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Vragel, G.

Publications and source records attributed to Vragel, G..

2 recordsLinked to original sources

Control of pili synthesis and putrescine homeostasis in Escherichia coli

Polyamines are biologically ubiquitous cations that bind to nucleic acids, ribosomes, and phospholipids and, thereby, modulate numerous processes, including surface motility in Escherichia coli. We characterized the metabolic pathways that contribute to polyamine-dependent control of surface motility in the commonly used strain W3110 and the transcriptome of a mutant lacking a putrescine synthetic pathway that was required for surface motility. Genetic analysis showed that surface motility required type 1 pili, the simultaneous presence of two independent putrescine anabolic pathways, and modulation by putrescine transport and catabolism. An immunological assay for FimA--the major pili subunit, reverse transcription quantitative PCR of fimA, and transmission electron microscopy confirmed that pili synthesis required putrescine. Comparative RNAseq analysis of a wild type and {Delta}speB mutant which exhibits impaired pili synthesis showed that the latter had fewer transcripts for pili structural genes and for fimB which codes for the phase variation recombinase that orients the fim operon promoter in the ON phase, although loss of speB did not affect the promoter orientation. Results from the RNAseq analysis also suggested (a) changes in transcripts for several transcription factor genes that affect fim operon expression, (b) compensatory mechanisms for low putrescine which implies a putrescine homeostatic network, and (c) decreased transcripts of genes for oxidative energy metabolism and iron transport which a previous genetic analysis suggests may be sufficient to account for the pili defect in putrescine synthesis mutants. We conclude that pili synthesis requires putrescine and putrescine concentration is controlled by a complex homeostatic network that includes the genes of oxidative energy metabolism.

microbiology↗

Murine Gammaherpesvirus 68 Efficiently Infects Myeloid Cells Resulting In An Atypical, Restricted Form Of Infection

The gammaherpesviruses establish a lifelong infection, with the cellular outcome of infection intimately regulated by cell type. Though myeloid cells are an early infection target, infection results in widely divergent outcomes without a clear explanation. Here we use murine gammaherpesvirus 68 to demonstrate that macrophages are readily infectable, resulting in three divergent infection outcomes dictated by viral and host factors. Infection in vivo and in a cell culture model results in a high frequency of viable cells characterized by restricted viral transcription and unexpected transcription of the ORF75 locus, with rare cells initiating but failing to complete lytic replication. Restricted infection can be fully converted to productive lytic replication by pre-treatment with the host cytokine IL-4. Finally, infection with a high viral dose also results in productive infection, but triggers increased cell death. These studies demonstrate stepwise regulation of virus infection and identify virus and host factors that dictate divergent outcomes in a single cell type.

microbiology↗