TY - JOUR A1 - Cullmann, Katharina A1 - Jahn, Magdalena A1 - Spindler, Markus A1 - Schenk, Franziska A1 - Manukjan, Georgi A1 - Mucci, Adele A1 - Steinemann, Doris A1 - Boller, Klaus A1 - Schulze, Harald A1 - Bender, Markus A1 - Moritz, Thomas A1 - Modlich, Ute T1 - Forming megakaryocytes from murine‐induced pluripotent stem cells by the inducible overexpression of supporting factors JF - Research and Practice in Thrombosis and Haemostasis N2 - Background Platelets are small anucleate cells that circulate in the blood in a resting state but can be activated by external cues. In case of need, platelets from blood donors can be transfused. As an alternative source, platelets can be produced from induced pluripotent stem cells (iPSCs); however, recovered numbers are low. Objectives To optimize megakaryocyte (MK) and platelet output from murine iPSCs, we investigated overexpression of the transcription factors GATA‐binding factor 1 (GATA1); nuclear factor, erythroid 2; and pre–B‐cell leukemia transcription factor 1 (Pbx1) and a hyperactive variant of the small guanosine triphosphatase RhoA (RhoAhc). Methods To avoid off‐target effects, we generated iPSCs carrying the reverse tetracycline‐responsive transactivator M2 (rtTA‐M2) in the Rosa26 locus and expressed the factors from Tet‐inducible gammaretroviral vectors. Differentiation of iPSCs was initiated by embryoid body (EB) formation. After EB dissociation, early hematopoietic progenitors were enriched and cocultivated on OP9 feeder cells with thrombopoietin and stem cell factor to induce megakaryocyte (MK) differentiation. Results Overexpression of GATA1 and Pbx1 increased MK output 2‐ to 2.5‐fold and allowed prolonged collection of MK. Cytologic and ultrastructural analyses identified typical MK with enlarged cells, multilobulated nuclei, granule structures, and an internal membrane system. However, GATA1 and Pbx1 expression did not improve MK maturation or platelet release, although in vitro–generated platelets were functional in spreading on fibrinogen or collagen‐related peptide. Conclusion We demonstrate that the use of rtTA‐M2 transgenic iPSCs transduced with Tet‐inducible retroviral vectors allowed for gene expression at later time points during differentiation. With this strategy we could identify factors that increased in vitro MK production. KW - genetic modification KW - iPS cells KW - megakaryocytes KW - retroviral vectors KW - Tet‐inducible system Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-224565 VL - 5 IS - 1 SP - 111 EP - 124 ER - TY - THES A1 - Spindler, Markus T1 - The role of the adhesion and degranulation promoting adapter protein (ADAP) in platelet production T1 - Die Rolle des adhesion and degranulation promoting adapter Proteins (ADAP) in der Thrombopoese N2 - Bone marrow (BM) megakaryocytes (MKs) produce platelets by extending proplatelets into sinusoidal blood vessels. Although this process is fundamental to maintain normal platelet counts in circulation only little is known about the regulation of directed proplatelet formation. As revealed in this thesis, ADAP (adhesion and degranulation promoting adapter protein) deficiency (constitutive as well as MK and platelet-specific) resulted in a microthrombocytopenia in mice, recapitulating the clinical hallmark of patients with mutations in the ADAP gene. The thrombocytopenia was caused by a combination of an enhanced removal of platelets from the circulation by macrophages and a platelet production defect. This defect led to an ectopic release of (pro)platelet-like particles into the bone marrow compartment, with a massive accumulation of such fragments around sinusoids. In vitro studies of cultured BM cell-derived MKs revealed a polarization defect of the demarcation membrane system, which is dependent on F-actin dynamics. ADAP-deficient MKs spread