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H A Lozeron

Publications and source records attributed to H A Lozeron.

13 recordsLinked to original sources

Q-mediated late gene transcription of bacteriophage lambda: RNA start point and RNase III processing sites in vivo.

The location of the RNA start point of in vivo Q-activated late gene RNA of bacteriophage lambda has been determined to be identical to the start point of in vitro 6 S RNA. The 6 S RNA is made early in infection and is efficiently antiterminated by Q. Two RNase III cut sites are located within Q-dependent RNA sequences, 209 and 270 bp from the beginning of the late transcript, and lie on the stem of an inverted repeat which has features in common with previously described RNase III processing sites. This is the third example of RNase III cut sites immediately downstream of transcription termination points in lambda, the others being antiterminated N gene mRNA and int gene mRNA.

Bacteriophage lambda↗

Regulation of transcription and DNA replication of bacteriophage phi 80.

Transcriptional mapping and DNA replication measurements have been used to characterize a series of phi 80 suppressor-sensitive mutants which are defective in genes 15, 14, 16, and 17. These genes are localized within the inner right arm of the vegetative phi 80 DNA genome. The sus326 mutation in gene 15 leads to a decrease in major leftward (pL-att80) RNA levels and to a marked pleiotropic reduction in major rightward RNA synthesis; however, phi 80 DNA synthesis is reduced only moderately (about two-fold). These findings are consistent with the gene 15 product being a positive control regulator that is essential for normal transcriptional development, in particular, beyond a termination signal(s) (tR) located between genes 16 and 17. The sus8 and sus258 mutations (in genes 14 and 16, respectively) lead to severe blockage of both major rightward RNA transcription and phi 80 DNA synthesis. The products of genes 14 and 16 appear to be required for both autonomous phi 80 DNA replication and the "late" transcriptional development. The sus121 mutation in gene 17 reduces the level of "late" major rightward transcription (gene 17-1-13-att'80 segment) by about 10-fold but does not have any apparent effect on the levels of phi 80 DNA synthesis. These profiles identify the product of gene 17 as a "Q-type" positive control regulator for the "late" major rightward RNA. These studies reveal the functional characterization of four genes, the products of which are necessary for the efficient expression of the "early" RNA transcribed segments, autonomous DNA replication, and the production of normal levels of "late" (17-1-13-att'80) RNA synthesis.

Coliphages↗

Effect of cI repressor level on thymineless and spontaneous induction; specificity of lambda RNA transcription.

To determine the role of the cI repressor in induction provoked by thymine deprivation, we have analyzed lambda messenger RNA made during and the effect of cI repressor levels on thymineless induction. During thymineless induction, the l- and r-strand transcription of lambda is restricted to the "early" and "delayed early" RNA. This transcriptional pattern is similar to that reported for lambda mutants defective in DNA synthesis. "Late" r-strand transcription requires the addition of thymine. A decrease (to less than 10% of 0 time) in the amount of exogenous label (3H-uridine) incorporated into total RNA by the time of maximum thymineless induction was observed. Since subsequent burst sizes are not diminished by the thymine deprivation and competition experiments show that the amount of lambda message RNA present is at least as great as that in heat induced lambda cI857 lysogens, this decrease must involve either enlarged uridine pool sizes or decreased entry of label. The introduction into the lambda lysogen of a plasmid (pKB252) carrying the lambda cI gene prevents (1) the thymineless induction of lambda (curing the plasmid restores thymineless induction) and, (2) the appearance of both spontaneously induced cells and free phage. Thus, thymineless induction is dependent on the level of cI repressor and spontaneous induction also appears to be the consequence of lowered repressor levels in lambda lysogens.

Coliphages↗