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只有一个拷贝的prestin基因的小鼠的耳蜗功能。

Cochlear function in mice with only one copy of the prestin gene.

作者信息

Cheatham M A, Zheng J, Huynh K H, Du G G, Gao J, Zuo J, Navarrete E, Dallos P

机构信息

Department of Communication Sciences and Disorders, Northwestern University, Evanston, IL 60208-3550, USA.

出版信息

J Physiol. 2005 Nov 15;569(Pt 1):229-41. doi: 10.1113/jphysiol.2005.093518. Epub 2005 Sep 15.

Abstract

Targeted deletion of the prestin gene reduces cochlear sensitivity and eliminates both frequency selectivity and outer hair cell (OHC) somatic electromotility. In addition, it has been reported by Liberman and colleagues that F2 generation heterozygotes exhibit a 6 dB reduction in sensitivity, as well as a decrease in protein and electromotility. Considering that the active process is non-linear, a halving of somatic electromotility would be expected to produce a much larger change in sensitivity. We therefore re-evaluated comparisons between heterozygotes and wildtype mice using both in vivo and in vitro electrophysiology, as well as molecular biology. Data reported here for F3-F5 generation mice indicate that compound action potential thresholds and tuning curves, as well as the cochlear microphonic, are similar in heterozygotes and wildtype controls. Measurements of non-linear capacitance in isolated OHCs demonstrate that charge density, as well as the voltage dependence and sensitivity of motor function, is indistinguishable in the two genotypes, as is somatic electromotility. In addition, both immunocytochemistry and western blot analysis in young adult mice suggest that prestin protein in heterozygotes is near normal. In contrast, prestin mRNA is always less than in wildtype mice at all ages tested. Results from F3-F5 generation mice suggest that one copy of the prestin gene is capable of compensating for the deleted copy and that heterozygous mice do not suffer peripheral hearing impairment.

摘要

靶向缺失预应力蛋白基因会降低耳蜗敏感性,并消除频率选择性和外毛细胞(OHC)体细胞电运动。此外,利伯曼及其同事报告称,F2代杂合子的敏感性降低了6 dB,蛋白质和电运动也有所减少。考虑到主动过程是非线性的,体细胞电运动减半预计会在敏感性上产生更大的变化。因此,我们使用体内和体外电生理学以及分子生物学方法,重新评估了杂合子小鼠和野生型小鼠之间的差异。这里报告的F3 - F5代小鼠的数据表明,复合动作电位阈值、调谐曲线以及耳蜗微音器电位在杂合子和野生型对照中相似。对分离的OHC中非线性电容的测量表明,两种基因型的电荷密度、运动功能的电压依赖性和敏感性以及体细胞电运动均无差异。此外,对成年小鼠的免疫细胞化学和蛋白质印迹分析均表明,杂合子中的预应力蛋白接近正常水平。相比之下,在所有测试年龄,预应力蛋白mRNA始终低于野生型小鼠。F3 - F5代小鼠的结果表明,一个预应力蛋白基因拷贝能够补偿缺失的拷贝,杂合子小鼠不会出现外周听力损伤。

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Cochlear function in mice with only one copy of the prestin gene.只有一个拷贝的prestin基因的小鼠的耳蜗功能。
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