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Centromeric Histone H3 Is Essential for Vegetative Cell Division and for DNA Elimination during Conjugation in Tetrahymena thermophila

机译:着丝粒组蛋白H3对嗜热四膜虫的营养细胞分裂和接合过程中的DNA消除至关重要

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摘要

The Tetrahymena thermophila CNA1 gene encodes the centromeric H3, Cna1p. Green fluorescent protein (GFP)-tagged Cna1p localizes in micronuclei in dots whose number and behavior during mitosis and conjugation are consistent with centromeres. During interphase, Cna1p-GFP localizes in peripheral dots, suggesting centromeres are associated with the nuclear envelope. Newly synthesized Cna1p-GFP enters micronuclei in mitosis and accumulates in the nucleoplasm. Its deposition at centromeres starts at early S phase and continues through most of S phase. CNA1 is required for vegetative cell growth. Knockdown of CNA1 genes in the somatic macronucleus results in micronuclear DNA loss and delayed chromosome segregation during mitosis. During conjugation, Cna1p-GFP disappears from the centromeres in the developing macronucleus, consistent with centromeric sequences being internal eliminated sequences. Surprisingly, zygotic CNA1 is required for efficient elimination of germ line-specific sequences during development of the new macronuclei but not for the RNA interference pathway, through which sequences are targeted for elimination. Zygotically expressed Cna1p localizes in the spherical structures in which the later stages of DNA elimination occur, and these structures cannot be formed in the absence of zygotic CNA1, suggesting that, in addition to functioning in centromeres, Cna1p may also play a role in organizing the formation of the DNA elimination structures.
机译:嗜热四膜膜CNA1基因编码着丝粒H3 Cna1p。标记绿色荧光蛋白(GFP)的Cna1p位于微核中的点中,其在有丝分裂和结合过程中的数量和行为与着丝粒一致。在相间期,Cna1p-GFP定位在外围点,这表明着丝粒与核被膜有关。新合成的Cna1p-GFP在有丝分裂中进入微核,并在核质中积累。它在着丝粒的沉积始于S期早期,并持续至S期的大部分时间。营养细胞生长需要CNA1。体细胞大核中CNA1基因的敲低导致有核分裂期间微核DNA的丢失和染色体分离的延迟。在缀合过程中,Cna1p-GFP从正在发育的大核中的着丝粒中消失,这与着丝粒序列是内部消除序列一致。出人意料的是,需要合子CNA1才能有效消除新大核发育过程中的种系特异性序列,但不需要RNA干扰途径,通过该途径靶向消除。合子表达的Cna1p定位在球形结构中,在该结构中发生了DNA消除的后期阶段,并且在没有合子CNA1的情况下无法形成这些结构,这表明,除了在着丝粒中起作用外,Cna1p可能还可以在组织DNA消除结构的形成。

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