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嗜血杆菌转化中序列特异性DNA摄取

Sequence-specific DNA uptake in Haemophilus transformation.

作者信息

Sisco K L, Smith H O

出版信息

Proc Natl Acad Sci U S A. 1979 Feb;76(2):972-6. doi: 10.1073/pnas.76.2.972.

Abstract

Haemophilus cells efficiently take up Haemophilus DNA from the medium during transformation but do not take up other DNAs. To study the mechanism of this specificity we have cloned an 8.1-kilobase (kb) fragment of H. parainfluenzae DNA in the escherichia coli--pBR322 host--vector system and reisolated the DNA fragment for use as a defined probe. The 5'32P end-labeled 8.1-kb DNA is efficiently absorbed by competent Haemophilus cells whereas vector DNA present in the mixture is not, implying that the 8.1-kb DNA contains sequence-specific recognition sites that are needed for DNA uptake. Absorbed DNA can be recovered from cells as a 32P-labeled duplex of unaltered size for several minutes after uptake. We have determined the number and location of uptake sites in the 8.1-kb DNA by constructing a restriction endonuclease cleavage map and assaying fragments for uptake. Only two small fragments retain the ability to be absorbed. These fragments, 120 and 140 base pairs long, are 3.8 kb apart on the 8.1-kb fragment. We assume that each of these fragments contains a short common sequence, perhaps 8--12 base pairs long, that is the actual recognition site. We have shown by DNA competition assays, with the 8.1-kb DNA as a standard, that about 600 copies of the uptake sites are present in the Haemophilus genome.

摘要

流感嗜血杆菌细胞在转化过程中能高效地从培养基中摄取流感嗜血杆菌的DNA,但不摄取其他DNA。为了研究这种特异性的机制,我们在大肠杆菌-pBR322宿主-载体系统中克隆了副流感嗜血杆菌DNA的一个8.1千碱基(kb)的片段,并重新分离出该DNA片段用作特定探针。5'32P末端标记的8.1-kb DNA能被感受态流感嗜血杆菌细胞有效吸收,而混合物中存在的载体DNA则不能,这意味着8.1-kb DNA含有DNA摄取所需的序列特异性识别位点。摄取后几分钟内,吸收的DNA可以作为大小未改变的32P标记双链体从细胞中回收。我们通过构建限制性内切酶切割图谱并检测片段的摄取情况,确定了8.1-kb DNA中摄取位点的数量和位置。只有两个小片段保留了被吸收的能力。这些片段长度分别为120和140个碱基对,在8.1-kb片段上相距3.8 kb。我们假设这些片段中的每一个都包含一个短的共同序列,可能长8-12个碱基对,这就是实际的识别位点。我们以8.1-kb DNA为标准,通过DNA竞争试验表明,流感嗜血杆菌基因组中存在约600个摄取位点拷贝。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf85/383110/c03495148891/pnas00002-0432-a.jpg

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