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噬菌体T5 DNA独特的双链片段,由切口处优先的剪切诱导断裂产生。

Unique double-stranded fragments of bacteriophage T5 DNA resulting from preferential shear-induced breakage at nicks.

作者信息

Hayward G S

出版信息

Proc Natl Acad Sci U S A. 1974 May;71(5):2108-12. doi: 10.1073/pnas.71.5.2108.

Abstract

Nicks within one strand of the bacteriophage T5 DNA molecule act as " weak points" for a novel kind mechanical breakage that can be utilized for "dissecting" the genome. The products from sheared T5(+) DNA include five unique double-stranded segments of the molecule and various combinations of adjacent segments. These specific fragments are not obtained after repair of the nicks with DNA ligase (EC 6.5.1.1). The duplex fragments and most of their single-stranded components have been separated, identified, and mapped by means of agarose gel electrophoresis. Even the complementary strands of the unique fragments separate in agarose gels; hence, there are now three useful classes of DNA fragments available from T5: the natural r-strand fragments, their complements from the normally intact l strand, and the corresponding duplex segments. By summing the apparent molecular weights of their single-stranded components, the unique duplex fragments from T5(+) DNA can be assigned molecular weights of approximately 6 x 10(6) (A), 8 x 10(6) (B), 11 x 10(6) (C), 27 x 10(6) (D), and 30 x 10(6) (E) from left to right along the genome. The most abundant overlapping fragments are segments AB (14 x 10(6)) and ABC (26 x 10(6)). Differences in the number and relative positions of nicks within two distinct groups of heatstable deletion mutants [represented by T5st(O) and T5b3] account for the large differences observed in their patterns of breakage products.

摘要

噬菌体T5 DNA分子单链上的切口充当了一种新型机械断裂的“弱点”,可用于“剖析”基因组。剪切后的T5(+) DNA产物包括该分子的五个独特双链片段以及相邻片段的各种组合。用DNA连接酶(EC 6.5.1.1)修复切口后无法获得这些特定片段。通过琼脂糖凝胶电泳已分离、鉴定并绘制了双链片段及其大部分单链成分。即使是独特片段的互补链在琼脂糖凝胶中也会分离;因此,现在有三类可用于研究的T5 DNA片段:天然的r链片段、来自正常完整l链的互补片段以及相应的双链片段。通过计算其单链成分的表观分子量,T5(+) DNA的独特双链片段从基因组左端到右端可被赋予大约6×10⁶(A)、8×10⁶(B)、11×10⁶(C)、27×10⁶(D)和30×10⁶(E)的分子量。最丰富的重叠片段是AB(14×10⁶)和ABC(26×10⁶)。两组热稳定缺失突变体[以T5st(O)和T5b3为代表]单链切口数量和相对位置的差异,导致其断裂产物模式存在很大差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87a2/388396/430e1a1adfe3/pnas00058-0532-a.jpg

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