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The Conjugation-Specific Die5 Protein Is Required for Development of the Somatic Nucleus in both Paramecium and Tetrahymena

机译:草履虫和四膜虫的体细胞核发育需要特定于缀合的Die5蛋白。

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摘要

Development in ciliated protozoa involves extensive genome reorganization within differentiating macronuclei, which shapes the somatic genome of the next vegetative generation. Major events of macronuclear differentiation include excision of internal eliminated sequences (IESs), chromosome fragmentation, and genome amplification. Proteins required for these events include those with homology throughout eukaryotes as well as proteins apparently unique to ciliates. In this study, we identified the ciliate-specific Defective in IES Excision 5 (DIE5) genes of Paramecium tetraurelia (PtDIE5) and Tetrahymena thermophila (TtDIE5) as orthologs that encode nuclear proteins expressed exclusively during development. Abrogation of PtDie5 protein (PtDie5p) function by RNA interference (RNAi)-mediated silencing or TtDie5p by gene disruption resulted in the failure of developing macronuclei to differentiate into new somatic nuclei. Tetrahymena ΔDIE5 cells arrested late in development and failed to complete genome amplification, whereas RNAi-treated Paramecium cells highly amplified new macronuclear DNA before the failure in differentiation, findings that highlight clear differences in the biology of these distantly related species. Nevertheless, IES excision and chromosome fragmentation failed to occur in either ciliate, which strongly supports that Die5p is a critical player in these processes. In Tetrahymena, loss of zygotic expression during development was sufficient to block nuclear differentiation. This observation, together with the finding that knockdown of Die5p in Paramecium still allows genome amplification, indicates that this protein acts late in macronuclear development. Even though DNA rearrangements in these two ciliates look to be quite distinct, analysis of DIE5 establishes the action of a conserved mechanism within the genome reorganization pathway.
机译:纤毛原生动物的发展涉及到分化大核内的广泛基因组重组,从而塑造了下一代营养植物体的基因组。宏观核分化的主要事件包括内部消除序列(IESs)的切除,染色体片段化和基因组扩增。这些事件所需的蛋白质包括在整个真核生物中具有同源性的蛋白质,以及纤毛明显的蛋白质。在这项研究中,我们确定了草履虫(PtDIE5)和嗜热四膜膜虫(IES)的IES Excision 5(DIE5)基因的纤毛虫特异缺陷基因是直向同源物,它们编码在发育中专门表达的核蛋白。 RNA干扰(RNAi)介导的沉默导致的PtDie5蛋白(PtDie5p)功能丧失或基因破坏导致的TtDie5p丧失导致发育中的大核无法分化为新的体细胞核。四膜虫ΔDIE5细胞在发育后期被捕,未能完成基因组扩增,而经RNAi处理的草履虫细胞在分化失败之前高度扩增了新的大核DNA,这一发现凸显了这些远缘物种的生物学差异。然而,在任何纤毛虫中均未发生IES切除和染色体断裂,这强烈支持Die5p在这些过程中起关键作用。在四膜虫,发育过程中合子表达的丧失足以阻止核分化。该观察结果以及在草履虫中敲除Die5p仍可进行基因组扩增的发现,表明该蛋白在大核发育后期起作用。即使这两个纤毛虫中的DNA重排看起来非常不同,对DIE5的分析仍能在基因组重组途径中建立保守机制的作用。

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