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斑马鱼梅洛文加突变体揭示了pH调节在毛细胞毒性和功能中的作用。

The zebrafish merovingian mutant reveals a role for pH regulation in hair cell toxicity and function.

作者信息

Stawicki Tamara M, Owens Kelly N, Linbo Tor, Reinhart Katherine E, Rubel Edwin W, Raible David W

机构信息

Department of Biological Structure, University of Washington, Seattle, WA 98195, USA. Virginia Merrill Bloedel Hearing Research Center, University of Washington, Seattle, WA 98195, USA.

Department of Biological Structure, University of Washington, Seattle, WA 98195, USA. Virginia Merrill Bloedel Hearing Research Center, University of Washington, Seattle, WA 98195, USA. Department of Otolaryngology, Head and Neck Surgery, University of Washington, Seattle, WA 98195, USA.

出版信息

Dis Model Mech. 2014 Jul;7(7):847-56. doi: 10.1242/dmm.016576.

Abstract

Control of the extracellular environment of inner ear hair cells by ionic transporters is crucial for hair cell function. In addition to inner ear hair cells, aquatic vertebrates have hair cells on the surface of their body in the lateral line system. The ionic environment of these cells also appears to be regulated, although the mechanisms of this regulation are less understood than those of the mammalian inner ear. We identified the merovingian mutant through genetic screening in zebrafish for genes involved in drug-induced hair cell death. Mutants show complete resistance to neomycin-induced hair cell death and partial resistance to cisplatin-induced hair cell death. This resistance is probably due to impaired drug uptake as a result of reduced mechanotransduction ability, suggesting that the mutants have defects in hair cell function independent of drug treatment. Through genetic mapping we found that merovingian mutants contain a mutation in the transcription factor gcm2. This gene is important for the production of ionocytes, which are cells crucial for whole body pH regulation in fish. We found that merovingian mutants showed an acidified extracellular environment in the vicinity of both inner ear and lateral line hair cells. We believe that this acidified extracellular environment is responsible for the defects seen in hair cells of merovingian mutants, and that these mutants would serve as a valuable model for further study of the role of pH in hair cell function.

摘要

离子转运体对内耳毛细胞细胞外环境的调控对于毛细胞功能至关重要。除了内耳毛细胞外,水生脊椎动物在其侧线系统的体表也有毛细胞。这些细胞的离子环境似乎也受到调控,尽管这种调控机制比哺乳动物内耳的调控机制了解得更少。我们通过在斑马鱼中进行基因筛选,寻找与药物诱导的毛细胞死亡相关的基因,从而鉴定出了“默洛温王朝”突变体。突变体对新霉素诱导的毛细胞死亡具有完全抗性,对顺铂诱导的毛细胞死亡具有部分抗性。这种抗性可能是由于机械转导能力降低导致药物摄取受损所致,这表明突变体在毛细胞功能方面存在缺陷,与药物治疗无关。通过基因定位,我们发现“默洛温王朝”突变体的转录因子gcm2发生了突变。该基因对于离子细胞的产生很重要,而离子细胞是鱼类全身pH调节的关键细胞。我们发现“默洛温王朝”突变体在内耳和侧线毛细胞附近都表现出细胞外环境酸化。我们认为这种酸化的细胞外环境是“默洛温王朝”突变体毛细胞中所见缺陷的原因,并且这些突变体将成为进一步研究pH在毛细胞功能中作用的有价值模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73c6/4073274/f2cf536d526c/DMM016576F1.jpg

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