TY - JOUR A1 - Wildgruber, Moritz A1 - Aschenbrenner, Teresa A1 - Wendorff, Heiko A1 - Czubba, Maria A1 - Glinzer, Almut A1 - Haller, Bernhard A1 - Schiemann, Matthias A1 - Zimmermann, Alexander A1 - Berger, Hermann A1 - Eckstein, Hans-Henning A1 - Meier, Reinhard A1 - Wohlgemuth, Walter A. A1 - Libby, Peter A1 - Zernecke, Alma T1 - The "Intermediate" CD14\(^{++}\)CD16\(^{+}\) monocyte subset increases in severe peripheral artery disease in humans JF - Scientific Reports N2 - Monocytes are key players in atherosclerotic. Human monocytes display a considerable heterogeneity and at least three subsets can be distinguished. While the role of monocyte subset heterogeneity has already been well investigated in coronary artery disease (CAD), the knowledge about monocytes and their heterogeneity in peripheral artery occlusive disease (PAOD) still is limited. Therefore, we aimed to investigate monocyte subset heterogeneity in patients with PAOD. Peripheral blood was obtained from 143 patients suffering from PAOD (Rutherford stage I to VI) and three monocyte subsets were identified by flow cytometry: CD14\(^{++}\)CD16\(^{-}\) classical monocytes, CD14\(^{+}\)CD16\(^{++}\) non-classical monocytes and CD14\(^{++}\)CD16\(^{+}\) intermediate monocytes. Additionally the expression of distinct surface markers (CD106, CD162 and myeloperoxidase MPO) was analyzed. Proportions of CD14\(^{++}\)CD16\(^{+}\) intermediate monocyte levels were significantly increased in advanced stages of PAOD, while classical and non-classical monocytes displayed no such trend. Moreover, CD162 and MPO expression increased significantly in intermediate monocyte subsets in advanced disease stages. Likewise, increased CD162 and MPO expression was noted in CD14\(^{++}\)CD16\(^{-}\) classical monocytes. These data suggest substantial dynamics in monocyte subset distributions and phenotypes in different stages of PAOD, which can either serve as biomarkers or as potential therapeutic targets to decrease the inflammatory burden in advanced stages of atherosclerosis. KW - peripheral artery occlusive disease KW - monocyte subset KW - humans Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-167476 VL - 6 IS - 39483 ER - TY - THES A1 - Sutor, Dominic Christian T1 - Induktion von FGF19 & FXR in humanen HT-29 Zellen unter Verwendung der nukleären Agonisten Vitamin D3, Vitamin A & CDCA T1 - Induction of FGF19 & FXR in human HT-29 cells with nuclear agonists vitamin D3, vitamin A and CDCA N2 - Ziel dieser Arbeit ist es, weitere Einblicke in die Aktivierung von FGF19 und FXR durch diverse nukleäre Agonisten und deren spezifischer Rezeptoren zu gewinnen. Hierbei soll im humanen Zellmodell versucht und mittels DNA-Analyse untersucht werden, welche messbaren molekularbiologischen Auswirkungen eine Behandlung mit unterschiedlichen Substanzen in variierenden Konzentrationen bewirkt. Genauer soll betrachtet werden, ob sich Vitamin A und Vitamin D als Induktoren von FGF19 in menschlichen Darmzelllinien eignen, da dies bereits im Mausmodel demonstriert werden konnte. Dieser initialen Vermutung folgend, sollen auch die möglichen Wechselwirkungen und Synergismen untersucht werden – welche Mechanismen liegen diese zu Grunde und über welche molekularen Signalwege werden dies vermuteten Effekte vermittelt. Hierdurch soll ein besseres Verständnis für die Rezeptor und Agonistenabhängigen Abläufe ermöglicht werden, um mögliche Rückschlüsse auf weitere Funktionen bereits bekannter Vertreter zu erlauben. Aufgrund der bereits oben beschriebenen Tiermodelle und der daraus gewonnenen Einsichten würde sich durch ein noch besseres Verständnis des FGF15/19 und des Farnesoid X Rezeptors in menschlichen Zellen, auf