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直接作为卵母细胞成熟诱导激素的水母神经肽的鉴定。

Identification of jellyfish neuropeptides that act directly as oocyte maturation-inducing hormones.

作者信息

Takeda Noriyo, Kon Yota, Quiroga Artigas Gonzalo, Lapébie Pascal, Barreau Carine, Koizumi Osamu, Kishimoto Takeo, Tachibana Kazunori, Houliston Evelyn, Deguchi Ryusaku

机构信息

Research Center for Marine Biology, Graduate School of Life Sciences, Tohoku University, Asamushi, Aomori 039-3501, Japan.

Laboratory of Cell and Developmental Biology, Graduate School of Bioscience, Tokyo Institute of Technology, Nagatsuta, Midori-ku, Yokohama 226-8501, Japan.

出版信息

Development. 2018 Jan 22;145(2):dev156786. doi: 10.1242/dev.156786.

Abstract

Oocyte meiotic maturation is crucial for sexually reproducing animals, and its core cytoplasmic regulators are highly conserved between species. By contrast, the few known maturation-inducing hormones (MIHs) that act on oocytes to initiate this process are highly variable in their molecular nature. Using the hydrozoan jellyfish species and , which undergo oocyte maturation in response to dark-light and light-dark transitions, respectively, we deduced amidated tetrapeptide sequences from gonad transcriptome data and found that synthetic peptides could induce maturation of isolated oocytes at nanomolar concentrations. Antibody preabsorption experiments conclusively demonstrated that these W/RPRPamide-related neuropeptides account for endogenous MIH activity produced by isolated gonads. We show that the MIH peptides are synthesised by neural-type cells in the gonad, are released following dark-light/light-dark transitions, and probably act on the oocyte surface. They are produced by male as well as female jellyfish and can trigger both sperm and egg release, suggesting a role in spawning coordination. We propose an evolutionary link between hydrozoan MIHs and the neuropeptide hormones that regulate reproduction upstream of MIHs in bilaterian species.

摘要

卵母细胞减数分裂成熟对于有性生殖动物至关重要,其核心细胞质调节因子在物种间高度保守。相比之下,已知的少数作用于卵母细胞以启动这一过程的成熟诱导激素(MIHs)在分子性质上差异很大。利用分别响应明暗和暗明转换而进行卵母细胞成熟的水螅水母物种 和 ,我们从性腺转录组数据中推导出去酰胺化四肽序列,并发现合成肽能在纳摩尔浓度下诱导分离的卵母细胞成熟。抗体预吸收实验确凿地证明,这些与W/RPRPamide相关的神经肽构成了分离性腺产生的内源性MIH活性。我们表明,MIH肽由性腺中的神经型细胞合成,在明暗/暗明转换后释放,可能作用于卵母细胞表面。它们由雄性和雌性水母产生,能触发精子和卵子的释放,表明其在产卵协调中发挥作用。我们提出了水螅水母MIHs与在两侧对称动物物种中在MIHs上游调节生殖的神经肽激素之间的进化联系。

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