on collagen and fibronectin displayed a reduced F-actin content and podosome density in the lowest confocal plane. In addition, ADAP-deficient MKs exhibited a reduced capacity to adhere on Horm collagen and in line with that the activation of beta1-integrins in the lowest confocal plane of spread MKs was diminished. These results point to ADAP as a novel regulator of terminal platelet formation. Beside ADAP-deficient mice, three other knockout mouse models (deficiency for profilin1 (PFN1), Wiskott-Aldrich-syndrome protein (WASP) and Actin-related protein 2/3 complex subunit 2 (ARPC2)) exist, which display ectopic release of (pro)platelet-like particles. As shown in the final part of the thesis, the pattern of the ectopic release of (pro)platelet-like particles in these genetically modified mice (PFN1 and WASP) was comparable to ADAP-deficient mice. Furthermore, all tested mutant MKs displayed an adhesion defect as well as a reduced podosome density on Horm collagen. These results indicate that similar mechanisms might apply for ectopic release. N2 - Die Megakaryozyten (MKn) des Knochenmarks produzieren Thrombozyten durch die Ausbildung und Verlängerung von Proplättchen in die sinusoidalen Blutgefäße. Obwohl dieser Prozess für die Aufrechterhaltung der normalen Thrombozytenzahl in der Blutzirkulation von grundlegender Bedeutung ist, ist über die Regulation der gerichteten Proplättchenbildung und damit der Thrombozytenproduktion nur wenig bekannt. Wie in dieser Arbeit gezeigt, führte sowohl die konstitutive als auch die MK- und Thrombozyten-spezifische Defizienz von ADAP (adhesion and degranulation promoting adapter protein) in Mäusen zu einer Mikrothrombozytopenie, ähnlich wie dies bei Patienten mit Mutationen im ADAP Gen zu beobachten ist. Die Thrombozytopenie wurde durch eine Kombination aus einer verstärkten Entfernung (clearance) von Thrombozyten aus der Zirkulation durch Makrophagen und einem Defekt in der Thrombozytenproduktion verursacht. Dieser Defekt führte zu einer ektopischen Freisetzung von Proplättchen-ähnlichen Partikeln ins Knochenmark und zur Anreicherung derartiger Fragmente um die Sinusoiden. In vitro-Studien an kultivierten MKn aus Zellen des Knochenmarks zeigten einen Polarisationsdefekt des Demarkationsmembransystems, welcher abhängig von der F-Aktin-Dynamik ist. ADAP-defiziente MKn wiesen nach Spreading auf Kollagen und Fibronektin einen reduzierten F-Aktin Gehalt und eine geringere Dichte von Podosomen in der untersten konfokalen Ebene auf. Zusätzlich zeigten ADAP-defiziente MKn beim Spreading Versuch eine verminderte Kapazität sich an Horm Kollagen anzuhaften, und die Aktivierung von beta1-Integrinen war in der untersten konfokalen Ebene von MKn reduziert. Diese Ergebnisse deuten darauf hin, dass ADAP ein wichtiges Protein im terminalen Schritt der Thrombozytenproduktion ist. Neben ADAP-defizienten Mäusen existieren drei weitere Knockout-Mausmodelle (für die Proteine: Profilin1 (PFN1), Wiskott-Aldrich-Syndrom-Protein (WASP) und Actin-related protein 2/3 complex subunit 2 (ARPC2)), die eine ektopische Freisetzung von Proplättchen-ähnlichen Partikeln zeigen. Wie im letzten Teil der Arbeit gezeigt, war das Muster der ektopischen Freisetzung von Proplättchen-ähnlichen Partikeln in diesen genetisch veränderten Mäusen (PFN1 und WASP) zu den ADAP-defizienten Mäusen vergleichbar. Darüber hinaus zeigten die MKn von den knockout Mäusen einen Adhäsionsdefekt sowie eine reduzierte Podosomendichte auf Horm Kollagen. Diese Ergebnisse deuten darauf hin, dass ähnliche Mechanismen für die Freisetzung von Proplättchen-ähnlichen Partikeln in das Knochenmark verantwortlich sein könnten. KW - Adhesion and degranulation promoting adapter protein KW - Megakaryocyte KW - ectopic release KW - platelet KW - cytoskeleton Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200977 ER -