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一种新型半胱氨酸结蛋白可增强精子活力,这可能促进两栖动物体内受精的进化。

A Novel Cysteine Knot Protein for Enhancing Sperm Motility That Might Facilitate the Evolution of Internal Fertilization in Amphibians.

作者信息

Yokoe Misato, Takayama-Watanabe Eriko, Saito Yoko, Kutsuzawa Megumi, Fujita Kosuke, Ochi Haruki, Nakauchi Yuni, Watanabe Akihiko

机构信息

Department of Biology, Faculty of Science, Yamagata University, Kojirakawa, Yamagata, Japan.

Institute of Arts and Sciences, Yamagata University, Kojirakawa, Yamagata, Japan.

出版信息

PLoS One. 2016 Aug 31;11(8):e0160445. doi: 10.1371/journal.pone.0160445. eCollection 2016.

Abstract

Internal fertilization ensures successful reproduction of tetrapod vertebrates on land, although how this mode of reproduction evolved is unknown. Here, we identified a novel gene encoding sperm motility-initiating substance (SMIS), a key protein for the internal fertilization of the urodele Cynops pyrrhogaster by Edman degradation of an isolated protein and subsequent reverse transcription polymerase chain reaction. The SMIS gene encoded a 150 amino-acid sequence including the cysteine knot (CK) motif. No gene with substantial similarity to the SMIS was in the data bank of any model organisms. An active site of the SMIS was in the C-terminal region of the 2nd loop of CK motif. A synthetic peptide including the active site sequence bound to the midpiece and initiated/enhanced the circular motion of C. pyrrhogaster sperm, which allows penetration of the egg jelly specialized for the internal fertilization of this species. The synthetic peptide bound to whole sperm of Rhacophorus arboreus and enhanced the rotary motion, which is adapted to propel the sperm through egg coat matrix specialized for arboreal reproduction, while it bound to the tip of head and tail of Bufo japonicus sperm, and enhanced the vibratory motion, which is suited to sperm penetration through the egg jelly specialized for the reproduction of that species in freshwater. The polyclonal antibody against the active site of the SMIS specifically bound to egg coat matrix of R. arboreus. These findings suggest that diversification of amphibian reproductive modes accompanies the specialization of egg coat and the adaptation of sperm motility to penetrate the specialized egg coat, and SMIS acts as the sperm motility enhancer of anurans and urodeles that might facilitate to adaptively optimize sperm motility for allowing the establishment of internal fertilization.

摘要

体内受精确保了四足脊椎动物在陆地上的成功繁殖,尽管这种繁殖方式是如何演化的尚不清楚。在这里,我们通过对一种分离蛋白进行埃德曼降解并随后进行逆转录聚合酶链反应,鉴定出了一个编码精子运动启动物质(SMIS)的新基因,SMIS是有尾目动物日本大鲵体内受精的关键蛋白。SMIS基因编码一个包含半胱氨酸结(CK)基序的150个氨基酸的序列。在任何模式生物的数据库中都没有与SMIS具有高度相似性的基因。SMIS的活性位点位于CK基序第二个环的C末端区域。一个包含活性位点序列的合成肽与精子的中段结合,并启动/增强了日本大鲵精子的圆周运动,这种运动有助于精子穿透专门用于该物种体内受精的卵胶膜。该合成肽与树蛙的整个精子结合并增强了其旋转运动,这种运动适合于推动精子穿过专门用于树栖繁殖的卵膜基质,而它与日本蟾蜍精子的头部和尾部尖端结合,并增强了其振动运动,这种运动适合于精子穿透专门用于该物种在淡水中繁殖的卵胶膜。针对SMIS活性位点的多克隆抗体特异性地与树蛙的卵膜基质结合。这些发现表明,两栖动物繁殖方式的多样化伴随着卵膜的特化以及精子运动对穿透特化卵膜的适应性,并且SMIS作为无尾目和有尾目动物的精子运动增强剂,可能有助于适应性地优化精子运动以实现体内受精。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c719/5007030/f65ce71cb06f/pone.0160445.g001.jpg

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