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Rapid Stabilizing Palindrome Rearrangements in Somatic Cells by the Center-Break Mechanism

机译:通过中心断裂机制在体细胞中快速稳定回文重排。

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摘要

DNA palindromes are associated with rearrangement in a variety of organisms. A unique opportunity to examine the impact of a long palindrome in mammals is afforded by the Line 78 strain of mice. Previously it was found that the transgene in Line 78 is likely to be palindromic and that the symmetry of the transgene was responsible for a high level of germ line instability. Here we prove that Line 78 mice harbor a true 15.4-kb palindrome, and through the establishment of cell lines from Line 78 mice we have shown that the palindrome rearranges at the impressive rate of about 0.5% per population doubling. The rearrangements observed to arise from rapid palindrome modification are consistent with a center-break mechanism where double-strand breaks, created through hairpin nicking of an extruded cruciform, are imprecisely rejoined, thus introducing deletions at the palindrome center. Significantly, palindrome rearrangements in somatic tissue culture cells almost completely mirrored the structures generated in vivo in the mouse germ line. The close correspondence between germ line and somatic events indicates the possibility that center-break modification of palindromes is an important mechanism for preventing mutation in both contexts. Permanent cell lines carrying a verified palindrome provide an essential tool for future mechanistic analyses into the consequences of palindromy in the mammalian genome.
机译:DNA回文集与多种生物的重排有关。 Line 78品系小鼠提供了一个独特的机会来检验长期回文对哺乳动物的影响。先前已经发现,品系78中的转基因可能是回文的,并且转基因的对称性造成了高水平的种系不稳定性。在这里,我们证明了Line 78小鼠具有真正的15.4kb回文,通过建立78行小鼠的细胞系,我们发现回文以每人口约0.5%的倍增的惊人速度重排。快速回文修饰引起的重排与中心断裂机制一致,其中通过挤压十字形的发夹切口形成的双链断裂被不精确地重新结合,从而在回文中心引入了缺失。重要的是,体细胞组织培养细胞中的回文重排几乎完全反映了小鼠种系中体内产生的结构。种系与体细胞事件之间的密切对应关系表明,回文的中心断裂修饰是在两种情况下均能防止突变的重要机制。带有已验证回文的永久细胞系为回文在哺乳动物基因组中的后果进行未来的机理分析提供了必要的工具。

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