Discovery and Characterization of Ephrin B2 and EphB4 Dysregulation and Novel Mutations in Cerebral Cavernous Malformations: In Vitro and Patient-Derived Evidence of Ephrin-Mediated Endothelial Cell Pathophysiology.

IF 3.6 4区 医学 Q3 CELL BIOLOGY
Julie Sesen, Aram Ghalali, Jessica Driscoll, Tyra Martinez, Adrien Lupieri, David Zurakowski, Sanda Alexandrescu, Edward R Smith, Katie P Fehnel
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Abstract

Intracranial vascular malformations manifest on a continuum ranging from predominantly arterial to predominantly venous in pathology. Cerebral cavernous malformations (CCMs) are capillary malformations that exist at the midpoint of this continuum. The axon guidance factor Ephrin B2 and its receptor EphB4 are critical regulators of vasculogenesis in the developing central nervous system. Ephrin B2/EphB4 dysregulation has been implicated in the pathogenesis of arterial-derived arteriovenous malformations and vein-based vein of Galen malformations. Increasing evidence supports the hypothesis that aberrant Ephrin B2/EphB4 signaling may contribute to developing vascular malformations, but their role in CCMs remains largely uncharacterized. Evidence of Ephrin dysregulation in CCMs would be important to establish a common link in the pathogenic spectrum of EphrinB2/Ephb4 dysregulation. By studying patient-derived primary CCM endothelial cells (CCMECs), we established that CCMECs are functionally distinct from healthy endothelial cell controls; CCMECs demonstrated altered patterns of migration, motility, and impaired tube formation. In addition to the altered phenotype, the CCMECs also displayed an increased ratio of EphrinB2/EphB4 compared to the healthy endothelial control cells. Furthermore, whole exome sequencing identified mutations in both EphrinB2 and EphB4 in the CCMECs. These findings identify functional alterations in the EphrinB2/EphB4 ratio as a feature linking pathophysiology across the spectrum of arterial, capillary, and venous structural malformations in the central nervous system while revealing a putative therapeutic target.

Abstract Image

脑海绵畸形中 Ephrin B2 和 EphB4 失调及新型突变的发现和特征描述:Ephrin介导的内皮细胞病理生理学的体外和患者证据。
颅内血管畸形在病理上表现为从动脉为主到静脉为主的连续过程。脑海绵畸形(CCMs)属于毛细血管畸形,处于这一连续体的中点。轴突导向因子 Ephrin B2 及其受体 EphB4 是发育中中枢神经系统血管生成的关键调节因子。Ephrin B2/EphB4 失调与动脉源性动静脉畸形和静脉源性盖伦静脉畸形的发病机制有关。越来越多的证据支持 Ephrin B2/EphB4 信号异常可能导致血管畸形的假说,但它们在 CCMs 中的作用在很大程度上仍未定性。CCMs中Ephrin失调的证据对于确定EphrinB2/Ephb4失调致病谱中的共同环节非常重要。通过研究来源于患者的原发性 CCM 内皮细胞(CCMECs),我们确定 CCMECs 在功能上有别于健康内皮细胞对照组;CCMECs 表现出迁移、运动和管道形成受损模式的改变。除了表型改变外,与健康内皮对照细胞相比,CCMECs 的 EphrinB2/EphB4 比率也有所增加。此外,全外显子组测序发现了CCMECs中EphrinB2和EphB4的突变。这些研究结果发现,EphrinB2/EphB4比例的功能性改变是中枢神经系统动脉、毛细血管和静脉结构畸形的一个病理生理学特征,同时也揭示了一个潜在的治疗靶点。
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来源期刊
CiteScore
7.70
自引率
0.00%
发文量
137
审稿时长
4-8 weeks
期刊介绍: Cellular and Molecular Neurobiology publishes original research concerned with the analysis of neuronal and brain function at the cellular and subcellular levels. The journal offers timely, peer-reviewed articles that describe anatomic, genetic, physiologic, pharmacologic, and biochemical approaches to the study of neuronal function and the analysis of elementary mechanisms. Studies are presented on isolated mammalian tissues and intact animals, with investigations aimed at the molecular mechanisms or neuronal responses at the level of single cells. Cellular and Molecular Neurobiology also presents studies of the effects of neurons on other organ systems, such as analysis of the electrical or biochemical response to neurotransmitters or neurohormones on smooth muscle or gland cells.
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