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线粒体在嗜热四膜虫凋亡样程序性核死亡中的可能作用。

A possible role of mitochondria in the apoptotic-like programmed nuclear death of Tetrahymena thermophila.

作者信息

Kobayashi Takashi, Endoh Hiroshi

机构信息

Division of Life Science, Graduate School of Natural Science and Technology, Kanazawa University, Japan.

出版信息

FEBS J. 2005 Oct;272(20):5378-87. doi: 10.1111/j.1742-4658.2005.04936.x.

Abstract

The ciliated protozoan Tetrahymena has a unique apoptosis-like process, which is called programmed nuclear death (PND). During conjugation, the new germinal micro- and somatic macro-nuclei differentiate from a zygotic fertilized nucleus, whereas the old parental macronucleus degenerates, ensuring that only the new macronucleus is responsible for expression of the progeny genotype. As is the case with apoptosis, this process encompasses chromatin cleavage into high-molecular mass DNA, oligonucleosomal DNA laddering, and complete degradation of the nuclear DNA, with the ultimate outcome of nuclear resorption. Caspase-8- and caspase-9-like activities are involved in the final resorption process of PND. In this report, we show evidence for mitochondrial association with PND. Mitochondria and the degenerating macronucleus were colocalized in autophagosome using two dyes for the detection of mitochondria. In addition, an endonuclease with similarities to mammalian endonuclease G was detected in the isolated mitochondria. When the macronuclei were incubated with isolated mitochondria in a cell-free system, DNA fragments of 150-400 bp were generated, but no DNA ladder appeared. Taking account of the present observations and the timing of autophagosome formation, we conclude that mitochondria might be involved in Tetrahymena PND, probably with the process of oligonucleosomal laddering.

摘要

纤毛原生动物四膜虫具有一种独特的类似凋亡的过程,称为程序性核死亡(PND)。在接合过程中,新的生殖微核和体细胞大核从合子受精核分化而来,而旧的亲代大核退化,确保只有新的大核负责子代基因型的表达。与凋亡情况一样,这个过程包括染色质切割成高分子量DNA、寡核小体DNA梯状条带以及核DNA的完全降解,最终结果是核吸收。半胱天冬酶-8和半胱天冬酶-9样活性参与PND的最终吸收过程。在本报告中,我们展示了线粒体与PND相关的证据。使用两种检测线粒体的染料,线粒体和退化的大核在自噬体中共定位。此外,在分离的线粒体中检测到一种与哺乳动物核酸内切酶G相似的核酸内切酶。当大核在无细胞系统中与分离的线粒体一起孵育时,产生了150 - 400 bp的DNA片段,但没有出现DNA梯状条带。考虑到目前的观察结果和自噬体形成的时间,我们得出结论,线粒体可能参与四膜虫PND,可能与寡核小体梯状条带的过程有关。

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