The Entry Mechanism of Membrane-Containing Phage Bam35 Infecting Bacillus thuringiensis

Author:

Gaidelytė Aušra12,Cvirkaitė-Krupovic Virginija12,Daugelavicius Rimantas12,Bamford Jaana K. H.1,Bamford Dennis H.1

Affiliation:

1. Department of Biological and Environmental Sciences and Institute of Biotechnology, Biocenter 2, P.O. Box 56 (Viikinkaari 5), 00014 University of Helsinki, Finland

2. Department of Biochemistry and Biophysics, Vilnius University, M. K. Ciurlionio 21, 03101 Vilnius, Lithuania

Abstract

ABSTRACT The temperate double-stranded DNA bacteriophage Bam35 infects gram-positive Bacillus thuringiensis cells. Bam35 has an icosahedral protein coat surrounding the viral membrane that encloses the linear 15-kbp DNA genome. The protein coat of Bam35 uses the same assembly principle as that of PRD1, a lytic bacteriophage infecting gram-negative hosts. In this study, we dissected the process of Bam35 entry into discrete steps: receptor binding, peptidoglycan penetration, and interaction with the plasma membrane (PM). Bam35 very rapidly adsorbs to the cell surface, and N -acetyl-muramic acid is essential for Bam35 binding. Zymogram analysis demonstrated that peptidoglycan-hydrolyzing activity is associated with the Bam35 virion. We showed that the penetration of Bam35 through the PM is a divalent-cation-dependent process, whereas adsorption and peptidoglycan digestion are not.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference57 articles.

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