抑制 RhoA 可防止新生隐球菌胶囊葡萄糖醛酸甘露聚糖刺激的脑内皮屏障破坏

Melissa E Munzen, Cristian Mathew, Vanessa Enriquez, Amanjeet Minhas, Claudia L Charles-Niño, Durvinand Saytoo, Marta Reguera-Gomez, Michael R Dores, Luis R Martinez
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摘要

新型隐球菌(Cn)是一种机会性真菌,会导致免疫力低下的人患上严重的中枢神经系统(CNS)疾病。侵入脑实质需要真菌穿越血脑屏障。在这项研究中,我们描述了 Cn 通过激活小 GTPase RhoA 改变脑内皮,导致肌动蛋白细胞骨架重组和紧密连接调节,从而调节内皮屏障的通透性。我们证实,主要的真菌胶囊多糖葡萄糖醛酸甘露聚糖是造成这些改变的原因。我们揭示了CCG-1423抑制体内RhoA的治疗效果。在散播性隐球菌病的小鼠模型中,抑制 RhoA 可延长存活时间并减少真菌负担,这支持了在隐球菌感染情况下靶向 RhoA 的治疗潜力。我们研究了 Cn 在中枢神经系统疾病中的复杂毒力,描述了脑内皮的细胞成分,这些成分可能成为未来抗真菌疗法的分子靶点,以减轻危及生命的隐球菌中枢神经系统感染的负担。
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Inhibition of RhoA prevents Cryptococcus neoformans capsule glucuronoxylomannan-stimulated brain endothelial barrier disruption
Cryptococcus neoformans (Cn) is an opportunistic fungus that causes severe central nervous system (CNS) disease in immunocompromised individuals. Brain parenchyma invasion requires fungal traversal of the blood-brain barrier. In this study, we describe that Cn alters the brain endothelium by activating small GTPase RhoA, causing reorganization of the actin cytoskeleton and tight junction modulation to regulate endothelial barrier permeability. We confirm that the main fungal capsule polysaccharide glucuronoxylomannan is responsible for these alterations. We reveal a therapeutic benefit of RhoA inhibition by CCG-1423 in vivo. RhoA inhibition prolonged survival and reduced fungal burden in a murine model of disseminated cryptococcosis, supporting the therapeutic potential targeting RhoA in the context of cryptococcal infection. We examine the complex virulence of Cn in establishing CNS disease, describing cellular components of the brain endothelium that may serve as molecular targets for future antifungal therapies to alleviate the burden of life-threatening cryptococcal CNS infection.
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