Julia Steiger
University of Cologne
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Publication
Featured researches published by Julia Steiger.
Journal of Biological Chemistry | 2007
Paola Zigrino; Julia Steiger; Jay W. Fox; Stefanie Löffek; Alexander Schild; Roswitha Nischt; Cornelia Mauch
ADAM-9 belongs to a family of transmembrane, disintegrin-containing metalloproteinases involved in protein ectodomain shedding and cell-cell and cell-matrix interactions. The aim of this study was to analyze the expression of ADAM-9 in skin and to assess the role of this proteolytic/adhesive protein in skin physiology. In normal skin, ADAM-9 expression was detected in both the epidermis and dermis and in vitro in keratinocytes and fibroblasts. Here we report that ADAM-9 functions as a cell adhesion molecule via its disintegrin-cysteine-rich domain. Using solid phase binding assays and antibody inhibition experiments, we demonstrated that the recombinant disintegrin-cysteine-rich domain of ADAM-9 specifically interacts with the β1 integrin subunit on keratinocytes. This was corroborated by co-immunoprecipitation. In addition, engagement of integrin receptors by the disintegrin-cysteine-rich domain resulted in ERK phosphorylation and increased MMP-9 synthesis. Treatment with the ERK inhibitor PD98059 inhibited MMP-9 induction. Furthermore, the presence of the soluble disintegrin-cysteine-rich domain did not interfere with cell migration on different substrates. However, keratinocytes adhering to the immobilized disintegrin-cysteine-rich domain showed increased motility, which was partially due to the induction of MMP-9 secretion. In summary, our results indicate that the ADAM-9 adhesive domain plays a role in regulating the motility of cells by interaction with β1 integrins and modulates MMP synthesis.
Journal of Immunology | 2016
Julia Steiger; A. Stephan; Megan S. Inkeles; Susan Realegeno; Heiko Bruns; Kröll P; de Castro Kroner J; Andrea Sommer; Marina Batinica; Pitzler L; Rainer Kalscheuer; P. Hartmann; Georg Plum; Steffen Stenger; Matteo Pellegrini; Brachvogel B; Robert L. Modlin; Mario Fabri
Glucocorticoids are extensively used to treat inflammatory diseases; however, their chronic intake increases the risk for mycobacterial infections. Meanwhile, the effects of glucocorticoids on innate host responses are incompletely understood. In this study, we investigated the direct effects of glucocorticoids on antimycobacterial host defense in primary human macrophages. We found that glucocorticoids triggered the expression of cathelicidin, an antimicrobial critical for antimycobacterial responses, independent of the intracellular vitamin D metabolism. Despite upregulating cathelicidin, glucocorticoids failed to promote macrophage antimycobacterial activity. Gene expression profiles of human macrophages treated with glucocorticoids and/or IFN-γ, which promotes induction of cathelicidin, as well as antimycobacterial activity, were investigated. Using weighted gene coexpression network analysis, we identified a module of highly connected genes that was strongly inversely correlated with glucocorticoid treatment and associated with IFN-γ stimulation. This module was linked to the biological functions autophagy, phagosome maturation, and lytic vacuole/lysosome, and contained the vacuolar H+-ATPase subunit a3, alias TCIRG1, a known antimycobacterial host defense gene, as a top hub gene. We next found that glucocorticoids, in contrast with IFN-γ, failed to trigger expression and phagolysosome recruitment of TCIRG1, as well as to promote lysosome acidification. Finally, we demonstrated that the tyrosine kinase inhibitor imatinib induces lysosome acidification and antimicrobial activity in glucocorticoid-treated macrophages without reversing the anti-inflammatory effects of glucocorticoids. Taken together, we provide evidence that the induction of cathelicidin by glucocorticoids is not sufficient for macrophage antimicrobial activity, and identify the vacuolar H+-ATPase as a potential target for host-directed therapy in the context of glucocorticoid therapy.
