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Proplatelet generation in the mouse requires PKC{varepsilon}-dependent RhoA inhibition

Articolo
Data di Pubblicazione:
2013
Citazione:
Proplatelet generation in the mouse requires PKC{varepsilon}-dependent RhoA inhibition / Gobbi, Giuliana; Mirandola, Prisco; Carubbi, Cecilia; Masselli, Elena; Sykes, Sm; Ferraro, F; Nouvenne, Antonio; Thon, Jn; ITALIANO JE, Jr; Vitale, Marco. - In: BLOOD. - ISSN 0006-4971. - 122:7(2013), pp. 1305-1311. [10.1182/blood-2013-04-490599]
Abstract:
During thrombopoiesis, megakaroycytes undergo extensive cytoskeletal remodeling to form proplatelet extensions that eventually produce mature platelets. Proplatelet formation is a tightly orchestrated process that depends on dynamic regulation of both tubulin reorganization and Rho-associated, coiled-coil containing protein kinase/RhoA activity. A disruption in tubulin dynamics or RhoA activity impairs proplatelet formation and alters platelet morphology. We previously observed that protein kinase Cepsilon (PKCε), a member of the protein kinase C family of serine/threonine-kinases, expression varies during human megakaryocyte differentiation and modulates megakaryocyte maturation and platelet release. Here we used an in vitro model of murine platelet production to investigate a potential role for PKCε in proplatelet formation. By immunofluorescence we observed that PKCε colocalizes with α/β-tubulin in specific areas of the marginal tubular-coil in proplatelets. Moreover, we found that PKCε expression escalates during megakarocyte differentiation and remains elevated in proplatelets, whereas the active form of RhoA is substantially downregulated in proplatelets. PKCε inhibition resulted in lower proplatelet numbers and larger diameter platelets in culture as well as persistent RhoA activation. Finally, we demonstrate that pharmacological inhibition of RhoA is capable of reversing the proplatelet defects mediated by PKCε inhibition. Collectively, these data indicate that by regulating RhoA activity, PKCε is a critical mediator of mouse proplatelet formation in vitro.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Gobbi, Giuliana; Mirandola, Prisco; Carubbi, Cecilia; Masselli, Elena; Sykes, Sm; Ferraro, F; Nouvenne, Antonio; Thon, Jn; ITALIANO JE, Jr; Vitale, Marco
Autori di Ateneo:
VITALE MARCO
Link alla scheda completa:
https://iris.unisr.it/handle/20.500.11768/154082
Pubblicato in:
BLOOD
Journal
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