Dr. M.M.S.M. (Marc) Wösten

Dr. M.M.S.M. (Marc) Wösten

Universitair docent
Infectieziekten & Immunologie
030 253 4791
m.wosten@uu.nl

Publicaties

2025

Wetenschappelijke publicaties

Afsharnia, A., Nauta, A., Groeneveld, A., Fernandez-Ciruelos, B., Asadpoor, M., Folkerts, G., Braber, S., & Wösten, M. (2025). Identification of metabolic pathways modulated by GAM and NGAM in the inhibition of Staphylococcus aureus biofilm formation. Frontiers in Microbiology, 16, Article 1689343. [DOI] [Portal]
Afsharnia, A., Cai, Y., Nauta, A., Groeneveld, A., Folkerts, G., Wösten, M. M. S. M., & Braber, S. (2025). In Vivo Evidence on the Emerging Potential of Non-Digestible Oligosaccharides as Therapeutic Agents in Bacterial and Viral Infections. Nutrients, 17(6), Article 1068. [DOI] [Portal]
Baztarrika, I., Martinez-Malaxetxebarria, I., Martínez-Ballesteros, I., & Wösten, M. MSM. (2025). Human Toll-like receptor activation by pathogenic Arcobacter species. Microbial Pathogenesis, 198, Article 107189. [DOI] [Portal]

2024

Wetenschappelijke publicaties

Alvarado-Melendez, E. I., de Jong, H., Hartman, J. E. M., Ong, J. Y., Wösten, M. M. S. M., & Wennekes, T. (2024). Glycoengineering with neuraminic acid analogs to label lipooligosaccharides and detect native sialyltransferase activity in gram-negative bacteria. Glycobiology, 34(10). [DOI] [Portal]
Baztarrika, I., Wösten, M. M. S. M., Alonso, R., Martínez-Ballesteros, I., & Martinez-Malaxetxebarria, I. (2024). Genes involved in the adhesion and invasion of Arcobacter butzleri. Microbial Pathogenesis, 193, Article 106752. [DOI] [Portal]

2023

Wetenschappelijke publicaties

Mavrogeni, M. E., Asadpoor, M., Judernatz, J. H., van Ark, I., Wösten, M. M. S. M., Strijbis, K., Pieters, R. J., Folkerts, G., & Braber, S. (2023). Protective Effects of Alginate and Chitosan Oligosaccharides against Clostridioides difficile Bacteria and Toxin. Toxins, 15(10), 1-23. Article 586. [DOI]
Cao, X., van Putten, J. P. M., & Wösten, M. M. S. M. (2023). Campylobacter jejuni benefits from the bile salt deoxycholate under low-oxygen condition in a PldA dependent manner. Gut Microbes, 15(2), Article 2262592. [DOI] [Repository]
Pacífico, C., Wösten, M. M. S. M., & Hilbert, F. (2023). Low-Level Tetracycline Resistance Gene tet(O)_3 in Campylobacter jejuni. Antibiotics, 12(3), 1-10. Article 426. [DOI]
Cao, X., van Putten, J. P. M., & Wösten, M. M. S. M. (2023). Biological functions of bacterial lysophospholipids. Advances in Microbial Physiology, 82, 129-154. [DOI]

2022

Wetenschappelijke publicaties

Cao, X., van de Lest, C. H. A., Huang, L. Z. X., van Putten, J. P. M., & Wösten, M. M. S. M. (2022). Campylobacter jejuni permeabilizes the host cell membrane by short chain lysophosphatidylethanolamines. Gut Microbes, 14(1), 1-10. Article 2091371. [DOI] [Repository]
de Jong, H., Moure, M. J., Hartman, J. E. M., Bosman, G. P., Ong, J. Y., Bardoel, B. W., Boons, G.-J., Wosten, M. M. S. M., & Wennekes, T. (2022). Selective Exoenzymatic Labeling of Lipooligosaccharides of Neisseria gonorrhoeae with α2,6-Sialoside Analogues. ChemBioChem, 23(19), Article e202200340. [DOI] [Repository]
de Jong, H., Wösten, M. M. S. M., & Wennekes, T. (2022). Sweet impersonators: Molecular mimicry of host glycans by bacteria. Glycobiology, 32(1), 11-22. [DOI] [Repository]

