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体外多瘤病毒DNA合成:短DNA链的自我退火特性

In vitro polyoma DNA synthesis: self-annealing properties of short DNA chains.

作者信息

Francke B, Vogt M

出版信息

Cell. 1975 Jun;5(2):205-11. doi: 10.1016/0092-8674(75)90028-8.

Abstract

Short DNA chains, isolated from in vitro pulse-labeled replicating polyoma DNA, exhibit some degree of self-complementarity (28% resistance to S1 nuclease after self-annealing to plateau levels). This level of self-annealing is not increased if short DNA chains present as free single-stranded DNA after extraction are included in the hybridization, excluding a selective loss of chains from one side of the growing fork and supporting a semi-discontinuous mode of chain growth. This mode also applies to restricted synthesis conditions under which a relative excess of short chains is made, since no increase in the self-annealing of such short chains is observed. The self-annealing that can be measured is higher for the faster sedimenting portion (46%) of the short DNA chains than for the slower sedimenting portion (18.5%), indicating that it is most likely due to contaminating continuously growing strands from the other side of the fork. High self-annealing values (up to 60%) are obtained if virus stocks generating defective DNA are used for infection. Restriction endonuclease (Hpall) characterization of such DNA shows evidence for the presence of multiple origins of replication. One of several possible mechanisms is discussed by which replicating defective DNA can generate self-complementary short chains despite a semi-discontinuous mode of replication.

摘要

从体外脉冲标记的复制性多瘤病毒DNA中分离出的短DNA链表现出一定程度的自我互补性(自我退火至平台水平后,对S1核酸酶有28%的抗性)。如果将提取后以游离单链DNA形式存在的短DNA链包含在杂交中,这种自我退火水平不会增加,这排除了从生长叉一侧选择性丢失链的可能性,并支持链生长的半不连续模式。这种模式也适用于在合成条件受限的情况下,即制备了相对过量的短链,因为未观察到此类短链的自我退火增加。短DNA链中沉降较快部分(46%)的可测量自我退火比沉降较慢部分(18.5%)更高,这表明这很可能是由于来自叉另一端的污染性连续生长链所致。如果使用产生缺陷DNA的病毒储备液进行感染,可获得高自我退火值(高达60%)。对这种DNA的限制性内切酶(HpaII)表征显示存在多个复制起点的证据。文中讨论了几种可能的机制之一,即尽管复制方式为半不连续,但复制缺陷DNA如何产生自我互补的短链。

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