Immunology | 2016
A. Stephan; Marina Batinica; Julia Steiger; Pia Hartmann; Frank Zaucke; Wilhelm Bloch; Mario Fabri
As part of the innate host response neutrophils release neutrophil extracellular traps (NETs), protein:DNA complexes that contain a number of antimicrobial peptides (AMPs), such as cathelicidin. Human cathelicidin in its active form, LL37, has potent antimicrobial activity against bacteria. However, whether LL37 derived from NETs contributes to antimicrobial activity against intracellular pathogens remains unclear. Here, we report that NETs induced by mycobacteria contain cathelicidin. Human macrophages internalized NET‐bound cathelicidin, which is transported to lysosomal compartments. Furthermore, using a model of in vitro‐generated LL37:DNA complexes we found that LL37 derived from such complexes attacks mycobacteria in macrophage phagolysosomes resulting in antimicrobial activity. Taken together, our results suggest a mechanism by which LL37 in complex with DNA contributes to host defence against intracellular bacteria in human macrophages.
Journal of The European Academy of Dermatology and Venereology | 2017
Marina Batinica; A. Stephan; Julia Steiger; I. Tantcheva-Poόr; Sabine A. Eming; Mario Fabri
1 Rousset-Jablonski C, Thalabard JC, Gompel A. Tamoxifen contraindicated in women with hereditary angioedema? Ann Oncol 2009; 20: 1281–1282. 2 Roldan Sevilla T GFM, Roldan Rincon A, Herrero Ambrosio A. The use of C1 esterase inhibitor in long term prophylaxis of recurrent acute hereditary angioedema exacerbated by tamoxifen. Eur J Clin Pharmacy 2013; 15: 124–127. 3 Grumach AS, Stieber C, Veronez CL et al. Homozygosity for a factor XII mutation in one female and one male patient with hereditary angiooedema. Allergy 2016; 71: 119–123. 4 Moreno AS, Valle SOR, Levy S et al. Coagulation factor XII gene mutation in Brazilian families with hereditary angioedema with normal C1 inhibitor. Int Arch Allergy Immunol 2015; 166: 114–120. 5 Bork K, Wulff K, Witzke G, Hardt J. Hereditary angioedema with normal C1-INH with versus without specific F12 gene mutations. Allergy 2015; 70: 1004–1012. 6 Groom GV, Griffiths K. Effect of the anti-oestrogen tamoxifen on plasma levels of luteinizing hormone, follicle-stimulating hormone, prolactin, oestradiol and progesterone in normal pre-menopausal women. J Endocrinol 1976; 70: 421–428. 7 Sherman BM, Chapler FK, Crickard K, Wycoff D. Endocrine consequences of continuous antiestrogen therapy with tamoxifen in premenopausal women. J Clin Invest 1979; 64: 398–404. 8 Golder MP, Phillips ME, Fahmy DR et al. Plasma hormones in patients with advanced breast cancer treated with tamoxifen. Eur J Cancer 1976; 12: 719–723. 9 Wilking N, Carlstrom K, Skoldefors H, Theve NO, Wallgren A. Effects of tamoxifen on the serum levels of oestrogens and adrenocortical steroids in postmenopausal breast cancer patients. Acta Chir Scand 1982; 148: 345–349. 10 Willis KJ, London DR, Ward HW, Butt WR, Lynch SS, Rudd BT. Recurrent breast cancer treated with the antioestrogen tamoxifen: correlation between hormonal changes and clinical course. Br Med J 1977; 1: 425–428.
The Journal of Allergy and Clinical Immunology | 2018
Juliana de Castro Kroner; Kristin Knoke; David M. Kofler; Julia Steiger; Mario Fabri
Glucocorticoids (GCs) trigger human Th17 differentiation, a process in which IL-2 regulation plays a mechanistic role. Th17 memory cells from healthy donors are similarly favored by GCs, but this is not observed in psoriatic patients.
European Journal of Cell Biology | 2006
Stefanie Löffek; Paola Zigrino; Julia Steiger; Peter Kurschat; Hans Smola; Cornelia Mauch
Journal of Investigative Dermatology | 2018
Philipp Kröll; Kristin Knoke; Julia Steiger; Mario Fabri
Journal of Investigative Dermatology | 2018
J. de Castro Kroner; Julia Steiger; Mario Fabri
/data/revues/00916749/unassign/S0091674918311266/ | 2018
Juliana de Castro Kroner; Kristin Knoke; David M. Kofler; Julia Steiger; Mario Fabri
Journal of Investigative Dermatology | 2016
Julia Steiger; Mario Fabri