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Role of Micronucleus-Limited DNA in Programmed Deletion of mse2.9 during Macronuclear Development of Tetrahymena thermophila

机译:微核限制的DNA在嗜热四膜虫大核发育过程中程序删除mse2.9中的作用。

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摘要

Extensive programmed DNA rearrangements occur during the development of the somatic macronucleus from the germ line micronucleus in the sexual cycle of the ciliated protozoan Tetrahymena thermophila. Using an in vivo processing assay, we analyzed the role of micronucleus-limited DNA during the programmed deletion of mse2.9, an internal eliminated sequence (IES). We identified a 200-bp region within mse2.9 that contains an important cis-acting element which is required for the targeting of efficient programmed deletion. Our results, obtained with a series of mse2.9-based chimeric IESs, led us to suggest that the cis-acting elements in both micronucleus-limited and macronucleus-retained flanking DNAs stimulate programmed deletion to different degrees depending on the particular eliminated sequence. The mse2.9 IES is situated within the second intron of the micronuclear locus of the ARP1 gene. We show that the expression of ARP1 is not essential for the growth of Tetrahymena. Our results also suggest that mse2.9 is not subject to epigenetic regulation of DNA deletion, placing possible constraints on the scan RNA model of IES excision.
机译:在纤毛虫原生动物四膜虫的有性循环中,从种系微核发育出体细胞大核的过程中,发生了广泛的程序化DNA重排。使用体内加工分析,我们分析了mse2.9(内部消除序列(IES))的程序性删除过程中微核限制的DNA的作用。我们在mse2.9中鉴定出一个200 bp的区域,其中包含重要的顺式作用元件,这是靶向有效程序化缺失所必需的。我们的结果是通过一系列基于mse2.9的嵌合IES获得的,这使我们建议,微核限制和大核保留的侧翼DNA中的顺式作用元件可根据特定消除的序列不同程度地刺激程序性缺失。 mse2.9 IES位于ARP1基因微核基因座的第二个内含子内。我们表明,ARP1的表达并不是四膜虫的生长所必需的。我们的结果还表明,mse2.9不受DNA缺失的表观遗传调控,可能对IES切除的扫描RNA模型施加了限制。

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