eine zukünftige Anwendung in analytischen und/oder therapeutischen Bereichen hoffen lassen. Diese Arbeit soll sich deshalb den Fragen widmen, ob eine FGF19 Induktion in humanen Darmzellen durch die nukleären Agonisten VD3, 9-cis RA und CDCA, ähnlich dem Mausmodel, möglich ist und welche Faktoren dabei Einflüsse auf die beschriebenen Effekte haben. N2 - This study demonstrates the induction potentials of vitamin A derivate 9-cis retinoic acid (9-cis RA), 1,25 (OH)² vitamin D3 and chenodeoxycholic acid (CDCA) on the gut-derived hormone Fibroblast Growth Factor 19 as well as a key-control element of the bile acid metabolism, the Farnesoid X Receptor. In conclusion, our data provides evidence for an important role of vitamin A as a novel potent regulator of intestinal FGF19 in humans, in contrast to previously discovered mechanisms in the murine model. KW - Fibroblastenwachstumsfaktor KW - FGF19 KW - FXR KW - RXR KW - RAR KW - Vitamin A Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-141152 ER - TY - JOUR A1 - Subramanian, Hariharan A1 - Döring, Frank A1 - Kollert, Sina A1 - Rukoyatkina, Natalia A1 - Sturm, Julia A1 - Gambaryan, Stepan A1 - Stellzig-Eisenhauer, Angelika A1 - Meyer-Marcotty, Philipp A1 - Eigenthaler, Martin A1 - Wischmeyer, Erhard T1 - PTH1R Mutants Found in Patients with Primary Failure of Tooth Eruption Disrupt G-Protein Signaling JF - PLoS One N2 - Aim Primary failure of tooth eruption (PFE) is causally linked to heterozygous mutations of the parathyroid hormone receptor (PTH1R) gene. The mutants described so far lead to exchange of amino acids or truncation of the protein that may result in structural changes of the expressed PTH1R. However, functional effects of these mutations have not been investigated yet. Materials and Methods In HEK293 cells, PTH1R wild type was co-transfected with selected PTH1R mutants identified in patients with PFE. The effects on activation of PTH-regulated intracellular signaling pathways were analyzed by ELISA and Western immunoblotting. Differential effects of wild type and mutated PTH1R on TRESK ion channel regulation were analyzed by electrophysiological recordings in Xenopus laevis oocytes. Results In HEK293 cells, activation of PTH1R wild type increases cAMP and in response activates cAMP-stimulated protein kinase as detected by phosphorylation of the vasodilator stimulated phosphoprotein (VASP). In contrast, the PTH1R mutants are functionally inactive and mutant PTH1R/Gly452Glu has a dominant negative effect on the signaling of PTH1R wild type. Confocal imaging revealed that wild type PTH1R is expressed on the cell surface, whereas PTH1R/Gly452Glu mutant is mostly retained inside the cell. Furthermore, in contrast to wild type PTH1R which substantially augmented K+ currents of TRESK channels, coupling of mutated PTH1R to TRESK channels was completely abolished. Conclusions PTH1R mutations affect intracellular PTH-regulated signaling in vitro. In patients with primary failure of tooth eruption defective signaling of PTH1R mutations is suggested to occur in dento-alveolar cells and thus may lead to impaired tooth movement. KW - phosphorylation KW - xenopus oocytes KW - calcium signaling KW - intracellular receptors KW - mutation KW - teeth KW - tooth eruption KW - transfection Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147967 VL - 11 IS - 11 ER - TY - JOUR A1 - Howangyin, Kiave-Yune A1 - Zlatanova, Ivana A1 - Pinto, Cristina A1 - Ngkelo, Anta A1 - Cochain, Clément A1 - Rouanet, Marie A1 - Vilar, José A1 - Lemitre, Mathilde A1 - Stockmann, Christian A1 - Fleischmann, Bernd K. A1 - Mallat, Ziad A1 - Silvestre, Jean-Sébastien T1 - Myeloid-epithelial-reproductive receptor tyrosine