2021

Wetenschappelijke publicaties

Jeucken, A., Zhou, M., Wösten, M. M. S. M., & Brouwers, J. F. (2021). Control of n-Butanol Induced Lipidome Adaptations in E. coli. Metabolites, 11(5), 1-14. Article 286. [DOI] [Repository]
Meng, X., Boons, G.-J., Wösten, M., & Wennekes, T. (2021). Metabolic Labeling of Legionaminic acid in Flagellin Glycosylation of Campylobacter jejuni Identifies Maf4 as a Putative Legionaminyl Transferase. Angewandte Chemie-International Edition, 60(47), 24811-24816. [DOI] [Repository]

2020

Wetenschappelijke publicaties

Cao, X., Brouwers, J. F. H. M., van Dijk, L., van de Lest, C. H. A., Parker, C. T., Huynh, S., van Putten, J. P. H., Kelly, D. J., & Wösten, M. M. S. M. (2020). Dataset of the phospholipidome and transcriptome of Campylobacter jejuni under different growth conditions. Data in Brief, 33, Article 106349. [DOI] [Repository]
Luijkx, Y., Bleumink, N., Jiang, J., Overkleeft, H. S., Wösten, M., Strijbis, K., & Wennekes, T. (2020). Bacteroides fragilis fucosidases facilitate growth and invasion of Campylobacter jejuni in the presence of mucins. Cellular Microbiology, 22(12), Article e13252. [DOI] [Repository]
Cao, X., Brouwers, J. F. H. M., van Dijk, L., van de Lest, C. H. A., Parker, C. T., Huynh, S., van Putten, J. P. M., Kelly, D. J., & Wösten, M. M. S. M. (2020). The Unique Phospholipidome of the Enteric Pathogen Campylobacter jejuni: Lysophosholipids Are Required for Motility at Low Oxygen Availability. Journal of Molecular Biology, 432(19), 4244-5258. [DOI] [Repository]

2019

Wetenschappelijke publicaties

van der Stel, A.-X., & Wösten, M. M. S. M. (2019). Regulation of respiratory pathways in Campylobacterota: a review. Frontiers in Microbiology, 10, Article 1719. [DOI] [Repository]

2018

Wetenschappelijke publicaties

van der Stel, A.-X., van de Lest, C. H. A., Huynh, S., Parker, C. T., van Putten, J. P., & Wösten, M. M. S. M. (2018). Catabolite repression in Campylobacter jejuni correlates with intracellular succinate levels. Environmental Microbiology, 20(4), 1374-1388. [DOI] [Repository]

2017

Wetenschappelijke publicaties

Radomska, K. A., Wösten, M. M. S. M., Ordoñez, S. R., Wagenaar, J. A., & van Putten, J. P. M. (2017). Importance of Campylobacter jejuni FliS and FliW in Flagella Biogenesis and Flagellin Secretion. Frontiers in Microbiology, 8, Article 1060. [DOI] [Repository]
van der Stel, A.-X., Boogerd, F. C., Huynh, S., Parker, C. T., van Dijk, L., van Putten, J. P. M., & Wösten, M. M. S. M. (2017). Generation of the membrane potential and its impact on the motility, ATP production and growth in Campylobacter jejuni. Molecular Microbiology, 105(4), 637–651. [DOI] [Repository]
Wösten, M. M. S. M., van de Lest, C. H. A., van Dijk, L., & van Putten, J. P. M. (2017). Function and Regulation of the C4-Dicarboxylate Transporters in Campylobacter jejuni. Frontiers in Microbiology, 8, Article 174. [DOI] [Repository]

