TY - JOUR A1 - Seher, Axel A1 - Nickel, Joachim A1 - Mueller, Thomas D. A1 - Kneitz, Susanne A1 - Gebhardt, Susanne A1 - Meyer ter Vehn, Tobias A1 - Schlunck, Guenther A1 - Sebald, Walter T1 - Gene expression profiling of connective tissue growth factor (CTGF) stimulated primary human tenon fibroblasts reveals an inflammatory and wound healing response in vitro JF - Molecular Vision N2 - Purpose: The biologic relevance of human connective tissue growth factor (hCTGF) for primary human tenon fibroblasts (HTFs) was investigated by RNA expression profiling using affymetrix (TM) oligonucleotide array technology to identify genes that are regulated by hCTGF. Methods: Recombinant hCTGF was expressed in HEK293T cells and purified by affinity and gel chromatography. Specificity and biologic activity of hCTGF was confirmed by biosensor interaction analysis and proliferation assays. For RNA expression profiling HTFs were stimulated with hCTGF for 48h and analyzed using affymetrix (TM) oligonucleotide array technology. Results were validated by real time RT-PCR. Results: hCTGF induces various groups of genes responsible for a wound healing and inflammatory response in HTFs. A new subset of CTGF inducible inflammatory genes was discovered (e.g., chemokine [C-X-C motif] ligand 1 [CXCL1], chemokine [C-X-C motif] ligand 6 [CXCL6], interleukin 6 [IL6], and interleukin 8 [IL8]). We also identified genes that can transmit the known biologic functions initiated by CTGF such as proliferation and extracellular matrix remodelling. Of special interest is a group of genes, e.g., osteoglycin (OGN) and osteomodulin (OMD), which are known to play a key role in osteoblast biology. Conclusions: This study specifies the important role of hCTGF for primary tenon fibroblast function. The RNA expression profile yields new insights into the relevance of hCTGF in influencing biologic processes like wound healing, inflammation, proliferation, and extracellular matrix remodelling in vitro via transcriptional regulation of specific genes. The results suggest that CTGF potentially acts as a modulating factor in inflammatory and wound healing response in fibroblasts of the human eye. KW - Bone morphogenetic protein-2 KW - Smooth-muscle-cells KW - Myofibroblast differentiation KW - TGF-beta KW - CYR61 KW - Proliferation KW - Mechanisms KW - Apoptosis KW - Receptor KW - Cancer Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-140189 VL - 17 IS - 08. Okt ER - TY - THES A1 - Schneider, Matthias T1 - Characterisation of Metalloprotease-mediated EGFR Signal Transactivation after GPCR Stimulation T1 - Charakterisierung der EGFR Signaltransaktivierung nach GPCR Stimulation N2 - In the context of metalloprotease-mediated transactivation of the epidermal growth factor receptor, different monoclonal antibodies against ADAM17 / TACE were characterized for their ability to block the sheddase. Activity of some of them was observed at doses between 2µg/mL and 10µg/mL. Kinetic analyses showed their activity starting at around 30 minutes. In cellular assays performed with the antibodies, especially upon treatment of cells with sphingosine-1-phosphate a reduction in proliferation was observed with some candidates. Moreover this study provides potential new roles for ß-Arrestins. Their involvement in the triple membrane-passing signal pathway of EGFR transactivation was shown. Furthermore, in overexpressing cellular model systems, an interaction between ADAM17 and ß-Arrestin1 could be observed. Detailed analysis discovered that phosphorylation of ß-Arrestin1 is crucial for this interaction. Additionally, the novel mechanism of UV-induced EGFR transactivation was extended to squamous cell carcinoma. The mechanism happens in a dose dependent manner and requires a metalloprotease to shed the proligand Amphiregulin. The involvement of both ADAM9 and ADAM17, being the metalloproteases responsible for this cleavage, was shown for SCC9 cells. N2 - Im Rahmen dieser Arbeit wurden verschiedene monoklonale Antikörper gegen ADAM17 / TACE im Kontext der Metalloprotease-vermittelten Transaktivierung des Epidermalen Wachstumsfaktors auf ihre Fähigkeit hin untersucht, die Proteaseaktivität zu unterdrücken. Einige von Ihnen zeigten inhibitorische Aktivität bei Konzentrationen zwischen 2µg/ml und 10µg/ml. Die Untersuchung der Zeitabhängigkeit ihrer Wirkungsweise ergab eine Aktivität ab 30 Minuten Vorinkubation. In zellulären Versuchen konnte eine Verminderung der Proliferation besonders nach Stimulation mit Sphingosin-1-Phosphat gezeigt werden. Darüber hinaus konnten möglich neue Funktionen von ß-Arrestinen gezeigt werden. Eine Beteiligung am „triple membrane-passing“ Signalwegs der Transaktivierung des Epidermalen Wachstumsfaktors wurde dargestellt. Zudem wurde eine Interaktion von ß-Arrestin1 und ADAM17 in überexprimierenden Zellsystemen gezeigt. Detaillierte Analysen belegten, dass die Phosphorylierung von ß-Arrestin1 eine notwendige Voraussetzung dafür ist. Weiterhin wurde der neue Mechanismus der UV-vermittelten Aktivierung des epidermalen Wachstumsfaktors auf Plattenephithelkarzinom-Zellen ausgeweitet. Er findet in einer dosisabhängigen Form statt und bedarf einer Metalloprotease zum Aktivieren des Liganden Amphiregulin. Sowohl ADAM9 als auch ADAM17 wurden als die verantwortlichen Metalloproteasen in den untersuchten SCC9 Zellen ermittelt. KW - Epidermaler Wachstumsfaktor-Rezeptor KW - G-Protein gekoppelte Rezeptoren KW - Metalloprotease KW - Krebs KW - EGF Rezeptor KW - Transaktivierung KW - GPCR KW - UV KW - EGFR Transactivation KW - Metalloprotease KW - GPCR KW - Cancer KW - UV Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-65105 ER -