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雄性配子特异性融合蛋白HAP2在一种具有七种性别的纤毛虫中的功能。

Function of the male-gamete-specific fusion protein HAP2 in a seven-sexed ciliate.

作者信息

Cole Eric S, Cassidy-Hanley Donna, Fricke Pinello Jennifer, Zeng Hong, Hsueh Marion, Kolbin Daniel, Ozzello Courtney, Giddings Thomas, Winey Mark, Clark Theodore G

机构信息

Biology Department, St. Olaf College, Northfield, MN 55057, USA.

Department of Microbiology and Immunology, Cornell University, Ithaca, NY 14853, USA.

出版信息

Curr Biol. 2014 Sep 22;24(18):2168-2173. doi: 10.1016/j.cub.2014.07.064. Epub 2014 Aug 21.

Abstract

HAP2, a male-gamete-specific protein conserved across vast evolutionary distances, has garnered considerable attention as a potential membrane fusogen required for fertilization in taxa ranging from protozoa and green algae to flowering plants and invertebrate animals [1-6]. However, its presence in Tetrahymena thermophila, a ciliated protozoan with seven sexes or mating types that bypasses the production of male gametes, raises interesting questions regarding the evolutionary origins of gamete-specific functions in sexually dimorphic species. Here we show that HAP2 is expressed in all seven mating types of T. thermophila and that fertility is only blocked when the gene is deleted from both cells of a mating pair. HAP2 deletion strains of complementary mating types can recognize one another and form pairs; however, pair stability is compromised and membrane pore formation at the nuclear exchange junction is blocked. The absence of pore formation is consistent with previous studies suggesting a role for HAP2 in gamete fusion in other systems. We propose a model in which each of the several hundred membrane pores established at the conjugation junction of mating Tetrahymena represents the equivalent of a male/female interface, and that pore formation is driven on both sides of the junction by the presence of HAP2. Such a model supports the idea that many of the disparate functions of sperm and egg were shared by the "isogametes" of early eukaryotes and became partitioned to either male or female sex cells later in evolution.

摘要

HAP2是一种在漫长进化历程中保守的雄性配子特异性蛋白,作为一种潜在的膜融合蛋白,它在从原生动物、绿藻到开花植物和无脊椎动物等多种生物的受精过程中发挥作用,因而备受关注[1 - 6]。然而,它在嗜热四膜虫(一种具有七种性别或交配型的纤毛原生动物,其受精过程不涉及雄配子的产生)中的存在,引发了关于两性异形物种中配子特异性功能进化起源的有趣问题。在此我们表明,HAP2在嗜热四膜虫的所有七种交配型中均有表达,并且只有当配对双方细胞中的该基因都被敲除时,生育能力才会受到阻碍。互补交配型的HAP2敲除菌株能够相互识别并形成配对;然而,配对稳定性受到影响,核交换连接处的膜孔形成被阻断。膜孔形成的缺失与先前的研究一致,这些研究表明HAP2在其他系统的配子融合中发挥作用。我们提出了一个模型,即在交配的嗜热四膜虫接合连接处形成的数百个膜孔中的每一个都相当于一个雄/雌界面,并且膜孔的形成是由接合处两侧HAP2的存在驱动的。这样一个模型支持了以下观点:精子和卵子的许多不同功能在早期真核生物的“同形配子”中是共享的,并且在进化后期被分配到了雄性或雌性生殖细胞中。

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