Slow switchover from host RNA synthesis to bacteriophage RNA synthesis after infection of Escherichia coli with a T4 mutant defective in the bacteriophage T4-induced unfolding of the host nucleoid

Author:

Tigges M A,Bursch C J,Snustad D P

Abstract

Most, if not all, host RNA synthesis was shut off after infection of Escherichia coli strain B/5 with a bacteriophage T4 multiple mutant defective in the abilities to induce (i) unfolding of the host nucleoid (unf-), (ii) nuclear disruption (ndd-), and (iii) host DNA degradation (denA-, denB-). The shutoff of host RNA synthesis and turn-on of phage RNA synthesis were slower after infection of E. coli with unf- phage than after infection with unf+ phage. This delay in the switchover from host RNA synthesis to phage RNA synthesis in unf- infections did not result in a measurable delay in the onset of nuclear disruption, deoxyribonucleoside monophosphate kinase synthesis, or DNA synthesis. unf39 did not complement alc (allows late transcription on cytosine-containing DNA) mutants, supporting the proposal of Sirotkin et al. [Nature (London) 265:28-32, 1977] that alc and unf are possibly the same gene.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference51 articles.

1. Phage T4 infection restricts rRNA synthesis by E. coli RNA polymerase;Baralle F. E.;Mol. Gen. Genet.,1976

2. Etude de l'action des membranes du bacteriophage T2 sur Escherichia coli;Bonifas V.;Biochim. Biophys. Acta,1955

3. A study of the conditions and the mechanism of the diphenylamine reaction for the colorometric estimation of DNA;Burton K.;Biochem. J.,1956

4. A membrane-filter technique for the detection of complementary DNA;Denhardt D. T.;Biochem. Biophys. Res. Commun.,1966

5. Dieche Z. 1955. Color reactions of nucleic acid components p. 285-305. In E. Chargaff and J. N. Davidson (ed.) The nucleic acids: chemistry and biology vol. 1. Academic Press Inc. New York.

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