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Loma Linda University

The Deoxythymidine Kinase-Deoxythymidylate Kinase Enzymes in SALMONELLA POTSDAM and ESCHERICHIA COLI K12 Infected with Bacteriophage P3

Abstract

dc:description.abstract

<p>Metabolic alterations in bacterial hosts caused by virus infections have been studied for the last thirty years. The virulent T-even bacteriophages have been studied the most and have been shown to be responsible for the induction of a number of new, virus-specific enzymes that are necessary for successful phage growth. In addition, the activity of other host enzymes present prior to infection has been found to be increased by T-even infection. Temperate bacteriophages, being more difficult to work with than the virulent viruses, have not been studied as extensively. This is especially true for metabolic studies, since most temperate phage infections lead to lysogeny. Recently though, it has been found that the temperate phage lambda is capable of inducing a virus-specific enzyme in its host.</p> <p>The bacteriophage P3 normally grows in <em>Salmonella potsdam</em>. It is also capable of infecting <em>Escherichia coli</em> K12, but undergoes a host-controlled modification of its nucleic acid in the <em>E. coli</em>. The resultant P3 is found to be restricted in its growth in the <em>Salmonella</em> host as a result of this restriction.</p> <p>The deoxythymidine kinase and deoxythymidylate kinase enzyme systems in <em>Salmonella potsdam</em> and <em>Escherichia coli</em> K12, uninfected and infected with bacteriophage P3, were examined. Efforts were made to detect differences in the host enzyme systems themselves and after infection by the bacteriophage.</p> <p>It was found that virus infection produces a drastic change in the DNA production of the hosts. Infection by P3 produced an initial decrease in DNA synthesis, that was followed by an increase which was greater than DNA synthesis in uninfected bacteria. The increase was greatest in the <em>Salmonella</em> host, but was still evident in the <em>E. coli</em>. Inhibition of phage protein synthesis failed to interfere with this alteration in DNA synthesis in either host. P3, therefore, is able to utilize host enzymes present prior to infection for its nucleic acid production.</p> <p>When the deoxythymidine kinase systems were studied, it was found that P3 infection has a different effect in the two hosts. <em>E. coli</em> K12 evidently had sufficient amounts of the enzyme present to supply the needs of P3 DNA production. Infection in <em>Salmonella</em> produced an increase of the deoxythymidine kinase of approximately 30 percent. This increase could be prevented if phage-directed protein synthesis was inhibited. There were no noticeable differences between the enzymes in uninfected and phage-infected bacteria when such features as substrate saturation levels, pH optima, metal ion requirements, and optimum enzyme reaction temperatures were examined. Differences were found to exist between the two host enzymes alone with regard to these same properties.</p> <p>The deoxythymidylate kinase enzyme systems from the two hosts were examined in the same manner as described for deoxythymidine kinase. The results were similar. Differences in enzyme characteristics were found between the host enzymes, but no alteration in characteristics were brought about as a result of phage infection of either host. In a similar manner, P3-infection of <em>Salmonella</em> caused approximately a 50 percent increase in enzymatic activity. No such increase was detected in the <em>E. coli</em> K12 host. This increase could be blocked by inhibiting phage-specific protein synthesis.</p> <p>While it was not possible in this study to detect the mechanism responsible for the observed increases in enzyme levels in the <em>Salmonella</em> host after infection with P3, we were able to show that a temperate bacteriophage may have a definite effect upon the metabolic activities of this host.</p>

Degree

thesis:*
Name thesis:degree_name
Doctor of Philosophy (Medical Science)
Level thesis:degree_level
Dissertation
Discipline thesis:degree_discipline
Microbiology
Year
1974

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Kettering, James D.
Contributors dc:contributor
  • Robert L. Nutter
  • Raymond E. Ryckman
  • Benjamin H. S. Lau
  • Richard E. Beltz
  • Robert L. Schultz

Subjects

dc:subject × 3

Rights

dc:rights
Statement dc:rights
  • This title appears here courtesy of the author, who has granted Loma Linda University a limited, non-exclusive right to make this publication available to the public. The author retains all other copyrights.
Language dc:language
English

Identifiers

dc:identifier.*
Repository record dc:identifier
https://scholarsrepository.llu.edu/etd/1392
OAI identifier oai:identifier
oai:scholarsrepository.llu.edu:etd-2160

Chain of custody

source
Harvested from
Loma Linda University
Base URL
scholarsrepository.llu.edu/do/oai/
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
citation

Kettering, James D.. The Deoxythymidine Kinase-Deoxythymidylate Kinase Enzymes in SALMONELLA POTSDAM and ESCHERICHIA COLI K12 Infected with Bacteriophage P3. Dissertation thesis, 1974. https://scholarsrepository.llu.edu/etd/1392