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Rasa3控制巨核细胞Rap1激活、整合素信号传导以及向血小板前体的分化。

Rasa3 controls megakaryocyte Rap1 activation, integrin signaling and differentiation into proplatelet.

作者信息

Molina-Ortiz Patricia, Polizzi Séléna, Ramery Eve, Gayral Stéphanie, Delierneux Céline, Oury Cécile, Iwashita Shintaro, Schurmans Stéphane

机构信息

Laboratory of Functional Genetics, GIGA-Research Centre, Université de Liège, Liège, and Welbio, Belgium.

Institut de Recherches Interdisciplinaires en Biologie Humaine et Moléculaire (IRIBHM), Institut de Biologie et de Médecine Moléculaires (IBMM), Faculté de Médecine, Université Libre de Bruxelles, Gosselies, Belgium.

出版信息

PLoS Genet. 2014 Jun 26;10(6):e1004420. doi: 10.1371/journal.pgen.1004420. eCollection 2014 Jun.

Abstract

Rasa3 is a GTPase activating protein of the GAP1 family which targets Ras and Rap1. Ubiquitous Rasa3 catalytic inactivation in mouse results in early embryonic lethality. Here, we show that Rasa3 catalytic inactivation in mouse hematopoietic cells results in a lethal syndrome characterized by severe defects during megakaryopoiesis, thrombocytopenia and a predisposition to develop preleukemia. The main objective of this study was to define the cellular and the molecular mechanisms of terminal megakaryopoiesis alterations. We found that Rasa3 catalytic inactivation altered megakaryocyte development, adherence, migration, actin cytoskeleton organization and differentiation into proplatelet forming megakaryocytes. These megakaryocyte alterations were associated with an increased active Rap1 level and a constitutive integrin activation. Thus, these mice presented a severe thrombocytopenia, bleeding and anemia associated with an increased percentage of megakaryocytes in the bone marrow, bone marrow fibrosis, extramedular hematopoiesis, splenomegaly and premature death. Altogether, our results indicate that Rasa3 catalytic activity controls Rap1 activation and integrin signaling during megakaryocyte differentiation in mouse.

摘要

Rasa3是GAP1家族的一种GTP酶激活蛋白,作用于Ras和Rap1。小鼠中Rasa3的普遍催化失活会导致早期胚胎致死。在此,我们表明小鼠造血细胞中Rasa3的催化失活会导致一种致死综合征,其特征为巨核细胞生成过程中的严重缺陷、血小板减少以及易患白血病前期。本研究的主要目的是确定终末巨核细胞生成改变的细胞和分子机制。我们发现Rasa3的催化失活改变了巨核细胞的发育、黏附、迁移、肌动蛋白细胞骨架组织以及向形成前血小板的巨核细胞的分化。这些巨核细胞改变与活性Rap1水平升高和整合素的组成性激活有关。因此,这些小鼠出现严重的血小板减少、出血和贫血,同时伴有骨髓中巨核细胞百分比增加、骨髓纤维化、髓外造血、脾肿大和过早死亡。总之,我们的结果表明Rasa3的催化活性在小鼠巨核细胞分化过程中控制Rap1激活和整合素信号传导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e27/4072513/f3e2aff35155/pgen.1004420.g001.jpg

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