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锌指蛋白 Zfr1p 特异性定位于接合结,对于嗜热四膜虫的有性发育是必需的。

The zinc finger protein Zfr1p is localized specifically to conjugation junction and required for sexual development in Tetrahymena thermophila.

机构信息

Key Laboratory of Chemical Biology and Molecular Engineering of Ministry of Education, Institute of Biotechnology, Shanxi University, Taiyuan, China.

出版信息

PLoS One. 2012;7(12):e52799. doi: 10.1371/journal.pone.0052799. Epub 2012 Dec 10.

Abstract

Conjugation in Tetrahymena thermophila involves a developmental program consisting of three prezygotic nuclear divisions, pronuclear exchange and fusion, and postzygotic and exconjugant stages. The conjugation junction structure appears during the initiation of conjugation development, and disappears during the exconjugant stage. Many structural and functional proteins are involved in the establishment and maintenance of the junction structure in T. thermophila. In the present study, a zinc finger protein-encoding gene ZFR1 was found to be expressed specifically during conjugation and to localize specifically to the conjugation junction region. Truncated Zfr1p localized at the plasma membrane in ordered arrays and decorated Golgi apparatus located adjacent to basal body. The N-terminal zinc finger and C-terminal hydrophobic domains of Zfr1p were found to be required for its specific conjugation junction localization. Conjugation development of ZFR1 somatic knockout cells was aborted at the pronuclear exchange and fusion conjugation stages. Furthermore, Zfr1p was found to be important for conjugation junction stability during the prezygotic nuclear division stage. Taken together, our data reveal that Zfr1p is required for the stability and integrity of the conjugation junction structure and essential for the sexual life cycle of the Tetrahymena cell.

摘要

在嗜热四膜虫中,衔接涉及一个发育程序,包括三个前合子核分裂、原核交换和融合,以及后合子和出芽阶段。衔接连接结构在衔接发育开始时出现,并在出芽阶段消失。许多结构和功能蛋白参与衔接结构的建立和维持。在本研究中,发现一个锌指蛋白编码基因 ZFR1 特异性地在衔接中表达,并特异性地定位于衔接连接区域。截断的 Zfr1p 定位于有序排列的质膜上,并装饰位于基体附近的高尔基体。发现 Zfr1p 的 N 端锌指和 C 端疏水区对于其特异性衔接连接定位是必需的。ZFR1 体细胞敲除细胞的衔接发育在原核交换和融合衔接阶段中止。此外,发现 Zfr1p 在前期核分裂阶段对于衔接连接稳定性是重要的。总之,我们的数据表明,Zfr1p 对于衔接连接结构的稳定性和完整性是必需的,对于四膜虫细胞的有性生命周期是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/305c/3519685/c19ebb42e4c0/pone.0052799.g001.jpg

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