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Role of Histone Deacetylation in Developmentally Programmed DNA Rearrangements in Tetrahymena thermophila

机译:组蛋白去乙酰化在嗜热四膜虫的发育程序化DNA重排中的作用。

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In Tetrahymena, as in other ciliates, development of the somatic macronucleus during conjugation involves extensive and reproducible rearrangements of the germ line genome, including chromosome fragmentation and excision of internal eliminated sequences (IESs). The molecular mechanisms controlling these events are poorly understood. To investigate the role that histone acetylation may play in the regulation of these processes, we treated Tetrahymena cells during conjugation with the histone deacetylase inhibitor trichostatin A (TSA). We show that TSA treatment induces developmental arrests in the early stages of conjugation but does not significantly affect the progression of conjugation once the mitotic divisions of the zygotic nucleus have occurred. Progeny produced from TSA-treated cells were examined for effects on IES excision and chromosome breakage. We found that TSA treatment caused partial inhibition of excision of five out of the six IESs analyzed but did not affect chromosome breakage at four different sites. TSA treatment greatly delayed in some cells and inhibited in most the excision events in the developing macronucleus. It also led to loss of the specialized subnuclear localization of the chromodomain protein Pdd1p that is normally associated with DNA elimination. We propose a model in which underacetylated nucleosomes mark germ line-limited sequences for excision.
机译:与其他纤毛虫一样,在四膜虫中,体细胞大核的发育涉及种系基因组的广泛且可复制的重排,包括染色体片段化和内部消除序列(IESs)的切除。控制这些事件的分子机制了解甚少。为了研究组蛋白乙酰化在调节这些过程中的作用,我们在与组蛋白脱乙酰基酶抑制剂曲古抑菌素A(TSA)结合的过程中处理了四膜虫细胞。我们显示,TSA治疗在接合的早期阶段诱导发育停滞,但是一旦合子核的有丝分裂分裂发生,不会显着影响接合的进展。检查了由TSA处理的细胞产生的后代对IES切除和染色体断裂的影响。我们发现,TSA处理导致部分抑制了分析的六个IES中的五个的切除,但并未影响四个不同位点的染色体断裂。 TSA治疗在某些细胞中大大延迟,并且在发育中的大核的大多数切除事件中均受到抑制。它也导致通常与DNA消除相关的染色体结构域蛋白Pdd1p的专门亚核定位丢失。我们提出了一个模型,其中欠乙酰化的核小体标记生殖细胞系限制序列进行切除。

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