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Biomedical subjects

T R Gingeras

Publications and source records attributed to T R Gingeras.

49 records · Page 3Linked to original sources

Cloned restriction/modification system from Pseudomonas aeruginosa.

DNA fragments from Pseudomonas aeruginosa carrying the PaeR7 restriction/modification genes have been cloned in the plasmid vector pBR322 and propagated in Escherichia coli. A subclone (pPAORM3.8) has been constructed that contains the complete restriction/modification system on a 3.8-kilobase DNA fragment. Digestion of the pPAORM3.8 plasmid with nuclease BAL-31 has yielded two types of clones. One type contains an active methylase gene but no active endonuclease gene; such clones will modify the DNA but not restrict the growth of incoming phage in vivo. The second type contains an active endonuclease gene but no active methylase gene, as judged both by in vivo tests and by the activity of the cell extracts in vitro. Although extracts of cells containing these plasmids display restriction endonuclease activity, these bacteria are unable to restrict the growth of incoming phage. Furthermore, chromosomal and phage DNA isolated from these host cells are not protected against cleavage by PaeR7 in vitro. The properties of PaeR7 endonuclease and methylase enzymes have also been examined. The PaeR7 restriction endonuclease recognizes and cleaves the sequence C decreased T-C-G-A-G, as does Xho I. However, there exists a canonical Xho I site at 26.5% on the adenovirus 2 genome which is totally refractory to PaeR7 cleavage but is cut by Xho I. Under conditions of low salt, high glycerol, and high enzyme concentrations, a "PaeR7" activity is found that is similar to that observed for EcoRI. Finally, evidence is presented that the PaeR7 methylase modifies the adenine residue within the recognition sequence.

Base Sequence↗

ScrFI: a new sequence-specific endonuclease from Streptococcus cremoris.

A novel sequence-specific endonuclease has been isolated from Streptococcus cremoris F. ScrFI recognises the sequence: (formula; see text) and cleaves as indicated by the arrow ( ). It is the first enzyme to recognise this sequence and the first endonuclease reported from the lactic streptococci used in dairy fermentations.

Base Sequence↗

Nucleotide sequences from the adenovirus-2 genome.

The sequence of 15,441 nucleotides from the adenovirus-2 genome has been determined and includes the regions between coordinates 0-32% and 89-100%. These regions contain the early (E) transcription units E1A, E1B, E2B, and E4, the genes for polypeptides IVa2 and IX, the COOH terminus of fiber polypeptide, as well as the two virus-associated RNAs and the leader sequences for the major late mRNAs. Analysis of tryptic peptides from the terminal protein and its precursor (Smart, J. E., and Stillman, B. W. (1982) J. Biol. Chem. 257, 13499-13506) has allowed the gene for the precursor terminal protein to be positioned between coordinates 28.0 and 23.5 on the 1-strand. A minimum Mr = 74,500 is predicted. A second, longer open reading frame is also found on the 1-strand between coordinates 22.9 and 14.2 and predicts a polypeptide of at least Mr = 120,000. Many open reading frames longer than 10,000 exist within this sequence although less than half of them can be assigned to previously characterized polypeptides. As with other viral genomes, the available coding information is highly compressed. Intergenic distances are very short and examples are found of genes which overlap either on the same strand or the complementary strand.

Adenoviruses, Human↗

A semi-automated method for the reading of nucleic acid sequencing gels.

A collection of computer programs is described which permit automatic entering of nucleotide sequence data directly from an autoradiograph into a computer. This collection, called DIGITPAD, makes use of a digitizing tablet for the data entry and allows the rapid and accurate transfer of the sequence into the computer.

Base Sequence↗

Two new restriction endonucleases from Proteus vulgaris.

Two novel sequence-specific endonucleases have been isolated from Proteus vulgaris, ATCC 13315. PvuI recognizes the sequence: 5' C G A T decrease C G 3' 3' G C increase T A G C 5' and PvuII recognizes the sequence: 5' C A G decrease C T G 3' 3' G T C increase G A C 5' and cleave as indicated by the arrow (decrease). PvuI is an isoschizomer of XorII, RshI, and XniI. No enzyme with the specificity of PvuII has been described previously.

Animals↗

Steps toward computer analysis of nucleotide sequences.

Advances in recombinant DNA technology have allowed the isolation of large numbers of biologically interesting fragments of DNA. Concomitant improvements in methods for nucleic acid sequencing have led many investigators to characterize their clones by sequencing them. This has resulted in the accumulation of such large amounts of sequence data that computer-assisted methods, with programs directed toward the manipulation of nucleic acid sequences, have become indispensable during the collection and analysis of that data.

Autoanalysis↗

Computer programs for the assembly of DNA sequences.

A collection of user-interactive computer programs is described which aid in the assembly of DNA sequences. This is achieved by searching for the positions of overlapping common nucleotide sequences within the blocks of sequence obtained as primary data. Such overlapping segments are then melded into one continuous string of nucleotides. Strategies for determining the accuracy of the sequence being analyzed and reducing the error rate resulting from the manual manipulation of sequence data are discussed. Sequences mapping from 97.3 to 100% of the Ad2 virus genome were used to demonstrate the performance of these programs.

Adenoviridae↗

A computer assisted method for the determination of restriction enzyme recognifion sites.

A computer program has been developed which aids in the determination of restriction enzyme recognition sequences. This is achieved by cleaving DNAs of known sequence with a restriction endonuclease and comparing the fragmentation pattern with a computer-generated set of patterns. The feasibility of this approach has been tested using fragmentation patterns of 0X174 DNA produced by enzymes of both known and unknown specificity. Recognition sequences are predicted for two restriction endonucleases (BbvI and SfaNI) using this method. In addition, recognition sequences are predicted for two other new enzymes (PvuI and MstI) using another computer-assisted method.

Base Sequence↗