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一种不涉及 CatSper 的机制可诱导体内受精中的精子前向运动。

A CatSper-Uninvolved Mechanism to Induce Forward Sperm Motility in the Internal Fertilization.

机构信息

Faculty of Science, Biological Division, Yamagata University, Yamagata 990-8560, Japan.

Graduate School of Engineering, Utsunomiya University, Utsunomiya, Tochigi 321-8505, Japan.

出版信息

Zoolog Sci. 2024 Jun;41(3):302-313. doi: 10.2108/zs230046.

Abstract

Sperm-specific cation channel (CatSper), sperm-specific Na /H exchanger (sNHE), and soluble adenylyl cyclase (sAC) are necessary in the signaling pathways to control sperm motility in many animals, whereas some animals have lost some or all of them. In the present study, we examined CatSper-uninvolved signaling for vigorous undulation of the undulating membrane that is attached to the sperm tail and gives thrust for forward motility in the internally fertilizing newt . Reverse-transcription PCR failed to detect sNHE in the newt sperm. However, the pH of sperm cytoplasm was raised under a high extracellular pH equivalent to that of egg jelly, where sperm motility is initiated by sperm motility-initiating substance (SMIS). Carbonic anhydrase XII/ XVI and SLC4A4/8 were suggested to be present in the sperm, and transported bicarbonates raised the intracellular pH. In egg jelly extract that contained SMIS, the anion transporter inhibitor DIDS weakened the undulation of the undulating membrane, while bicarbonates enhanced it. The cyclic AMP concentration was found to increase in sperm cytoplasm in the egg-jelly extract. An inhibitor of sAC (KH7) weakened the undulation of the undulating membrane, and dibutyryl cyclic AMP blocked the inhibitory effect. Inhibitor of transmembrane AC (DDA) limitedly affected the undulation. The undulation was weakened by an inhibitor of protein kinase A (H89), and by an inhibitor of transient receptor potential (TRP) channels (RN1747). Our results support the conclusions that the high pH of the egg jelly triggers a signaling pathway through sAC, PKA, and TRP channels, and coacts with SMIS to induce forward sperm motility.

摘要

精子特异性阳离子通道 (CatSper)、精子特异性 Na+/H+交换器 (sNHE) 和可溶性腺苷酸环化酶 (sAC) 在许多动物的精子运动控制信号通路中是必需的,而有些动物已经失去了其中一些或全部。在本研究中,我们检查了 CatSper 不参与的信号通路,以控制内部受精蝾螈的波动膜的剧烈波动,该波动膜附着在精子尾部并为向前运动提供推力。逆转录 PCR 未能在蝾螈精子中检测到 sNHE。然而,在高细胞外 pH 下(相当于卵果冻中的 pH),细胞质的 pH 升高,精子运动由精子运动起始物质 (SMIS) 启动。碳酸酐酶 XII/ XVI 和 SLC4A4/8 被认为存在于精子中,并运输碳酸氢盐使细胞内 pH 升高。在含有 SMIS 的卵果冻提取物中,阴离子转运抑制剂 DIDS 削弱了波动膜的波动,而碳酸氢盐则增强了波动。在卵果冻提取物中发现精子细胞质中环腺苷酸浓度增加。sAC 的抑制剂 (KH7) 削弱了波动膜的波动,而二丁酰环 AMP 阻断了抑制作用。跨膜 AC 的抑制剂 (DDA) 有限地影响波动。蛋白激酶 A (PKA) 的抑制剂 (H89) 和瞬时受体电位 (TRP) 通道的抑制剂 (RN1747) 削弱了波动。我们的结果支持以下结论:卵果冻的高 pH 值触发了通过 sAC、PKA 和 TRP 通道的信号通路,并与 SMIS 共同作用诱导向前精子运动。

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