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Biomedical subjects

A Landy

Publications and source records attributed to A Landy.

88 records · Page 5Linked to original sources

Promoter-dependent transcription of tRNAITyr genes using DNA fragments produced by restriction enzymes.

Two DNA fragments prepared from the transducing bacteriophage strains ø80psuIII+ and ø80hpsuIII+,- by digestion with restriction enzymes contain one tyrosine tRNA gene (suIII+) and two tyrosine tRNA genes (suIII+, su-) in tandem, respectively, a single promoter in both cases, and some additional DNA regions at the two ends of both. Using these fragments, we have studied characteristics of the promoter-dependent transcription of the tyrosine tRNA genes. The promoter-dependent transcripts were shown to correspond to the expected tRNA precursors. Exposure of the transcript from the single gene fragment to an S100 extract from Escherichia coli gave, via intermediates, 4S material which was active in enzymatically accepting tyrosine and contained some modified bases.

Adenosine Triphosphate↗

Generation of specific repeated fragments of eukaryote DNA.

Calf-thymus DNA, hydrolyzed with a site-specific endonuclease from Haemophilus influenzae Rd, yields 12 discrete bands on polyacrylamide-agarose gels. These range in size from 7.5 x 10(4) to 2 x 10(6) daltons, and they represent about 5% of the total DNA with individual fragments comprising 0.1-1.5%. The various DNA segments are repeated between 1500 and 220,000 times per haploid genome. Whereas the wide range of reiteration frequencies suggests different origins for some of the fragments, the bias in fragment densities in CsCl and in Ag(+)-Cs(2)SO(4) toward those of known satellite DNAs suggests similar origins for some of them. Models for the possible origin of the DNA fragments can be grouped into three distinct, experimentally distinguishable, classes.

Animals↗

Resolution of synthetic att-site Holliday structures by the integrase protein of bacteriophage lambda.

Site-specific recombination of the bacteriophage lambda genome into and out of the host bacterial genome is postulated to involve the formation of Holliday structure intermediates by reciprocal single-strand exchanges. Synthetic analogues of the predicted recombination intermediates are resolved in vitro by the protein product of the lambda int gene. Some of the structural features and reaction conditions for this genetic recombination can now be defined.

Bacteriophage lambda↗