kinase and milk fat globule epidermal growth factor 8 coordinately improve remodeling after myocardial infarction via local delivery of vascular endothelial growth factor JF - Circulation N2 - Background: In infarcted heart, improper clearance of dying cells by activated neighboring phagocytes may precipitate the transition to heart failure. We analyzed the coordinated role of 2 major mediators of efferocytosis, the myeloid-epithelial-reproductive protein tyrosine kinase (Mertk) and the milk fat globule epidermal growth factor (Mfge8), in directing cardiac remodeling by skewing the inflammatory response after myocardial infarction. Methods and Results: We generated double-deficient mice for Mertk and Mfge8 (Mertk\(^{-/-}\)/Mfge8\(^{-/-}\)) and challenged them with acute coronary ligature. Compared with wild-type, Mertk-deficient (Mertk\(^{-/-}\)), or Mfge8-deficient (Mfge8\(^{-/-}\)) animals, Mertk\(^{-/-}\)/Mfge8\(^{-/-}\) mice displayed greater alteration in cardiac function and remodeling. Mertk and Mfge8 were expressed mainly by cardiac Ly6C\(^{High and Low}\) monocytes and macrophages. In parallel, Mertk\(^{-/-}\)/Mfge8\(^{-/-}\) bone marrow chimeras manifested increased accumulation of apoptotic cells, enhanced fibrotic area, and larger infarct size, as well as reduced angiogenesis. We found that the abrogation of efferocytosis affected neither the ability of circulating monocytes to infiltrate cardiac tissue nor the number of resident Ly6C\(^{High}\) and Ly6C\(^{Low}\) monocytes/macrophages populating the infarcted milieu. In contrast, combined Mertk and Mfge8 deficiency in Ly6C\(^{High}\)/Ly6C\(^{Low}\) monocytes/macrophages either obtained from in vitro differentiation of bone marrow cells or isolated from infarcted hearts altered their capacity of efferocytosis and subsequently blunted vascular endothelial growth factor A (VEGFA) release. Using LysMCre\(^+\)/VEGFA\(^{fl/fl}\) mice, we further identified an important role for myeloid-derived VEGFA in improving cardiac function and angiogenesis. Conclusions: After myocardial infarction, Mertk- and Mfge8-expressing monocyte/macrophages synergistically engage the clearance of injured cardiomyocytes, favoring the secretion of VEGFA to locally repair the dysfunctional heart. KW - inflammation KW - macrophages KW - myocardial infarction KW - myocarditis KW - neovascularization, physiologic Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-190755 VL - 133 IS - 9 ER - TY - JOUR A1 - Gambaryan, Stepan A1 - Subramanian, Hariharan A1 - Kehrer, Linda A1 - Mindukshev, Igor A1 - Sudnitsyna, Julia A1 - Reiss, Cora A1 - Rukoyatkina, Natalia A1 - Friebe, Andreas A1 - Sharina, Iraida A1 - Martin, Emil A1 - Walter, Ulrich T1 - Erythrocytes do not activate purified and platelet soluble guanylate cyclases even in conditions favourable for NO synthesis JF - Cell Communication and Signaling N2 - Background Direct interaction between Red blood cells (RBCs) and platelets is known for a long time. The bleeding time is prolonged in anemic patients independent of their platelet count and could be corrected by transfusion of RBCs, which indicates that RBCs play an important role in hemostasis and platelet activation. However, in the last few years, opposing mechanisms of platelet inhibition by RBCs derived nitric oxide (NO) were proposed. The aim of our study was to identify whether RBCs could produce NO and activate soluble guanylate cyclase (sGC) in platelets. Methods To test whether RBCs could activate sGC under different conditions (whole blood, under hypoxia, or even loaded with NO), we used our well-established and highly sensitive models of NO-dependent sGC activation in platelets and activation