Nitrogen sourcing during viral infection of marine cyanobacteria.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 31308237.
- Also identified by DOI 10.1073/pnas.1901856116 and PMC identifier 6681717.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
The building blocks of a virus derived from de novo biosynthesis during infection and/or catabolism of preexisting host cell biomass, and the relative contribution of these 2 sources has important consequences for understanding viral biogeochemistry. We determined the uptake of extracellular nitrogen (N) and its biosynthetic incorporation into both virus and host proteins using an isotope-labeling proteomics approach in a model marine cyanobacterium <i>Synechococcus</i> WH8102 infected by a lytic cyanophage S-SM1. By supplying dissolved N as <sup>15</sup>N postinfection, we found that proteins in progeny phage particles were composed of up to 41% extracellularly derived N, while proteins of the infected host cell showed almost no isotope incorporation, demonstrating that de novo amino acid synthesis continues during infection and contributes specifically and substantially to phage replication. The source of N for phage protein synthesis shifted over the course of infection from mostly host derived in the early stages to more medium derived later on. We show that the photosystem II reaction center proteins D1 and D2, which are auxiliary metabolic genes (AMGs) in the S-SM1 genome, are made de novo during infection in an apparently light-dependent manner. We also identified a small set of host proteins that continue to be produced during infection; the majority are homologs of AMGs in S-SM1 or other viruses, suggesting selective continuation of host protein production during infection. The continued acquisition of nutrients by the infected cell and their utilization for phage replication are significant for both evolution and biogeochemical impact of viruses.
Medical subject headings
- Aquatic Organisms
- Bacterial Proteins
- Bacteriophages
- Nitrogen
- Photosystem II Protein Complex
- Synechococcus
- Viral Proteins