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有证据表明 GCS1 参与了星状海葵(Nematostella vectensis)的受精过程:这表明植物和动物的精子-卵子融合机制可能具有共性。

Evidence for participation of GCS1 in fertilization of the starlet sea anemone Nematostella vectensis: implication of a common mechanism of sperm-egg fusion in plants and animals.

机构信息

Sugashima Marine Biological Laboratory, Graduate School of Science, Nagoya University, Sugashima, Toba 517-0004, Japan.

Marine Genomics Unit, Okinawa Institute of Science and Technology, Onna, Okinawa 904-0495, Japan.

出版信息

Biochem Biophys Res Commun. 2014 Sep 5;451(4):522-8. doi: 10.1016/j.bbrc.2014.08.006. Epub 2014 Aug 9.

Abstract

It has been reported that GCS1 (Generative Cell Specific 1) is a transmembrane protein that is exclusively expressed in sperm cells and is essential for gamete fusion in flowering plants. The GCS1 gene is present not only in angiosperms but also in unicellular organisms and animals, implying the occurrence of a common or ancestral mechanism of GCS1-mediated gamete fusion. In order to elucidate the common mechanism, we investigated the role of GCS1 in animal fertilization using a sea anemone (Cnidaria), Nematostella vectensis. Although the existence of the GCS1 gene in N. vectensis has been reported, the expression of GCS1 in sperm and the role of GCS1 in fertilization are not known. In this study, we showed that the GCS1 gene is expressed in the testis and that GCS1 protein exists in sperm by in situ hybridization and proteomic analysis, respectively. Then we made four peptide antibodies against the N-terminal extracellular region of NvGCS1. These antibodies specifically reacted to NvGCS1 among sperm proteins on the basis of Western analysis and potently inhibited fertilization in a concentration-dependent manner. These results indicate that sperm GCS1 plays a pivotal role in fertilization, most probably in sperm-egg fusion, in a starlet sea anemone, suggesting a common gamete-fusion mechanism shared by eukaryotic organisms.

摘要

据报道,GCS1(生殖细胞特异性 1)是一种跨膜蛋白,仅在精子细胞中表达,对开花植物的配子融合至关重要。GCS1 基因不仅存在于被子植物中,也存在于单细胞生物和动物中,这表明存在 GCS1 介导的配子融合的共同或祖先机制。为了阐明共同的机制,我们使用海葵(刺胞动物门)Nematostella vectensis 研究了 GCS1 在动物受精中的作用。尽管已经报道了 N. vectensis 中存在 GCS1 基因,但 GCS1 在精子中的表达及其在受精中的作用尚不清楚。在这项研究中,我们通过原位杂交和蛋白质组学分析分别显示 GCS1 基因在睾丸中表达,并且 GCS1 蛋白存在于精子中。然后,我们针对 NvGCS1 的 N 端细胞外区域制作了四个肽抗体。这些抗体在基于 Western 分析的基础上特异性地与精子蛋白中的 NvGCS1 反应,并以浓度依赖性方式强烈抑制受精。这些结果表明,精子 GCS1 在受精中起着关键作用,很可能在精子-卵子融合中起作用,在一种星星海葵中,这表明真核生物具有共同的配子融合机制。

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