2016

Wetenschappelijke publicaties

Martinez-Malaxetxebarria, I., Muts, R., van Dijk, L., Parker, C., Miller, W., Huynh, S., Gaastra, W., van Putten, J. P. M., Fernandez-Astrorga, A., & Wösten, M. M. S. M. (2016). Regulation of Energy Metabolism by the Extracytoplasmic Function (ECF) σ factors of Arcobacter butzleri. In Stress and Environmental Regulation of Gene Expression and Adaptation in Bacteria (Vol. 1, pp. 311-320). Wiley-Blackwell.
van der Stel, A., & Wösten, M. M. S. M. (2016). Campylobacter jejuni γ-glutamyltranspeptidase Activity Assay. Bio-protocol, 6(5), 1-6. [DOI] [Repository]
Lin, C.-S., Tsai, Y.-H., Chang, C.-J., Tseng, S.-F., Wu, T.-R., Lu, C.-C., Wu, T.-S., Lu, J.-J., Horng, J.-T., Martel, J., Ojcius, D. M., Lai, H.-C., Young, J. D., Andrews, S. C., Robinson, A. K., Rodriguez-Quinones, F., Touati, D., Yeom, J., Imlay, J. A., ... Neilands, J. B. (2016). An iron detection system determines bacterial swarming initiation and biofilm formation. Scientific Reports, 6, 1-12. Article 36747. [DOI] [Repository]
Radomska, K. A., Vaezirad, M. M., Verstappen, K. M., Wösten, M. M. S. M., Wagenaar, J. A., & van Putten, J. P. M. (2016). Chicken Immune Response after In Ovo Immunization with Chimeric TLR5 Activating Flagellin of Campylobacter jejuni. PLoS One, 11(10), Article e0164837. [DOI] [Repository]
Radomska, K. A., Ordonez Alvarez, S., Wösten, M. M. S. M., Wagenaar, J. A., & van Putten, J. P. M. (2016). Feedback control of Campylobacter jejuni flagellin levels through reciprocal binding of FliW to flagellin and the global regulator CsrA. Molecular Microbiology, 102(2), 207–220. [DOI] [Repository]

2015

Wetenschappelijke publicaties

van der Stel, A.-X., van Mourik, A., Łaniewski, P., van Putten, J. P. M., Jagusztyn-Krynicka, E. K., & Wosten, M. (2015). The Campylobacter jejuni RacRS two-component system activates the glutamate synthesis by directly upregulating γ-glutamyltranspeptidase (GGT). Frontiers in Microbiology, 6, Article 567. [DOI] [Repository]
van der Stel, A.-X., van Mourik, A., Heijmen-van Dijk, L., Parker, C. T., Kelly, D. J., van de Lest, C. H. A., van Putten, J. P. M., & Wosten, M. (2015). The Campylobacter jejuni RacRS system regulates fumarate utilization in a low oxygen environment. Environmental Microbiology, 17(4), 1049-1064. [DOI] [Repository]

2014

Wetenschappelijke publicaties

Grabowska, A. D., Wywiał, E., Dunin-Horkawicz, S., Łasica, A. M., Wosten, M. M. S. M., Nagy-Staroń, A., Godlewska, R., Bocian-Ostrzycka, K., Pieńkowska, K., Łaniewski, P., Bujnicki, J. M., van Putten, J. P. M., & Jagusztyn-Krynicka, E. K. (2014). Functional and bioinformatics analysis of two Campylobacter jejuni homologs of the thiol-disulfide oxidoreductase, DsbA. PLoS One, 9(9), Article e106247. [DOI] [Repository]

2013

Wetenschappelijke publicaties

Bleumink-Pluym, N. M. C., van Alphen, L. B., Bouwman, L. I., Wösten, MM., & van Putten, J. P. M. (2013). Identification of a functional type VI secretion system in Campylobacter jejuni conferring capsule polysaccharide sensitive cytotoxicity. PLoS Pathogens, 9(5), e1003393. [DOI] [Repository]

2012

Wetenschappelijke publicaties

Martinez-Malaxetxebarria, I., Muts, R., van Dijk, L., Parker, C. T., Miller, W. G., Huynh, S., Gaastra, W., van Putten, J. P. M., Fernandez-Astorga, A., & Wösten, M. M. S. M. (2012). Regulation of Energy Metabolism by the Extracytoplasmic Function (ECF) s Factors of Arcobacter butzleri. PLoS One, 7(9), Article e44796. [DOI] [Repository]

2010

Wetenschappelijke publicaties

van Mourik, A., Steeghs, L. J. J. M., van Laar, J., Meiring, H. D., Hamstra, H. J., van Putten, J. P. M., & Wösten, M. M. S. M. (2010). Altered linkage of hydroxyacyl chains in lipid A of Campylobacter jejuni reduces TLR4 activation and antimicrobial resistance. Journal of Biological Chemistry, 285(21), 15828-15836. [DOI]
Wösten, M. M. S. M., van Dijk, L., Parker, C. T., Guilhabert, M. R., van der Meer-Janssen, Y. P., Wagenaar, J. A., & van Putten, J. P. M. (2010). Growth phase-dependent activation of the DccRS regulon of Campylobacter jejuni. Journal of Bacteriology, 192(11), 2729-2736. [DOI] [Repository]
Wosten, M. M. S. M., van Dijk, L., Veenendaal, A. K. J., de Zoete, M. R., Bleumink-Pluijm, N. M. C., & van Putten, J. P. M. (2010). Temperature-dependent FlgM/FliA complex formation regulates Campylobacter jejuni flagella length. Molecular Microbiology, 75(6), 1577-1591. [DOI]

