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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Thermosensitive ion channel TRPV1 is endogenously expressed in the sperm of a fresh water teleost fish (Labeo rohita) and regulates sperm motility
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Thermosensitive ion channel TRPV1 is endogenously expressed in the sperm of a fresh water teleost fish (Labeo rohita) and regulates sperm motility

机译:热敏离子通道TRPV1在淡水紧邻鱼(Labeo Rohita)的精子中内源性表达,并调节精子运动

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摘要

Sperm cells exhibit extremely high sensitivity in response to slight changes in temperature, osmotic pressure and/or presence of various chemical stimuli. In most cases throughout the evolution, these physico-chemical stimuli trigger Ca2+-signaling and subsequently alter structure, cellular function, motility and survival of the sperm cells. Few reports have recently demonstrated the presence of Transient Receptor Potential (TRP) channels in the sperm cells from higher eukaryotes, mainly from higher mammals. In this work, we have explored if the sperm cells from lower vertebrates can also have thermo-sensitive TRP channels. In this paper, we demonstrate the endogenous presence of one specific thermosensitive ion channel, namely Transient Receptor Potential Vanilloid family member sub type 1 (TRPV1) in the sperm cells collected from fresh water teleost fish, Labeo rohita. By using western blot analysis, fluorescence assisted cell sorting (FACS) and confocal microscopy; we confirm the presence of this non-selective cation channel. Activation of TRPV1 by an endogenous activator NADA significantly increases the quality as well as the duration of fish sperm movement. The sperm cell specific expression of TRPV1 matches well with our in silico sequence analysis. The results demonstrate that TRPV1 gene is conserved in various fishes, ranging from 1-3 in copy number, and it originated by fish-specific duplication events within the last 320 million years (MY). To the best of our knowledge, this is the first report demonstrating the presence of any thermo-sensitive TRP channels in the sperm cells of early vertebrates as well as of aquatic animals, which undergo external fertilization in fresh water. This observation may have implications in the aquaculture, breeding of several fresh water and marine fish species and cryopreservation of fish sperms.
机译:响应于温度,渗透压和/或各种化学刺激的存在的微小变化,精子细胞具有极高的敏感性。在整个进化中的大多数情况下,这些物理化学刺激触发Ca2 + - 股票,随后改变了精子细胞的结构,细胞功能,运动和存活。少数报道最近证明了来自较高真核生物的精子细胞中的短期受体电位(TRP)通道的存在,主要来自较高的哺乳动物。在这项工作中,我们已经探索了来自下脊椎动物的精子细胞也可以具有热敏TRP通道。在本文中,我们证明了一种特定热敏离子通道的内源性存在,即瞬时受体潜在的香草族家族成员亚型1(TRPV1)在从淡水Tepherost鱼,Labeo Rohita收集的精子细胞中。通过使用蛋白质印迹分析,荧光辅助细胞分选(FACS)和共聚焦显微镜;我们确认存在这种非选择性阳离子通道。内源性活化剂NADA的TRPV1激活显着提高了质量以及鱼精子运动的持续时间。 TRPV1的精子细胞特异性表达与我们在硅序列分析中均匀。结果表明,TRPV1基因在各种鱼类中保存,从拷贝数1-3中,它起源于过去320万年(我的)内的鱼类特异性重复事件。据我们所知,这是第一份报告,证明早期脊椎动物的精子细胞以及水生动物中存在任何热敏TRP通道的报告,该动物在淡水中经历外部受精。该观察可能对水产养殖,繁殖几种淡水和海洋鱼类和鱼精液的冷冻保存有影响。

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