Septomics Research Center, Friedrich Schiller University and Leibniz Institute for Natural Product Research and Infection Biology-Hans Knöll Institute, Jena, Germany.
BioControl Jena, Jena, Germany.
NPJ Biofilms Microbiomes. 2022 Oct 13;8(1):78. doi: 10.1038/s41522-022-00341-9.
Candida albicans biofilm maturation is accompanied by enhanced expression of amino acid acquisition genes. Three state-of-the-art omics techniques were applied to detail the importance of active amino acid uptake during biofilm development. Comparative analyses of normoxic wild-type biofilms were performed under three metabolically challenging conditions: aging, hypoxia, and disabled amino acid uptake using a strain lacking the regulator of amino acid permeases Stp2. Aging-induced amino acid acquisition and stress responses to withstand the increasingly restricted environment. Hypoxia paralyzed overall energy metabolism with delayed amino acid consumption, but following prolonged adaptation, the metabolic fingerprints aligned with aged normoxic biofilms. The extracellular metabolome of stp2Δ biofilms revealed deficient uptake for 11 amino acids, resulting in extensive transcriptional and metabolic changes including induction of amino acid biosynthesis and carbohydrate and micronutrient uptake. Altogether, this study underscores the critical importance of a balanced amino acid homeostasis for C. albicans biofilm development.
白色念珠菌生物膜成熟伴随着氨基酸获取基因的表达增强。三种最先进的组学技术被应用于详细研究生物膜发育过程中主动氨基酸摄取的重要性。在三种代谢挑战条件下,对常氧野生型生物膜进行了比较分析:使用缺乏氨基酸通透调节因子 Stp2 的菌株进行老化、缺氧和氨基酸摄取功能丧失。老化诱导的氨基酸获取和应激反应以耐受日益受限的环境。缺氧使整体能量代谢瘫痪,氨基酸消耗延迟,但经过长时间适应后,代谢特征与老化的常氧生物膜一致。stp2Δ生物膜的细胞外代谢组学揭示了 11 种氨基酸摄取不足,导致广泛的转录和代谢变化,包括氨基酸生物合成以及碳水化合物和微量元素摄取的诱导。总的来说,这项研究强调了氨基酸动态平衡对白色念珠菌生物膜发育的至关重要性。