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四膜虫中的RNA依赖性DNA聚合酶活性:有何作用?

RNA-dependent DNA polymerase activity in Paramecium tetraurelia: what for?

作者信息

Katinka M D

出版信息

Eur J Biochem. 1987 Mar 16;163(3):569-75. doi: 10.1111/j.1432-1033.1987.tb10905.x.

Abstract

Protein extracts from the protozoan ciliate Paramecium tetraurelia revealed high levels of RNA-dependent DNA polymerase activity (reverse transcriptase). Stable and constant during the somatic phase of the cell cycle, the reverse transcriptase activity quickly diminished following the completion of the sexual phases of the cell cycle: conjugation and autogamy. The Paramecium reverse transcriptase presented a number of common features with retroviral polymerases: ability to copy synthetic templates such as poly(rCm).oligo(dG) as well as mRNA; sensitivity to various reverse transcriptase inhibitors such as HPA 23, suramin, phosphonoformate and ethidium bromide; insensitivity to the action of other DNA and RNA polymerase inhibitors and, finally, the requirement for divalent cations before the enzyme can function: either magnesium or manganese. Although the reverse transcriptase activity was not proven to be independent from one of the DNA polymerases in paramecia, its high activity predicts a role in the paramecia cell cycle. From what we are able to conceive today two possible roles could be envisaged. Participation in the anlage macronucleus formation: micronuclear sequences are first transcripted and, after rearrangements of the RNA molecules, these are retrotranscribed into the macronuclear DNA molecules or association with retrotransposons that participate in the movement of certain macronuclear sequences into the germ-line micronucleus.

摘要

来自原生动物纤毛虫四膜虫的蛋白质提取物显示出高水平的RNA依赖性DNA聚合酶活性(逆转录酶)。在细胞周期的体细胞阶段,该逆转录酶活性稳定且恒定,但在细胞周期的有性阶段(接合和自体受精)完成后迅速降低。四膜虫逆转录酶与逆转录病毒聚合酶具有许多共同特征:能够复制合成模板,如聚(rCm)·寡聚(dG)以及mRNA;对多种逆转录酶抑制剂敏感,如HPA 23、苏拉明、膦甲酸和溴化乙锭;对其他DNA和RNA聚合酶抑制剂的作用不敏感,最后,在酶发挥功能之前需要二价阳离子:镁或锰。虽然逆转录酶活性尚未被证明在四膜虫中独立于其中一种DNA聚合酶,但其高活性预示着在四膜虫细胞周期中发挥作用。就我们目前所能想到的,可能有两种作用。参与大核原基的形成:微核序列首先被转录,在RNA分子重排后,这些序列被逆转录到 大核DNA分子中,或者与参与某些大核序列向种系微核移动的逆转座子相关联。

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