of purified sGC. The activation of sGC was monitored by detecting the phosphorylation of Vasodilator Stimulated Phosphoprotein (VASPS239) by flow cytometry and Western blot. ANOVA followed by Bonferroni’s test and Student’s t-test were used as appropriate. Results We show that in the whole blood, RBCs prevent NO-mediated inhibition of ADP and TRAP6-induced platelet activation. Likewise, coincubation of RBCs with platelets results in strong inhibition of NO-induced sGC activation. Under hypoxic conditions, incubation of RBCs with NO donor leads to Hb-NO formation which inhibits sGC activation in platelets. Similarly, RBCs inhibit activation of purified sGC, even under conditions optimal for RBC-mediated generation of NO from nitrite. Conclusions All our experiments demonstrate that RBCs act as strong NO scavengers and prevent NO-mediated inhibition of activated platelets. In all tested conditions, RBCs were not able to activate platelet or purified sGC. KW - hemoglobin KW - erythrocytes KW - nitric oxide KW - soluble guanylate cyclase KW - platelets Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-161223 VL - 14 IS - 16 ER - TY - THES A1 - Endres, Marcel Matthias T1 - LASP1 reguliert die Genexpression und Sekretion von Matrix-Metalloproteasen in Brustkrebszellen T1 - LASP1 regulates the gene expression as well as the secretion of matrix-metalloproteases in breast cancer cells N2 - Migration und Tumorzellinvasion erfordern die vorhergehende Degradation der umliegenden Extrazellulärmartrix (EZM). Dieser Umbauprozess erfolgt primär durch proteolytische Endopeptidasen, sog. Matrix-Metalloproteasen (MMPs). Damit diese ihre funktionelle Aktivität ausüben können, müssen sie zunächst rekrutiert und mit Hilfe podosomaler bzw. invadopodialer Strukturen in die EZM sezerniert werden. Das LIM und SH3 Domänen Protein 1 (LASP1), ein neu in Podosomen von Makrophagen identifiziertes regulatorisches Gerüstprotein, beeinflusst, neben Größe, Anzahl und Beständigkeit von Podosomen, in hohem Maße die Matrixdegradationskapazität der Zelle. Auch in invasiven Brustkrebszellen wurde eine Lokalisation von LASP1 an Invadopodien, den Podosomen-äquivalenten Strukturen, detektiert. Das primäre Ziel der vorliegenden Arbeit war daher die funktionelle Charakterisierung von LASP1 in Invadopodien. Unter Etablierung eines Matrix-Degradations-Assays konnte gezeigt werden, dass eine Herunterregulation von LASP1 auch in der humanen Brustkrebszelllinie MDA-MB-231, die zuvor schon für Makrophagen gezeigte Matrixdegradation nachhaltig beeinträchtig. Durch Analyse und Verifikation von zugänglichen Mikroarraydaten mittels qRT-PCR und Western Blot konnte ferner belegt werden, dass LASP1 in den Brustkrebszellen die Genexpression und Proteintranslation von MMP1, -3 und -9 positiv moduliert und somit das gesamt-invasive Potential der Zelle steigert. Darüber hinaus deuten Zymogramme und die Analyse des konditionierten Mediums darauf hin, dass LASP1 als Strukturprotein die vesikuläre Sekretion der inaktiven Zymogene (proMMPs) in die EZM fördert. Demzufolge modifiziert LASP1 während der Krebsprogression die zelluläre Mikroumgebung zugunsten einer erhöhten Metastasierungsrate. Die neu identifizierte regulatorische Funktion von LASP1 auf die Transkription sowie Sekretion von Matrix-Metalloproteasen erklärt die in früheren Arbeiten beobachtete Korrelation zwischen einer erhöhten LASP1 Konzentration im Gewebe und dem vermehrten Auftreten von Metastasen, und damit einhergehend, schlechteren Überleben der Patientinnen. N2 - The process of migration and tumor invasion requires the degradation of the surrounding extracellular matrix by proteolytic endopeptidases, called matrix-metalloproteases (MMPs). Therefore, cells form protrusive invadopodia or podosomes that recruit and secret MMPs to degrade the basement membrane. The LIM and SH3 protein 1 (LASP1) was recently identified as a new scaffolding protein in podosomes of macrophages. Knockdown of LASP1 affected size, number and lifetime of the podosomes and moreover, inhibited matrix degradation capacity. The main objective of the presented dissertation was to characterize the function of LASP1 in invadopodia of cancer cells. By establishing a matrix-degradation-assay, we demonstrated that down-regulation of LASP1 impaired matrix-degradation in MDA-MB-231 breast cancer cells, an effect earlier observed in macrophages. By analyzing and verifying accessible microarray data sets we observed regulation of MMPs by LASP1. qRT-PCR and Western Blot experiments confirmed that LASP1 positively modulates gene expression and translation of MMP1, -3 and -9, and thereof enhances cellular invasion. Furthermore, zymography and analysis of the conditioned medium revealed cytosolic LASP1 promotion of MMP vesicle secretion into the extracellular matrix, thus altering the microenvironment during cancer progression. In summary, the newly identified role of LASP1 in regulating matrix degradation by affecting MMP transcription and secretion elucidated the migratory potential observed in former studies that described upregulation of LASP1 in metastatic cancer cells. KW - Brustkrebs KW - Genexpression KW - Sekretion KW - Metalloproteasen KW - LASP1 (LIM und SH3 Protein 1) KW - LASP1 (LIM and SH3 Protein 1) KW - MMP (Matrix-Metalloproteasen) KW - MMP (Matrix-Metalloproteases) KW - Matrix-Metalloproteasen Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-136733 ER - TY - JOUR A1 - Busch, Albert A1 - Hoffjan, Sabine A1 - Bergmann, Frauke A1 - Hartung, Birgit A1 - Jung, Helena A1 - Hanel, Daniela A1 - Tzschach, Andeas A1 - Kadar, Janos A1 - von Kodolitsch, Yskert A1 - Germer, Christoph-Thomas A1 - Trobisch, Heiner A1 - Strasser, Erwin A1 - Wildenauer, René T1 - Vascular type Ehlers-Danlos syndrome is associated with platelet dysfunction and low vitamin D serum concentration JF - Orphanet Journal of Rare Diseases N2 - Background The vascular type represents a very rare, yet the clinically most fatal entity of Ehlers-Danlos syndrome (EDS). Patients are often admitted due to arterial bleedings and the friable tissue and the altered coagulation contribute to the challenge in treatment strategies. Until now there is little information about clotting characteristics that might influence hemostasis decisively and eventually worsen emergency situations. Results 22 vascular type EDS patients were studied for hemoglobin, platelet volume and count, Quick and activated partial thromboplastin time, fibrinogen, factor XIII, von Willebrand disease, vitamin D and platelet aggregation by modern standard laboratory methods. Results show a high prevalence of over 50 % for platelet aggregation disorders in vascular type EDS patients, especially for collagen and epinephrine induced tests, whereas the plasmatic cascade did not show any alterations. Additionally, more than half of the tested subjects showed low vitamin D serum levels, which might additionally affect vascular wall integrity. Conclusion The presented data underline the importance of detailed laboratory screening methods in vascular type EDS patients in order to allow for targeted application of platelet-interacting substances that might be of decisive benefit in the emergency setting. KW - vascular type KW - vitamin D KW - Ehlers-Danlos syndrome KW - EDS KW - platelet dysfunction Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147757 VL - 11 IS - 111 ER -