首页> 美国卫生研究院文献>Frontiers in Molecular Neuroscience >Accelerated Age-Related Degradation of the Tectorial Membrane in the Ceacam16βgal/βgal Null Mutant Mouse a Model for Late-Onset Human Hereditary Deafness DFNB113
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Accelerated Age-Related Degradation of the Tectorial Membrane in the Ceacam16βgal/βgal Null Mutant Mouse a Model for Late-Onset Human Hereditary Deafness DFNB113

机译:Ceacam16βgal/βgal空突变小鼠(迟发性人类遗传性耳聋DFNB113的模型)中的胸膜加速与年龄相关的降解

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摘要

CEACAM16 is a non-collagenous protein of the tectorial membrane, an extracellular structure of the cochlea essential for normal hearing. Dominant and recessive mutations in CEACAM16 have been reported to cause postlingual and progressive forms of deafness in humans. In a previous study of young Ceacam16βgal/βgal null mutant mice on a C57Bl/6J background, the incidence of spontaneous otoacoustic emissions (SOAEs) was greatly increased relative to Ceacam16+/+ and Ceacam16+/βgal mice, but auditory brain-stem responses (ABRs) and distortion product otoacoustic emissions (DPOAEs) were near normal, indicating auditory thresholds were not significantly affected. To determine if the loss of CEACAM16 leads to hearing loss at later ages in this mouse line, cochlear structure and auditory function were examined in Ceacam16+/+, Ceacam16+/βgal and Ceacam16βgal/βgal mice at 6 and 12 months of age and compared to that previously described at 1 month. Analysis of older Ceacam16βgal/βgal mice reveals a progressive loss of matrix from the core of the tectorial membrane that is more extensive in the apical, low-frequency regions of the cochlea. In Ceacam16βgal/βgal mice at 6–7 months, the DPOAE magnitude at 2f1-f2 and the incidence of SOAEs both decrease relative to young animals. By ∼12 months, SOAEs and DPOAEs are not detected in Ceacam16βgal/βgal mice and ABR thresholds are increased by up to ∼40 dB across frequency, despite a complement of hair cells similar to that present in Ceacam16+/+ mice. Although SOAE incidence decreases with age in Ceacam16βgal/βgal mice, it increases in aging heterozygous Ceacam16+/βgal mice and is accompanied by a reduction in the accumulation of CEACAM16 in the tectorial membrane relative to controls. An apically-biased loss of matrix from the core of the tectorial membrane, similar to that observed in young Ceacam16βgal/βgal mice, is also seen in Ceacam16+/+ and Ceacam16+/βgal mice, and other strains of wild-type mice, but at much later ages. The loss of Ceacam16 therefore accelerates age-related degeneration of the tectorial membrane leading, as in humans with mutations in CEACAM16, to a late-onset progressive form of hearing loss.
机译:CEACAM16是保护膜的非胶原蛋白,是正常听力必不可少的耳蜗胞外结构。据报道,CEACAM16中的显性和隐性突变会导致人类的舌后和进行性耳聋。在先前对C57Bl / 6J背景的年轻Ceacam16 βgal/βgal无效突变小鼠的研究中,自发性耳声发射(SOAE)的发生率相对于Ceacam16 + / + 和Ceacam16 + /βgal小鼠,但听觉脑干反应(ABR)和畸变产物耳声发射(DPOAEs)接近正常,表明听觉阈值未受到明显影响。为了确定此小鼠品系中CEACAM16的丧失是否会导致其以后年龄的听力丧失,我们在Ceacam16 + / + ,Ceacam16 + /βgal中检查了耳蜗结构和听觉功能。和分别在6和12个月大的Ceacam16 βgal/βgal小鼠进行比较,并与之前所述的1个月时进行比较。对较老的Ceacam16 βgal/βgal小鼠的分析显示,基质从保护膜的核心逐渐消失,在耳蜗的顶端,低频区域分布更广泛。在6-7个月的Ceacam16 βgal/βgal小鼠中,相对于年幼动物,在2f1-f2处的DPOAE量级和SOAE的发生率均降低。到大约12个月时,尽管有很多类似于Ceacam16中存在的毛细胞,但在Ceacam16 βgal/βgal小鼠中未检测到SOAE和DPOAE,并且ABR阈值在整个频率上都增加了约40 dB。 + / + 小鼠。尽管在Ceacam16 βgal/βgal小鼠中SOAE的发生率随着年龄的增长而降低,但在杂合的Ceacam16 + /βgal衰老小鼠中SOAE的发生率却增加,并伴随着CEACAM16在小鼠体内的积累减少。保护膜相对于对照。在Ceacam16 + / + 和ceacam16 + / + 和Ceacam16 + /βgal小鼠和其他野生型小鼠品系,但年龄要晚得多。因此,与在 CEACAM16 中发生突变的人一样,Ceacam16的丧失会加速与年龄相关的盖膜变性,导致晚期听力丧失。

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