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T MacNeil

Publications and source records attributed to T MacNeil.

26 records · Page 2Linked to original sources

Analysis of Streptomyces avermitilis genes required for avermectin biosynthesis utilizing a novel integration vector.

An integration vector for gene analysis in Streptomyces has been constructed. This vector replicates in Escherichia coli, and integrates into Streptomyces by homologous recombination between a cloned fragment and the genome. To overcome methylation-specific restriction barriers, an E. coli mutant triply defective in DNA methylation was constructed as a source for the integration plasmids. The frequency of integration of pVE616 derivatives into the Streptomyces avermitilis genome was proportional to the size of the cloned DNA. Derivatives of pVE616, containing fragments from pVE650, a plasmid with a 24-kb insert of S. avermitilis DNA, were used in complementation analyses of seven S. avermitilis mutants defective in glycosylation of avermectin (Av). Three complementation groups, located in a 7-kb region, were identified. Derivatives of pVE616, containing fragments from the 18-kb of DNA adjacent to the glycosylation region, were integrated into an Av producer. Av produced from the integrants was substantially reduced, indicating that the 18 kb also encodes gene products which are involved in Av biosynthesis.

Base Sequence↗

Characterization of the Streptomyces plasmid pVE1.

pVE1 (11.0 kb) was isolated from Streptomyces venezuelae ATCC 14585 and characterized. pVE1 has a broad host range and an apparent copy number of about 100 during exponential growth, rising to 1500 during stationary phase. It is a pock-forming, self-transmissible fertility factor which promotes chromosome recombination in S. lividans at frequencies of about 0.1% per total parents. A detailed restriction map for 15 enzymes was determined. Genes for ThioR (thiostrepton resistance), NeoR (neomycin resistance), and pBR322 derivatives were inserted into pVE1 and the resulting plasmids were analyzed for self-transmissibility and stability. The plasmid has an essential region of approximately 2.5 kb and a region of 1.0-3.6 kb required for conjugation. NeoR and ThioR vectors were constructed with unique HindIII, PvuI, BamHI, EcoRI, BglII, and EcoRV sites available for insertion of foreign DNA.

Chromosome Mapping↗

A poison education program for primary school.

A program with which to teach children in grades 1 and 2 to identify poisons and hazard symbols, to learn where poisons should be stored and to recognize a poisoning and contact a poison control center in the event of a poisoning was developed. Each objective was taught in one 30-minute lesson by the children's school teachers. Evaluation of the approximately 400 children who received the program by pre- and post-tests demonstrated that they learned to identify poisons, to recognize hazard symbols and the telephone number of the local poison control center. The children were also asked to identify their source of knowledge about poisons and cited parents, television and school as their most important sources.

Child↗

Fine-structure deletion map and complementation analysis of the glnA-glnL-glnG region in Escherichia coli.

A total of 399 independent mutants of Escherichia coli were obtained which have point and insertion mutations in the glnA region. Mutants isolated included Gln- and Reg- strains (unable to utilize arginine as a nitrogen source). Mutations were mapped with 73 deletion-containing derivatives of a lambda gln phage. Complementation analysis was performed with lambda gln derivatives containing point mutations which conferred a Gln- or Reg- phenotype. Deletion mapping and complementation analysis assigned 104 mutations in 24 deletion intervals to glnA. Mutations in Reg- strains were assigned to two genes, glnL and glnG. glnL contained 131 mutations in 12 deletion intervals, and glnG contained 164 mutations in 10 deletion intervals. The gene order is glnA-glnL-glnG, transcribed from left to right. Polarity of insertion mutations indicates that glnL and glnG form from left to right. Polarity of insertion mutations indicates that glnL and glnG form an operon. Complementation analysis of glnA insertion mutations with glnL and glnG mutations showed polarity of glnA onto most glnL and glnG alleles, suggesting that transcription of glnA may proceed into the glnL-glnG operon. All mutations analyzed in glnA conferred a Gln- phenotype. However, we also found that over half of the Gln- strains isolated ater chemical mutagenesis contained point mutations in glnG. Mutants which synthesized a high level of glutamine synthetase in the presence of ammonia (GlnC phenotype) were selected as revertants of a strain with a Tn10 insertion in glnD and were mapped with chromosomal deletions. Results indicate that mutations in 12 and 15 examined strains clearly map outside of glnA, probably in glnL.

Chromosome Mapping↗

Bacteriophage mu-induced deletions in a plasmid containing the nif (N2 fixation) genes of Klebsiella pneumoniae.

Five plasmids with insertions of a heat-inducible Mu prophage in a Mu-sensitive and P1-sensitive derivative of plasmid pRD1, a recombinant R factor containing the his-nif region of Klebsiella pneumoniae, were isolated and characterized. In one plasmid containing the Mu prophage integrated at the his-distal end of nif, selection for heat resistance resulted in the generation of deletions extending from the Mu prophage into the nif region. Thirty of these deltions were used to map 26 point mutations in nif.

Bacteriophages↗

Fine-structure mapping and complementation analysis of nif (nitrogen fixation) genes in Klebsiella pneumoniae.

Four hundred and eighty-nine independent Nif- strains containing 260 point, 130 millimicron-induced, and 99 deletion mutations in nif in the Klebsiella pneumoniae chromosome were isolated. Three hundred and ninety insertion and point mutations were mapped with millimicron-induced deletions carried on 44 plasmids derived from pTM4010, a recombinant R factor containing the his-nif region of K. pneumoniae. The 99 chromosomal deletions in the nif region were mapped with 69 derivatives of pTM4010 carrying insertion and point mutations in nif. Complementation analysis between 84 derivatives of pTM4010 carrying nif mutations and Rec- derivatives of the 390 Nif- mutants identified 14 genes. The nif mutations were ordered into 49 deletion groups with a gene order of his...nifQBALFMVSNEKDHJ. Complementation analysis of millimicron-induced, amber, frameshift, and deletion mutations indicates there are five polycistronic and two monocistronic operons: nifQ nifB, nifA nifL, nifF, nifM nifV nifS, nifN nifE, nifK nifD nifH, and nifJ. Transcription is from right to left in all polycistronic operons.

Chromosome Mapping↗

Regulation and characterization of protein products coded by the nif (nitrogen fixation) genes of Klebsiella pneumoniae.

Two hundred and thirty-five Nif- strains of Klebsiella pneumoniae were characterized by two-dimensional polyacrylamide gel electrophoresis. Forty-two of these strains were tested further by in vitro acetylene reduction assays. By these techniques, nine nif-coded polypeptides were identified, and eight of these were assigned to specific nif genes. Nitrogenase component I required nifK and nifD, which coded for the beta and alpha subunits, and nifB, -E, and -N were required for the iron-molybdenum cofactor, which is a part of the active site of nitrogenase. nifH coded for the structural protein of component II, and nifM and nifS products seemed to be necessary for the synthesis of an active component II. There were two genes, nifF and nifJ, that were required for N2 fixation in vivo but not for N2 fixation in vitro. There were at least two cases (nifE and nifN, nifK and nifD) of two proteins that seemed to require each other for stability in vivo. Regulation of N2 fixation is apparently complex, and this is reflected by the assignment of regulatory functions to the gene products of nifA, nifL, nifK, nifD, nifH, and NIFJ.

Bacterial Proteins↗