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Flanking Regulatory Sequences of the Tetrahymena R Deletion Element Determine the Boundaries of DNA Rearrangement

机译:四膜虫R删除元素的侧翼调控序列确定DNA重排的边界。

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摘要

In the ciliate Tetrahymena thermophila, thousands of DNA segments of variable size are eliminated from the developing somatic macronucleus by specific DNA rearrangements. It is unclear whether rearrangement of the many different DNA elements occurs via a single mechanism or via multiple rearrangement systems. In this study, we characterized in vivo cis-acting sequences required for the rearrangement of the 1.1-kbp R deletion element. We found that rearrangement requires specific sequences flanking each side of the deletion element. The required sequences on the left side appear to span roughly a 70-bp region that is located at least 30 bp from the rearrangement boundary. When we moved the location of the left cis-acting sequences closer to the eliminated region, we observed a rightward shift of the rearrangement boundary such that the newly formed deletion junction retained its original distance from this flanking region. Likewise, when we moved the flanking region as much as 500 bp away from the deletion element, the rearrangement boundary shifted to remain in relative juxtaposition. Clusters of base substitutions made throughout this critical flanking region did not affect rearrangement efficiency or accuracy, which suggests a complex nature for this regulatory sequence. We also found that the right flanking region effectively replaced the essential sequences identified on the left side, and thus, the two flanking regions contain sequences of analogous function despite the lack of obvious sequence identity. These data taken together indicate that the R-element flanking regions contain sequences that position the rearrangement boundaries from a short distance away. Previously, a 10-bp polypurine tract flanking the M-deletion element was demonstrated to act from a distance to determine its rearrangement boundaries. No apparent sequence similarity exists between the M and R elements. The functional similarity between these different cis-acting sequences of the two elements is firm support for a common mechanism controlling Tetrahymena rearrangement.
机译:在纤毛虫四膜膜炎中,成千上万个可变大小的DNA片段通过特定的DNA重排而从发育中的体细胞大核中消除。尚不清楚是通过单个机制还是通过多个重排系统发生许多不同DNA元件的重排。在这项研究中,我们表征了1.1-kbp R缺失元件重排所需的体内顺式作用序列。我们发现重排需要缺失序列两侧的特定序列。左侧所需的序列似乎跨越了一个70 bp的区域,该区域距离重排边界至少30 bp。当我们将左顺式作用序列的位置移至更靠近消除区域时,我们观察到重排边界向右移动,以使新形成的缺失连接点保持与该侧翼区域的原始距离。同样,当我们将侧翼区域从缺失元件移开500 bp时,重排边界发生移动,以保持相对并置状态。在整个关键侧翼区域进行的碱基取代簇不影响重排效率或准确性,这表明该调控序列具有复杂的性质。我们还发现,右侧侧翼区域有效地替代了左侧识别出的基本序列,因此,尽管缺少明显的序列同一性,两个侧翼区域仍包含类似功能的序列。这些数据加在一起表明,R-元素侧翼区包含从短距离定位重排边界的序列。以前,M-缺失元件侧翼的10 bp聚嘌呤束被证明可以从远处起作用,以确定其重排边界。 M和R元素之间不存在明显的序列相似性。这两个元件的不同顺式作用序列之间的功能相似性为控制四膜虫重排的通用机制提供了有力的支持。

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