-cell stereocilia, the actin-rich structures comprising the mechanically sensitive hair bundle, and is concentrated toward stereocilia tips of the bundle's longest stereocilia. FSCN2 expression increases when these stereocilia differentially elongate, suggesting that FSCN2 controls filament growth, stiffens exposed stereocilia, or both. Because ahl8 accelerates hearing loss only in the presence of mutant cadherin 23, a component of hair-cell tip links, mechanotransduction and actin crosslinking must be functionally interrelated.
ahl8 数量性状位点是 DBA/2J 小鼠早发性年龄相关性听力损失的主要贡献者。小鼠 fascin-2 基因(Fscn2)中的一个非同义核苷酸替换导致了这种表型,这一表型可通过野生型 BAC 转基因在 DBA/2J 小鼠中对听力损失的挽救来证实。在鸡和小鼠中,FSCN2 蛋白在毛细胞静纤毛中大量存在,静纤毛是构成机械敏感毛束的富含肌动蛋白的结构,并且集中在毛束最长静纤毛的尖端。当这些静纤毛差异伸长时,FSCN2 表达增加,这表明 FSCN2 控制细丝生长,使暴露的静纤毛变硬,或者两者兼而有之。由于 ahl8 仅在突变型钙黏蛋白 23(毛细胞尖端连接的组成部分)存在的情况下加速听力损失,因此机械转导和肌动蛋白交联必须在功能上相互关联。