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- Laakso, Holly A2
- Murphy, Michael EP2
- Pinter, Tyler B2
- Stillman, Martin J2
- Verstraete, Meghan M2
- Adolf, Lea A1
- Brown, Kirstin L1
- Brozyna, Jeremy R1
- Flannagan, Ronald S1
- Heilbronner, Simon1
- Kobylarz, Marek J1
- Kumar, Brijesh1
- Loutet, Slade A1
- Marolda, Cristina L1
- Morales, L Daniela1
- Perez-Borrajero, Cecilia1
- Power, Jeffrey John1
Microbiology
4 Results
- Research ArticleOpen Access
In vivo growth of Staphylococcus lugdunensis is facilitated by the concerted function of heme and non-heme iron acquisition mechanisms
Journal of Biological ChemistryVol. 298Issue 5101823Published online: March 9, 2022- Ronald S. Flannagan
- Jeremy R. Brozyna
- Brijesh Kumar
- Lea A. Adolf
- Jeffrey John Power
- Simon Heilbronner
- and others
Cited in Scopus: 2Staphylococcus lugdunensis has increasingly been recognized as a pathogen that can cause serious infection indicating this bacterium overcomes host nutritional immunity. Despite this, there exists a significant knowledge gap regarding the iron acquisition mechanisms employed by S. lugdunensis, especially during infection of the mammalian host. Here we show that S. lugdunensis can usurp hydroxamate siderophores and staphyloferrin A and B from Staphylococcus aureus. These transport activities all required a functional FhuC ATPase. - ArticleOpen Access
The heme-sensitive regulator SbnI has a bifunctional role in staphyloferrin B production by Staphylococcus aureus
Journal of Biological ChemistryVol. 294Issue 30p11622–11636Published online: June 13, 2019- Meghan M. Verstraete
- L. Daniela Morales
- Marek J. Kobylarz
- Slade A. Loutet
- Holly A. Laakso
- Tyler B. Pinter
- and others
Cited in Scopus: 11Staphylococcus aureus infection relies on iron acquisition from its host. S. aureus takes up iron through heme uptake by the iron-responsive surface determinant (Isd) system and by the production of iron-scavenging siderophores. Staphyloferrin B (SB) is a siderophore produced by the 9-gene sbn gene cluster for SB biosynthesis and efflux. Recently, the ninth gene product, SbnI, was determined to be a free l-serine kinase that produces O-phospho-l-serine (OPS), a substrate for SB biosynthesis. Previous studies have also characterized SbnI as a DNA-binding regulatory protein that senses heme to control sbn gene expression for SB synthesis. - MicrobiologyOpen Access
SbnI is a free serine kinase that generates O-phospho-l-serine for staphyloferrin B biosynthesis in Staphylococcus aureus
Journal of Biological ChemistryVol. 293Issue 16p6147–6160Published online: February 26, 2018- Meghan M. Verstraete
- Cecilia Perez-Borrajero
- Kirstin L. Brown
- David E. Heinrichs
- Michael E.P. Murphy
Cited in Scopus: 10Staphyloferrin B (SB) is an iron-chelating siderophore produced by Staphylococcus aureus in invasive infections. Proteins for SB biosynthesis and export are encoded by the sbnABCDEFGHI gene cluster, in which SbnI, a member of the ParB/Srx superfamily, acts as a heme-dependent transcriptional regulator of the sbn locus. However, no structural or functional information about SbnI is available. Here, a crystal structure of SbnI revealed striking structural similarity to an ADP-dependent free serine kinase, SerK, from the archaea Thermococcus kodakarensis. - MicrobiologyOpen Access
A Heme-responsive Regulator Controls Synthesis of Staphyloferrin B in Staphylococcus aureus
Journal of Biological ChemistryVol. 291Issue 1p29–40Published online: November 3, 2015- Holly A. Laakso
- Cristina L. Marolda
- Tyler B. Pinter
- Martin J. Stillman
- David E. Heinrichs
Cited in Scopus: 31Staphylococcus aureus possesses a multitude of mechanisms by which it can obtain iron during growth under iron starvation conditions. It expresses an effective heme acquisition system (the iron-regulated surface determinant system), it produces two carboxylate-type siderophores staphyloferrin A and staphyloferrin B (SB), and it expresses transporters for many other siderophores that it does not synthesize. The ferric uptake regulator protein regulates expression of genes encoding all of these systems.