A system for shotgun DNA sequencing

Система для секвенирования ДНК методом случайных фрагментов
Joachim Messing, Roberto Crea, Peter H. Seeburg
1981-01-01

M13mp7 phagechain-termination sequencingmultipurpose cloning siterestriction endonucleasesshotgun DNA sequencing
A multipurpose cloning site has been introduced into the gene for beta-galactosidase (beta-D-galactosidegalactohydrolase, EC 3.21.23) on the single-stranded DNA phage M13mp2 (Gronenborn, B. and Messing, J., (1978) Nature 272, 375-377) with the use of synthetic DNA. The site contributes 14 additional codons and does not affect the ability of the lac gene product to undergo intracistronic complementation. Two restriction endonuclease cleavage sites in the viral gene II were removed by single base-pair mutations. Using the new phage M13mp7, DNA fragments generated by cleavage with a variety of different restriction endonucleases can be cloned directly. The nucleotide sequences of the cloned DNAs can be determined rapidly by DNA synthesis using chain terminators and a synthetic oligonucleotide primer complementary to 15 bases preceeding the new array of restriction sites.
1
A multipurpose cloning site was inserted into the M13mp2 beta-galactosidase gene using synthetic DNA, adding 14 codons without disrupting intracistronic complementation.
2
Cloned DNA sequences can be determined rapidly by chain-termination synthesis using a synthetic primer complementary to the 15 bases preceding the restriction-site array.
3
The engineered phage M13mp7 permits direct cloning of DNA fragments generated by diverse restriction endonucleases.
4
Two restriction endonuclease sites in viral gene II were eliminated through single-base-pair mutations, enabling improved cloning-site utility.

M13mp7 single-stranded DNA phage carrying cloned restriction-endonuclease-generated DNA fragments

Direct cloning and rapid nucleotide sequencing of restriction-generated DNA fragments using chain-termination DNA synthesis

Publication Details
Publication Date
1981-01-01
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Joachim Messing
Roberto Crea
Peter H. Seeburg
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%