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斑马鱼中性粒细胞中电压门控质子通道的分子与功能特性

Molecular and functional characterization of the voltage-gated proton channel in zebrafish neutrophils.

作者信息

Ratanayotha Adisorn, Kawai Takafumi, Higashijima Shin-Ichi, Okamura Yasushi

机构信息

Laboratory of Integrative Physiology, Department of Physiology, Graduate School of Medicine, Osaka University, Suita, Osaka, Japan.

Laboratory of Integrative Physiology, Department of Physiology, Graduate School of Medicine, Osaka University, Suita, Osaka, Japan

出版信息

Physiol Rep. 2017 Aug;5(15). doi: 10.14814/phy2.13345.

Abstract

Voltage-gated proton channels (Hv1/VSOP) are expressed in various cells types, including phagocytes, and are involved in diverse physiological processes. Although , the gene encoding Hv1, has been identified across a wide range of species, most of the knowledge about its physiological function and expression profile is limited to mammals. In this study, we investigated the basic properties of DrHv1, the Hv1 ortholog in zebrafish () which is an excellent animal model owing to the transparency, as well as its functional expression in native cells. Electrophysiological analysis using a heterologous expression system confirmed the properties of a voltage-gated proton channel are conserved in DrHv1 with differences in threshold and activation kinetics as compared to mouse () Hv1 (mHv1). RT-PCR analysis revealed that is expressed in zebrafish neutrophils, as is the case in mammals. Subsequent electrophysiological analysis confirmed the functional expression of DrHv1 in zebrafish neutrophils, which suggests Hv1 function in phagocytes is conserved among vertebrates. We also found that DrHv1 is comparatively resistant to extracellular Zn, which is a potent inhibitor of mammalian Hv1, and this phenomenon appears to reflect variation in the Zn-coordinating residue (histidine) within the extracellular linker region in mammalian Hv1. Notably, the serum Zn concentration is much higher in zebrafish than in mouse, raising the possibility that Zn sensitivity was acquired in accordance with a change in the serum Zn concentration. This study highlights the biological variation and importance of Hv1 in different animal species.

摘要

电压门控质子通道(Hv1/VSOP)在包括吞噬细胞在内的多种细胞类型中表达,并参与多种生理过程。尽管编码Hv1的基因已在广泛的物种中被鉴定出来,但关于其生理功能和表达谱的大多数知识仅限于哺乳动物。在本研究中,我们研究了斑马鱼(Danio rerio)中Hv1的直系同源物DrHv1的基本特性,斑马鱼因其透明性是一种优秀的动物模型,我们还研究了其在天然细胞中的功能表达。使用异源表达系统的电生理分析证实,电压门控质子通道的特性在DrHv1中是保守的,与小鼠(Mus musculus)Hv1(mHv1)相比,其阈值和激活动力学存在差异。RT-PCR分析显示,DrHv1在斑马鱼中性粒细胞中表达,与哺乳动物的情况相同。随后的电生理分析证实了DrHv1在斑马鱼中性粒细胞中的功能表达,这表明吞噬细胞中Hv1的功能在脊椎动物中是保守的。我们还发现,DrHv1对细胞外锌具有相对抗性,细胞外锌是哺乳动物Hv1的有效抑制剂,这种现象似乎反映了哺乳动物Hv1细胞外连接区锌配位残基(组氨酸)的变异。值得注意的是,斑马鱼的血清锌浓度比小鼠高得多,这增加了锌敏感性是根据血清锌浓度的变化而获得的可能性。这项研究突出了Hv1在不同动物物种中的生物学差异和重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b00/5555884/d1b7e809b755/PHY2-5-e13345-g001.jpg

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