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Hog1在调节脂滴稳态中发挥作用。

Hog1 plays a role in regulating lipid droplet homeostasis.

作者信息

Peng Xueling

机构信息

Pathogenic Biology Institute, Hengyang Medical College, University of South China, Hengyang, Hunan, China.

出版信息

Arch Microbiol. 2025 Jul 9;207(9):190. doi: 10.1007/s00203-025-04390-4.

Abstract

Hog1, the high-osmolarity glycerol response protein, is a crucial protein that responds to hypertonicity by enhancing glycerol production, subsequently raising intracellular osmotic pressure to resist hyperosmotic stress and protect cells. In this work, I uncover a previously unknown function of Hog1: regulating the deposition of lipid droplets. In my previous research, I discovered that in a glucose-rich medium, The Candida albicans vip1Δ/Δ strain, which lacks the inositol hexakisphosphate kinase gene, exhibits marked accumulation of lipid droplets, ultimately culminating in cell death. In this study, I found that overexpressing HOG1 could alleviate the excessive accumulation of lipid droplets and prevent cell death. Further investigation revealed that neither the knockout nor overexpression of HOG1 affected the energy homeostasis of the vip1Δ/Δ, but instead, modulated the osmotic pressure balance within the cell to regulate lipid droplet aggregation. Interestingly, in wild-type (WT) strains, neither HOG1 overexpression nor exposure to hypertonic stimuli altered intracellular lipid droplet levels. However, upon treatment with oleic acid (OA), which promotes lipid droplet accumulation in WT cells, HOG1 overexpression significantly reduced the extent of this accumulation. This observation underscores Hog1's ability to modulate lipid droplet metabolism specifically in C. albicans strains that are prone to excessive lipid droplet accumulation. In summary, my study unveils a previously unrecognized function of Hog1 in regulating lipid droplet homeostasis in C. albicans, particularly in contexts where lipid droplet accumulation is prominent, emphasizing its multifaceted role in cellular adaptation and stress response.

摘要

Hog1是一种高渗甘油反应蛋白,是一种关键蛋白,它通过增强甘油生成来响应高渗状态,随后提高细胞内渗透压以抵抗高渗应激并保护细胞。在这项研究中,我发现了Hog1一个此前未知的功能:调节脂滴的沉积。在我之前的研究中,我发现,在富含葡萄糖的培养基中,缺乏肌醇六磷酸激酶基因的白色念珠菌vip1Δ/Δ菌株会出现明显的脂滴积累,最终导致细胞死亡。在本研究中,我发现过表达HOG1可以缓解脂滴的过度积累并防止细胞死亡。进一步研究表明,HOG1的敲除或过表达均不影响vip1Δ/Δ的能量稳态,而是调节细胞内的渗透压平衡以调控脂滴聚集。有趣的是,在野生型(WT)菌株中,HOG1过表达或暴露于高渗刺激均未改变细胞内脂滴水平。然而,在用油酸(OA)处理后,油酸会促进WT细胞中脂滴的积累,HOG1过表达显著降低了这种积累的程度。这一观察结果强调了Hog1在特定的白色念珠菌菌株中调节脂滴代谢的能力,这些菌株容易出现脂滴过度积累。总之,我的研究揭示了Hog1在调节白色念珠菌脂滴稳态方面此前未被认识的功能,特别是在脂滴积累突出的情况下,强调了其在细胞适应和应激反应中的多方面作用。

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