2009

Wetenschappelijke publicaties

van Putten, J. P. M., van Alphen, L., Wosten, M. M. S. M., & de Zoete, M. R. (2009). Molecular mechanisms of Campylobacter infection. In Molecular Mechanisms of Bacterial Infection via the Gut (pp. 197-229). (Current Topics in Microbiology and Immunology; Vol. 337). Springer. [DOI]
Gaasbeek, E. J., Wagenaar, J. A., Guilhabert, M. R., Wösten, M. M. S. M., van Putten, J. P. M., van der Graaf-van Bloois, L., Parker, C. T., & van der Wal, F. J. (2009). A DNase encoded by integrated element CJIE1 inhibits natural transformation of Campylobacter jejuni. Journal of Bacteriology, 191(7), 2296-2306. [DOI] [Repository]

2008

Wetenschappelijke publicaties

van Alphen, L. B., Bleumink-Pluym, N. M. C., Rochat, K. D., van Balkom, B. W. M., Wösten, M. M. S. M., & van Putten, J. P. M. (2008). Active migration into the subcellular space precedes Campylobacter jejuni invasion of epithelial cells. Cellular Microbiology, 10(1), 53-66. [DOI]
Wösten, M. M. S. M., van Mourik, A., & van Putten, J. P. M. (2008). Regulation of Genes in Campylobacter jejuni. In I. Nachamkin, C. M. Szymanski, & M. J. Blaser (Eds.), Campylobacter 3rd Edition (pp. 611-626). ASM PRESS.
Ho, H., Lipman, L. J. A., Wösten, M. M. S. M., van Asten, A. J., & Gaastra, W. (2008). Arcobacter spp. possess two very short flagellins of which FlaA is essential for motility. FEMS Immunology and Medical Microbiology, 53(1), 85-95. [Repository]
van Mourik, A., Bleumink-Pluym, N. M. C., van Dijk, L., van Putten, J. P. M., & Wosten, M. M. S. M. (2008). Functional analysis of a Campylobacter jejuni alkaline phosphatase secreted via the Tat export machinery. Microbiology, 154(Pt 2), 584-592. [DOI]

2007

Wetenschappelijke publicaties

Miller, W. G., Parker, C. T., Rubenfield, M., Mendz, G. L., Wösten, M. M. S. M., Ussery, D. W., Stolz, J. F., Binnewies, T. T., Hallin, P. F., Wang, G., Malek, J. A., Rogosin, A., Stanker, L. H., & Mandrell, R. E. (2007). The complete genome sequence and analysis of the Epsilon proteobacterium Arcobacter butzleri. PLoS One, 2(12), e1358.

2006

Wetenschappelijke publicaties

Nishino, K., Hsu, F. F., Turk, J., Cromie, M. J., Wösten, M. M. S. M., & Groisman, E. A. (2006). Identification of the lipopolysaccharide modifications controlled by the Salmonella PmrA/PmrB system mediating resistance to Fe(III) and Al(III). Molecular Microbiology, 61(3), 645-654. [Repository]
Wösten, MM., Parker, C. T., van Mourik, A., Guilhabert, M. R., van Dijk, L., & van Putten, J. P. M. (2006). The Campylobacter jejuni PhosS/PhosR operon represents a non-classical phosphate-sensitive two-component system. Molecular Microbiology, 62(1), 278-291. [DOI]

2004

Wetenschappelijke publicaties

Wösten, MM., Wagenaar, J. A., & van Putten, J. P. M. (2004). The FlgS/FlgR two-component signal transduction system regulates the fla regulon in Campylobacter jejuni. Journal of Biological Chemistry, 279(16), 16214-16222. [DOI]

2003

Wetenschappelijke publicaties

Starcic Erjavec, M., Zgur-Bertok, D., Jordi, B. J. A. M., Wösten, M. M. S. M., Gaastra, W., & van Putten, J. P. M. (2003). The cyclic AMP-cyclic AMP receptor protein complex regulates activity of the traJ promoter of the Escherichia coli conjugative plasmid pRK100. Journal of Bacteriology, 185(5), 1616-1623. [DOI]