Specific Inhibition of Cell Division by Colicin E 2 Without Degradation of Deoxyribonucleic Acid in a New Colicin Sensitivity Mutant of Escherichia coli

Author:

Beppu Teruhiko1,Kawabata Kazuo1,Arima Kei1

Affiliation:

1. Laboratory of Fermentation and Microbiology, Department of Agricultural Chemistry, University of Tokyo, Tokyo, Japan

Abstract

A new class of colicin sensitivity mutants of Escherichia coli was isolated whose cell division was specifically inhibited by colicin E 2 without detectable degradation of deoxyribonucleic acid (DNA) at 30 C. The mutant could not form colonies in the presence of colicin E 2 but recovered colony-forming ability by trypsin treatment even after prolonged incubation with the colicin. Addition of colicin E 2 to the exponentially growing mutant inhibited cell division completely but did not induce degradation of DNA into cold acid-soluble materials nor any breakage of DNA strands. Synthesis of DNA in the mutant was not inhibited, and long filamentous cells with multiple nuclear bodies were formed by the action of colicin E 2 . Degradation of ribosomal ribonucleic acid and development of prophage λ, both of which were induced by colicin E 2 in the sensitive cells, did not occur in the mutant. At the elevated temperature, however, the mutant was found to undergo colicin-induced degradation of DNA. No differences in ultraviolet light nor drug sensitivities were observed in the mutant compared to the parent E. coli . The data suggested that colicin E 2 had a specific inhibitory effect on cell division of E. coli that was not a consequence of DNA degradation.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Cited by 24 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Nuclease colicins and their immunity proteins;Quarterly Reviews of Biophysics;2011-11-16

2. Colicin Biology;Microbiology and Molecular Biology Reviews;2007-03

3. Colicin Import into Escherichia coli Cells;Journal of Bacteriology;1998-10

4. Chapter 29 colicin transport, channel formation and inhibition;Handbook of Biological Physics;1996

5. Phosphate efflux through the channels formed by colicins and phage T5 in Escherichia coli cells is responsible for the fall in cytoplasmic ATP.;Journal of Biological Chemistry;1993-08

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