Lehrstuhl für Mikrobiologie

Staudtstraße 5
91058 Erlangen

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Gutierrez-Escobar, A.J., Bravo, M.M., Acevedo, O., & Backert, S. (2019). Molecular evolution of the VacA p55 binding domain of Helicobacter pylori in mestizos from a high gastric cancer region of Colombia. PeerJ, 7. https://dx.doi.org/10.7717/peerj.6634
Zarzecka, U., Modrak-Wojcik, A., Figaj, D., Apanowicz, M., Lesner, A., Bzowska, A.,... Skorko-Glonek, J. (2019). Properties of the HtrA Protease From Bacterium Helicobacter pylori Whose Activity Is Indispensable for Growth Under Stress Conditions. Frontiers in Microbiology, 10. https://dx.doi.org/10.3389/fmicb.2019.00961
Neddermann, M., & Backert, S. (2019). Quantification of serine protease HtrA molecules secreted by the foodborne pathogen Campylobacter jejuni. Gut Pathogens, 11. https://dx.doi.org/10.1186/s13099-019-0295-8
Schmidt, A.-M., Escher, U., Mousavi, S., Böhm, M., Backert, S., Bereswill, S., & Heimesaat, M.M. (2019). Protease Activity of Campylobacter jejuni HtrA Modulates Distinct Intestinal and Systemic Immune Responses in Infected Secondary Abiotic IL-10 Deficient Mice. Frontiers in Cellular and Infection Microbiology, 9. https://dx.doi.org/10.3389/fcimb.2019.00079
Harrer, A., Buecker, R., Böhm, M., Zarzecka, U., Tegtmeyer, N., Sticht, H.,... Backert, S. (2019). Campylobacter jejuni enters gut epithelial cells and impairs intestinal barrier function through cleavage of occludin by serine protease HtrA. Gut Pathogens, 11. https://dx.doi.org/10.1186/s13099-019-0283-z
Krueger, M., Richter, P., Strauch, S., Nasir, A., Burkovski, A., Antunes, C.A.,... Lebert, M. (2019). What an Escherichia coli Mutant Can Teach Us About the Antibacterial Effect of Chlorophyllin. Microorganisms, 7(2). https://dx.doi.org/10.3390/microorganisms7020059
Nawaz, Q., Ur Rehman, M.A., Burkovski, A., Schmidt, J., Beltran, A.M., Shahid, A.,... Boccaccini, A.R. (2018). Synthesis and characterization of manganese containing mesoporous bioactive glass nanoparticles for biomedical applications. Journal of Materials Science-Materials in Medicine, 29(5). https://dx.doi.org/10.1007/s10856-018-6070-4
Smet, A., Yahara, K., Rossi, M., Tay, A., Backert, S., Enßer, A.,... Corander, J. (2018). Macroevolution of gastric Helicobacter species unveils interspecies admixture and time of divergence. Isme Journal, 12(10), 2518-2531. https://dx.doi.org/10.1038/s41396-018-0199-5
Weerasekera, D., Stengel, F., Sticht, H., De Mattos Guaraldi, A.L., Burkovski, A., & Azevedo Antunes de Oliveira, C. (2018). The C-terminal coiled-coil domain of Corynebacterium diphtheriae DIP0733 is crucial for interaction with epithelial cells and pathogenicity in invertebrate animal model systems. BMC Microbiology, 18, 106. https://dx.doi.org/10.1186/s12866-018-1247-z
Dominguez-Martin, M.A., Lopez-Lozano, A., Claveria-Gimeno, R., Velazquez-Campoy, A., Seidel, G., Burkovski, A.,... Garcia-Fernandez, J.M. (2018). Differential NtcA responsiveness to 2-oxoglutarate underlies the diversity of C/N balance regulation in Prochlorococcus. Frontiers in Microbiology. https://dx.doi.org/10.3389/fmicb.2017.02641
Albrecht, N., Tegtmeyer, N., Sticht, H., Skorko-Glonek, J., & Backert, S. (2018). Amino-Terminal Processing of Helicobacter pylori Serine Protease HtrA: Role in Oligomerization and Activity Regulation. Frontiers in Microbiology, 9. https://dx.doi.org/10.3389/fmicb.2018.00642
Antunes, C.A., Richardson, E.J., Quick, J., Fuentes-Utrilla, P., Isom, G.L., Goodall, E.C.,... Henderson, I.R. (2018). Complete Closed Genome Sequence of Nontoxigenic Invasive Corynebacterium diphtheriae bv. mitis Strain ISS 3319. Genome Announcements. https://dx.doi.org/10.1128/genomeA.01566-17
Krampen, L., Malmsheimer, S., Grin, I., Trunk, T., Luehrmann, A., De Gier, J.-W., & Wagner, S. (2018). Revealing the mechanisms of membrane protein export by virulence-associated bacterial secretion systems. Nature Communications, 9(1). https://dx.doi.org/10.1038/s41467-018-05969-w
Lehmann, C., Baranska, A., Heidkamp, G., Seeling, M., Soulat, D., Krug, A.,... Dudziak, D. (2018). Antigen targeting of Fc receptors induces strong T cell responses in vivo independent of ITAM signaling but dependent on dendritic cell subset. (pp. 24-25).
Tegtmeyer, N., Wessler, S., Necchi, V., Rohde, M., Harrer, A., Rau, T.,... Backert, S. (2017). Helicobacter pylori Employs a Unique Basolateral Type IV Secretion Mechanism for CagA Delivery. Cell Host & Microbe, 22(4), 552-560.e5. https://dx.doi.org/10.1016/j.chom.2017.09.005
Schäfer, W., Eckart, R., Schmid, B., Cagkoeylue, H., Hof, K., Muller, Y.,... Lührmann, A. (2017). Nuclear trafficking of the anti-apoptotic Coxiella burnetii effector protein AnkG requires binding to p32 and Importin-alpha 1. Cellular Microbiology, 19(1), e12634-.
Stavracakis Peixoto, R., Azevedo Antunes de Oliveira, C., Simpson Louredo, L., Gonçalves Viana, V., dos Santos, C.S., Ribeiro da Silva, J.F.,... Burkovski, A. (2017). Functional characterization of the putative adhesin DIP2093 and its influence on the arthritogenic potential of Corynebacterium diphtheriae. Microbiology-Sgm, 163, 692-701. https://dx.doi.org/10.1099/mic.0.000467
Lind, J., Backert, S., Hoffmann, R., Eichler, J., Yamaoka, Y., Perez-Perez, G.I.,... Tegtmeyer, N. (2016). Systematic analysis of phosphotyrosine antibodies recognizing single phosphorylated EPIYA-motifs in CagA of East Asian-type Helicobacter pylori strains. BMC Microbiology, 16(1), 201. https://dx.doi.org/10.1186/s12866-016-0820-6
Schmidt, T.P., Perna, A.M., Fugmann, T., Böhm, M., Hiss, J., Haller, S.,... Wessler, S. (2016). Identification of E-cadherin signature motifs functioning as cleavage sites for Helicobacter pylori HtrA. Scientific Reports, 6, 23264. https://dx.doi.org/10.1038/srep23264
Schäfer, W., Eckart, R., Schmid, B., Cagköylü, H.A., Hof, K., Muller, Y.,... Lührmann, A. (2016). Nuclear trafficking of the anti-apoptotic Coxiella burnetii effector protein AnkG requires binding to p32 and Importin-α1. Cellular Microbiology, 19(1). https://dx.doi.org/10.1111/cmi.12634

Last updated on 2019-24-04 at 10:30