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P4-ATPase 亚基 Cdc50 在酿酒酵母芽殖和细胞壁完整性中发挥作用。

P4-ATPase subunit Cdc50 plays a role in yeast budding and cell wall integrity in Candida glabrata.

机构信息

Department of Laboratory Medicine, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Department of Laboratory Medicine, Ruijin Hospital Luwan Branch, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

出版信息

BMC Microbiol. 2023 Apr 13;23(1):99. doi: 10.1186/s12866-023-02810-3.

Abstract

BACKGROUND

As highly-conserved types of lipid flippases among fungi, P4-ATPases play a significant role in various cellular processes. Cdc50 acts as the regulatory subunit of flippases, forming heterodimers with Drs2 to translocate aminophospholipids. Cdc50 homologs have been reported to be implicated in protein trafficking, drug susceptibility, and virulence in Saccharomyces cerevisiae, Candida albicans and Cryptococcus neoformans. It is likely that Cdc50 has an extensive influence on fungal cellular processes. The present study aimed to determine the function of Cdc50 in Candida glabrata by constructing a Δcdc50 null mutant and its complemented strain.

RESULTS

In Candida glabrata, the loss of Cdc50 led to difficulty in yeast budding, probably caused by actin depolarization. The Δcdc50 mutant also showed hypersensitivity to azoles, caspofungin, and cell wall stressors. Further experiments indicated hyperactivation of the cell wall integrity pathway in the Δcdc50 mutant, which elevated the major cell wall contents. An increase in exposure of β-(1,3)-glucan and chitin on the cell surface was also observed through flow cytometry. Interestingly, we observed a decrease in the phagocytosis rate when the Δcdc50 mutant was co-incubated with THP-1 macrophages. The Δcdc50 mutant also exhibited weakened virulence in nematode survival tests.

CONCLUSION

The results suggested that the lipid flippase subunit Cdc50 is implicated in yeast budding and cell wall integrity in C. glabrata, and thus have a broad influence on drug susceptibility and virulence. This work highlights the importance of lipid flippase, and offers potential targets for new drug research.

摘要

背景

作为真菌中高度保守的脂质翻转酶类型,P4-ATP 酶在各种细胞过程中发挥着重要作用。Cdc50 作为翻转酶的调节亚基,与 Drs2 形成异二聚体以转运氨基磷脂。已经报道 Cdc50 同源物参与了蛋白质运输、药物敏感性和酿酒酵母、白色念珠菌和新生隐球菌的毒力。Cdc50 可能对真菌细胞过程有广泛的影响。本研究旨在通过构建Δcdc50 缺失突变体及其互补菌株来确定 Cdc50 在光滑念珠菌中的功能。

结果

在光滑念珠菌中,Cdc50 的缺失导致酵母出芽困难,可能是由于肌动蛋白去极化引起的。Δcdc50 突变体也对唑类、卡泊芬净和细胞壁应激物敏感。进一步的实验表明,Δcdc50 突变体中细胞壁完整性途径的过度激活,导致主要细胞壁成分升高。通过流式细胞术也观察到细胞表面β-(1,3)-葡聚糖和几丁质的暴露增加。有趣的是,当Δcdc50 突变体与 THP-1 巨噬细胞共孵育时,我们观察到吞噬率降低。在秀丽隐杆线虫存活试验中,Δcdc50 突变体的毒力也减弱。

结论

结果表明,脂质翻转酶亚基 Cdc50 参与了光滑念珠菌中的酵母出芽和细胞壁完整性,因此对药物敏感性和毒力有广泛影响。这项工作强调了脂质翻转酶的重要性,并为新药研究提供了潜在的靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d8f/10100066/449258f6b3d6/12866_2023_2810_Fig1_HTML.jpg

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