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在血小板中具有特异性表达的C3G转基因小鼠模型揭示了C3G通过其鸟嘌呤核苷酸交换因子(GEF)活性在血小板凝血中的新作用。

C3G transgenic mouse models with specific expression in platelets reveal a new role for C3G in platelet clotting through its GEF activity.

作者信息

Gutiérrez-Herrero Sara, Maia Vera, Gutiérrez-Berzal Javier, Calzada Nuria, Sanz María, González-Manchón Consuelo, Pericacho Miguel, Ortiz-Rivero Sara, González-Porras José R, Arechederra María, Porras Almudena, Guerrero Carmen

机构信息

Centro de Investigación del Cáncer, Universidad de Salamanca, Salamanca, Spain.

出版信息

Biochim Biophys Acta. 2012 Aug;1823(8):1366-77. doi: 10.1016/j.bbamcr.2012.05.021. Epub 2012 May 29.

Abstract

We have generated mouse transgenic lineages for C3G (tgC3G) and C3GΔCat (tgC3GΔCat, C3G mutant lacking the GEF domain), where the transgenes are expressed under the control of the megakaryocyte and platelet specific PF4 (platelet factor 4) gene promoter. Transgenic platelet activity has been analyzed through in vivo and in vitro approaches, including bleeding time, aggregation assays and flow cytometry. Both transgenes are expressed (RNA and protein) in purified platelets and megakaryocytes and do not modify the number of platelets in peripheral blood. Transgenic C3G animals showed bleeding times significantly shorter than control animals, while tgC3GΔCat mice presented a remarkable bleeding diathesis as compared to their control siblings. Accordingly, platelets from tgC3G mice showed stronger activation in response to platelet agonists such as thrombin, PMA, ADP or collagen than control platelets, while those from tgC3GΔCat animals had a lower response. In addition, we present data indicating that C3G is a mediator in the PKC pathway leading to Rap1 activation. Remarkably, a significant percentage of tgC3G mice presented a higher level of neutrophils than their control siblings. These results indicate that C3G plays an important role in platelet clotting through a mechanism involving its GEF activity and suggest that it might be also involved in neutrophil development.

摘要

我们已经构建了C3G(tgC3G)和C3GΔCat(tgC3GΔCat,缺乏鸟苷酸交换因子结构域的C3G突变体)的小鼠转基因品系,其中转基因在巨核细胞和血小板特异性PF4(血小板因子4)基因启动子的控制下表达。通过体内和体外方法分析了转基因血小板活性,包括出血时间、聚集试验和流式细胞术。两种转基因均在纯化的血小板和巨核细胞中表达(RNA和蛋白质),并且不改变外周血中血小板的数量。转基因C3G动物的出血时间明显短于对照动物,而tgC3GΔCat小鼠与其对照同胞相比表现出明显的出血素质。因此,与对照血小板相比,来自tgC3G小鼠的血小板对血小板激动剂如凝血酶、佛波酯、ADP或胶原的反应更强,而来自tgC3GΔCat动物的血小板反应较低。此外,我们提供的数据表明C3G是导致Rap1激活的PKC途径中的一种介质。值得注意的是,相当比例的tgC3G小鼠的中性粒细胞水平高于其对照同胞。这些结果表明,C3G通过涉及其鸟苷酸交换因子活性的机制在血小板凝血中起重要作用,并表明它可能也参与中性粒细胞的发育。

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