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腺病毒18型DNA反向末端重复序列中的序列排列

Arrangement of sequences in the inverted terminal repetition of adenovirus 18 DNA.

作者信息

Garon C F, Berry K W, Rose J A

出版信息

Proc Natl Acad Sci U S A. 1975 Aug;72(8):3039-43. doi: 10.1073/pnas.72.8.3039.

Abstract

In contrast to the single-stranded circular molecules produced with denatured DNA from other adenoviruses, there was associated with nearly all circular molecules of adenovirus type 18 a visible, duplex projection. These projections had a mean contour length of 0.31 +/- 0.12 mum, equivalent to approximately 3% of genome length. Individual projections ranged in size from 0.1 to 2 mum. Alkaline sucrose gradient purification of single-stranded molecules did not affect formation of these projections, and treatment of a preparation of circular molecules with Neurospora crassa single-strand specific nucleases yielded 0.34 +/- 0.09 mum duplex fragments. Single-stranded circles did not form if a limited number of nucleotides were removed from the 3' ends of native molecules by Escherichia coli exonuclease III digestion prior to denaturation and annealing. In addition, preformed single-stranded circles could be converted to linear molecules by similar treatment. Based on the formation of specific heteroduplex structures when preparations of native DNA were denatured and reannealed and the absence of branches on linear, single-stranded molecules, we conclude that projections are generated by unusually long, inverted terminal repetitions. The repetitious sequences occur in place of rather than in addition to regular sequences. These data provide direct, visual evidence for the arrangement of bases in the inverted terminal repetition of adenovirus DNA.

摘要

与用其他腺病毒的变性 DNA 产生的单链环状分子不同,18 型腺病毒的几乎所有环状分子都伴有一个可见的双链突出物。这些突出物的平均轮廓长度为 0.31±0.12μm,约相当于基因组长度的 3%。单个突出物的大小范围为 0.1 至 2μm。单链分子的碱性蔗糖梯度纯化不影响这些突出物的形成,用粗糙脉孢菌单链特异性核酸酶处理环状分子制剂可产生 0.34±0.09μm 的双链片段。如果在变性和退火之前通过大肠杆菌核酸外切酶 III 消化从天然分子的 3' 末端去除有限数量的核苷酸,则不会形成单链环。此外,通过类似处理可将预先形成的单链环转化为线性分子。基于天然 DNA 制剂变性和重新退火时特定异源双链结构的形成以及线性单链分子上不存在分支,我们得出结论,突出物是由异常长的反向末端重复序列产生的。重复序列取代了常规序列而不是附加在常规序列上。这些数据为腺病毒 DNA 反向末端重复序列中碱基的排列提供了直接的视觉证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fa0/432914/186c779d558b/pnas00051-0211-a.jpg

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