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中的液泡蛋白8(Vac8)同源物在液泡和细胞形态中发挥着保守且独特的作用,影响重要的应激反应和毒力特性。

The vacuolar protein 8 (Vac8) homolog in plays conserved and unique roles in vacuolar and cellular morphology, impacting important stress responses and virulence traits.

作者信息

Stuckey Peter V, Marine Julia, Figueras Meghan, Collins Aliyah, Santiago-Tirado Felipe H

机构信息

Department of Biological Sciences, University of Notre Dame, Notre Dame, IN, USA.

Research Experiences for Undergraduates (REU), University of Notre Dame, Notre Dame, IN, USA.

出版信息

bioRxiv. 2025 May 22:2025.05.22.655601. doi: 10.1101/2025.05.22.655601.

Abstract

Functionally similar to a plant vacuole or a mammalian lysosome, the fungal vacuole plays a vital role in many cellular processes. Most studies of the vacuole have been performed in the nonpathogenic yeast ; however, recently in pathogenic fungi, the vacuole has been implicated in host invasion in both plants and mammals highlighting an important role for the vacuole in pathogenesis. Here, we report that deletion of vacuolar protein 8 () results in a fragmented vacuole morphology, impairment of vacuolar fusion, and inability to form titan cells. Additionally, absence of Vac8 results in defective growth at high temperature and in the presence of caffeine, suggesting a defect in cell wall signaling. Interestingly, despite aberrant vacuole morphology, Δ is slightly more resistant to fluconazole treatment, and displays increased resistance to hydrogen peroxide, suggesting the irregular vacuole morphology does not impair vacuole function. Like Vac8, Vac8 is comprised of armadillo repeat regions which form alpha helices that fold to form a superhelix allowing for increased protein-protein interaction. Many of the known binding partners of Vac8 are not present in the genome, suggesting novel functions for Vac8 in this fungus. Notably, deletion of affected some virulence traits, providing support to targeting the fungal vacuole as a potential therapeutic intervention.

摘要

真菌液泡在功能上类似于植物液泡或哺乳动物溶酶体,在许多细胞过程中发挥着至关重要的作用。大多数关于液泡的研究是在非致病性酵母中进行的;然而,最近在致病性真菌中,液泡被认为在植物和哺乳动物的宿主入侵中都起作用,这突出了液泡在发病机制中的重要作用。在这里,我们报告液泡蛋白8(Vac8)的缺失导致液泡形态碎片化、液泡融合受损以及无法形成巨细胞。此外,缺乏Vac8会导致在高温和咖啡因存在的情况下生长缺陷,表明细胞壁信号传导存在缺陷。有趣的是,尽管液泡形态异常,但ΔVac8对氟康唑治疗的耐受性略高,并且对过氧化氢的耐受性增强,这表明不规则的液泡形态不会损害液泡功能。与Vac8一样,Vac8由犰狳重复区域组成,这些区域形成α螺旋,折叠形成超螺旋,从而增加蛋白质 - 蛋白质相互作用。Vac8的许多已知结合伙伴在该真菌的基因组中不存在,这表明Vac8在这种真菌中具有新功能。值得注意的是,Vac8的缺失影响了一些毒力特征,为将真菌液泡作为潜在的治疗干预靶点提供了支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9689/12258714/34585dfb24b8/nihpp-2025.05.22.655601v1-f0001.jpg

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