白色念珠菌中的 Saps1-3 抗原:暴露于可溶性蛋白、哺乳动物细胞和小鼠感染后的差异调节。

IF 3.4 Q2 INFECTIOUS DISEASES Infectious Disease Reports Pub Date : 2024-06-28 DOI:10.3390/idr16040043
Pedro F Barbosa, Diego S Gonçalves, Lívia S Ramos, Thaís P Mello, Lys A Braga-Silva, Marcia R Pinto, Carlos P Taborda, Marta H Branquinha, André L S Santos
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Supplementation strategies involving increasing concentrations of bovine serum albumin (BSA) added to yeast carbon base (YCB) medium as the sole nitrogenous source revealed a positive and significant correlation between BSA concentration and both the growth rate and the percentage of fluorescent cells (%FC) labeled with anti-Saps1-3 antibodies. Supplementing the YCB medium with various soluble proteins significantly modulated the expression of Saps1-3 antigens in <i>C. albicans</i>. Specifically, immunoglobulin G, gelatin, and total bovine/human sera significantly reduced the %FC, while laminin, human serum albumin, fibrinogen, hemoglobin, and mucin considerably increased the %FC compared to BSA. 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引用次数: 0

摘要

白色念珠菌分泌的天冬氨酸肽酶(Saps)在真菌与宿主相互作用的各个环节中发挥着至关重要的作用。本研究采用流式细胞仪方法,调查了 Saps1-3 抗原在以下情况下的表达情况:(i) 与可溶性蛋白孵育;(ii) 与哺乳动物细胞相互作用;(iii) 感染免疫抑制 BALB/c 小鼠。在作为唯一氮源的酵母碳基(YCB)培养基中添加浓度越来越高的牛血清白蛋白(BSA)的补充策略显示,BSA浓度与生长速度和用抗Saps1-3抗体标记的荧光细胞百分比(%FC)之间存在显著的正相关。在 YCB 培养基中添加各种可溶性蛋白能显著调节白僵菌中 Saps1-3 抗原的表达。具体来说,与 BSA 相比,免疫球蛋白 G、明胶和牛/人血清总蛋白会明显降低抗原表达率,而层粘蛋白、人血清白蛋白、纤维蛋白原、血红蛋白和粘蛋白则会大大提高抗原表达率。此外,与活的上皮细胞或巨噬细胞共培养白葡萄球菌酵母,可分别诱导 78% (平均荧光强度 [MFI] = 152.1)和 82.7% (MFI = 178.2)的酵母细胞表达 Saps1-3 抗原,而 BSA 只诱导 29.3% 的荧光细胞表达 Saps1-3 抗原(MFI = 50.9)。最后,与 BSA 相比,从感染免疫抑制小鼠肾脏中回收的酵母菌产生的 Saps1-3 抗原(MFI = 246.6)增加了 4.8 倍,95.5% 的酵母菌被抗 Saps1-3 抗体标记。总之,这些结果表明,各种关键的宿主蛋白成分以及体外和体内宿主挑战都会对白僵菌中 Saps 的表达产生积极的调节作用。
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Saps1-3 Antigens in Candida albicans: Differential Modulation Following Exposure to Soluble Proteins, Mammalian Cells, and Infection in Mice.

The secreted aspartic peptidases (Saps) of Candida albicans play crucial roles in various steps of fungal-host interactions. Using a flow cytometry approach, this study investigated the expression of Saps1-3 antigens after (i) incubation with soluble proteins, (ii) interaction with mammalian cells, and (iii) infection in immunosuppressed BALB/c mice. Supplementation strategies involving increasing concentrations of bovine serum albumin (BSA) added to yeast carbon base (YCB) medium as the sole nitrogenous source revealed a positive and significant correlation between BSA concentration and both the growth rate and the percentage of fluorescent cells (%FC) labeled with anti-Saps1-3 antibodies. Supplementing the YCB medium with various soluble proteins significantly modulated the expression of Saps1-3 antigens in C. albicans. Specifically, immunoglobulin G, gelatin, and total bovine/human sera significantly reduced the %FC, while laminin, human serum albumin, fibrinogen, hemoglobin, and mucin considerably increased the %FC compared to BSA. Furthermore, co-cultivating C. albicans yeasts with either live epithelial or macrophage cells induced the expression of Saps1-3 antigens in 78% (mean fluorescence intensity [MFI] = 152.1) and 82.7% (MFI = 178.2) of the yeast cells, respectively, compared to BSA, which resulted in 29.3% fluorescent cells (MFI = 50.9). Lastly, the yeasts recovered from the kidneys of infected immunosuppressed mice demonstrated a 4.8-fold increase in the production of Saps1-3 antigens (MFI = 246.6) compared to BSA, with 95.5% of yeasts labeled with anti-Saps1-3 antibodies. Altogether, these results demonstrated the positive modulation of Saps' expression in C. albicans by various key host proteinaceous components, as well as by in vitro and in vivo host challenges.

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来源期刊
Infectious Disease Reports
Infectious Disease Reports INFECTIOUS DISEASES-
CiteScore
5.10
自引率
0.00%
发文量
82
审稿时长
11 weeks
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