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Prestin is an anion transporter dispensable for mechanical feedback amplification in Drosophila hearing

机译:Prestin是一种阴离子转运蛋白可用于果蝇听力中的机械反馈放大

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摘要

In mammals, the membrane-based protein Prestin confers unique electromotile properties to cochlear outer hair cells, which contribute to the cochlear amplifier. Like mammals, the ears of insects, such as those of Drosophila melanogaster, mechanically amplify sound stimuli and have also been reported to express Prestin homologs. To determine whether the D. melanogaster Prestin homolog (dpres) is required for auditory amplification, we generated and analyzed dpres mutant flies. We found that dpres is robustly expressed in the fly’s antennal ear. However, dpres mutant flies show normal auditory nerve responses, and intact non-linear amplification. Thus we conclude that, in D. melanogaster, auditory amplification is independent of Prestin. This finding resonates with prior phylogenetic analyses, which suggest that the derived motor function of mammalian Prestin replaced, or amended, an ancestral transport function. Indeed, we show that dpres encodes a functional anion transporter. Interestingly, the acquired new motor function in the phylogenetic lineage leading to birds and mammals coincides with loss of the mechanotransducer channel NompC (=TRPN1), which has been shown to be required for auditory amplification in flies. The advent of Prestin (or loss of NompC, respectively) may thus mark an evolutionary transition from a transducer-based to a Prestin-based mechanism of auditory amplification.Electronic supplementary materialThe online version of this article (doi:10.1007/s00359-014-0960-9) contains supplementary material, which is available to authorized users.
机译:在哺乳动物中,基于膜的蛋白质Prestin为耳蜗外毛细胞赋予独特的电动力特性,这有助于耳蜗放大器。像哺乳动物一样,昆虫的耳朵,例如果蝇的昆虫的耳朵,会机械地放大声音刺激,并且据报道也表达了Prestin同源物。为了确定是否需要D. melanogaster Prestin同源物(dpres)进行听觉扩增,我们生成并分析了dpres突变体果蝇。我们发现dpres在苍蝇的触角耳朵中得到了强有力的表达。但是,dpres突变体果蝇显示正常的听觉神经反应和完整的非线性扩增。因此,我们得出结论,在D. melanogaster中,听觉放大与Prestin独立。这一发现与先前的系统发育分析产生了共鸣,这表明哺乳动物Prestin的衍生运动功能取代或修正了祖传运输功能。实际上,我们表明dpres编码功能性阴离子转运蛋白。有趣的是,在导致鸟类和哺乳动物的系统发育谱系中获得的新运动功能与机械换能器通道NompC(= TRPN1)的丢失相吻合,这已被证明是果蝇中听觉放大所必需的。因此,Prestin的问世(或NompC的缺失)可能标志着从换能器向基于Prestin的听觉放大机制的进化过渡。电子补充材料本文的在线版本(doi:10.1007 / s00359-014- 0960-9)包含补充材料,授权用户可以使用。

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