7-Deazaguanine modifications protect phage DNA from host restriction systems

Author:

Hutinet GeoffreyORCID,Kot Witold,Cui Liang,Hillebrand Roman,Balamkundu Seetharamsingh,Gnanakalai Shanmugavel,Neelakandan Ramesh,Carstens Alexander B.,Fa Lui ChuanORCID,Tremblay Denise,Jacobs-Sera DeborahORCID,Sassanfar Mandana,Lee Yan-Jiun,Weigele PeterORCID,Moineau SylvainORCID,Hatfull Graham F.ORCID,Dedon Peter C.ORCID,Hansen Lars H.,de Crécy-Lagard ValérieORCID

Abstract

AbstractGenome modifications are central components of the continuous arms race between viruses and their hosts. The archaeosine base (G+), which was thought to be found only in archaeal tRNAs, was recently detected in genomic DNA of Enterobacteria phage 9g and was proposed to protect phage DNA from a wide variety of restriction enzymes. In this study, we identify three additional 2′-deoxy-7-deazaguanine modifications, which are all intermediates of the same pathway, in viruses: 2′-deoxy-7-amido-7-deazaguanine (dADG), 2′-deoxy-7-cyano-7-deazaguanine (dPreQ0) and 2′-deoxy-7- aminomethyl-7-deazaguanine (dPreQ1). We identify 180 phages or archaeal viruses that encode at least one of the enzymes of this pathway with an overrepresentation (60%) of viruses potentially infecting pathogenic microbial hosts. Genetic studies with the Escherichia phage CAjan show that DpdA is essential to insert the 7-deazaguanine base in phage genomic DNA and that 2′-deoxy-7-deazaguanine modifications protect phage DNA from host restriction enzymes.

Funder

U.S. Department of Health & Human Services | NIH | National Center for Research Resources

Human Frontier Science Program

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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