乳酸通过铁减少吸收途径影响真菌病原体对铁的同化
Alexandra Gomes-Gonçalves1,2, Wouter Van Genechten3, Patrícia Ataíde1,2
1CBMA, University of Minho, Braga, Portugal.
MicrobiologyOpen
|December 16, 2025
概括
乳酸盐通过改变铁的吸收来影响Candida albicans的毒性. 这项研究表明,乳酸盐增强了真菌细胞中铁的积累,独立于PKA信号传递,影响铁平衡.
科学领域:
- 菌类学 菌类学是指菌类学.
- 医学微生物学 医学微生物学
- 分子生物学分子生物学
背景情况:
- 菌 (Candida albicans) 是一种人类的真菌共生菌,会引起粘膜和全身感染.
- 适应宿主条件,包括营养的可用性,对于毒性至关重要.
- 乳酸盐是微生物群的产物,它会影响C. albicans的耐药性和免疫逃避.
研究的目的:
- 研究C. albicans在暴露于乳酸盐后的代谢重新连接.
- 了解乳酸对铁的稳态和毒性因子的影响.
主要方法:
- 对C. albicans的全基因组转录组分析.
- 在pH 5的乳酸暴露下基因表达概况.
- 评估铁的吸收和细胞内铁的积累.
- 用铁运输缺陷突变体进行生长测定.
主要成果:
- 乳酸暴露降低了降低铁吸收途径中的基因.
- 乳酸盐促进了C. albicans.细胞内铁的积累.
- 乳酸盐增强铁运输缺陷的C.albicans在铁限制下增长.
- 乳酸诱导的铁同化独立于蛋白激酶A (PKA) 信号传递.
结论:
- 乳酸盐显著影响C. albicans的铁稳定.
- 乳酸的代谢重新连接会影响宿主中的真菌毒性.
- 了解乳酸在铁代谢中的作用,可以了解营养免疫策略.
相关概念视频
Microbial Nutrition
1.0K
Organisms exhibit remarkable metabolic diversity, categorized based on how they acquire energy and carbon. These strategies enable survival in various ecological niches and are essential for maintaining energy flow and nutrient cycling within ecosystems.Energy and Carbon SourcesOrganisms are classified as phototrophs or chemotrophs based on energy acquisition. Phototrophs use light as their energy source, while chemotrophs rely on oxidizing chemical compounds. Further differentiation arises...
1.0K
Sulfur Assimilation
294
Sulfur is an essential element in biological systems, contributing to synthesizing key biomolecules, including amino acids such as cysteine and methionine, and cofactors such as coenzyme A and biotin. Microorganisms primarily assimilate sulfur as sulfate (SO₄²⁻) from the environment, which must undergo a series of biochemical transformations before it can be incorporated into cellular components. As sulfate is highly oxidized, it must undergo assimilatory sulfate reduction to...
294
Microbial Fermentation
1.3K
Fermentation is a crucial anaerobic metabolic process that enables microbes to derive energy from sugar without relying on oxygen or an electron transport chain. This process is fundamental to various biological and industrial applications and is classified based on the metabolic products generated.Role of Pyruvate in FermentationPyruvate and its derivatives serve as key electron acceptors in fermentative pathways. The oxidation of NADH to regenerate NAD+ is essential for the continuation of...
1.3K
Necrosis
6.2K
Necrosis is considered as an “accidental” or unexpected form of cell death that ends in cell lysis. The first noticeable mention of “necrosis” was in 1859 when Rudolf Virchow used this term to describe advanced tissue breakdown in his compilation titled “Cell Pathology”.
Morphological Manifestations of Necrosis
Necrotic cells show different types of morphological appearance depending on the type of tissue and infection. In coagulative necrosis, cells become...
Morphological Manifestations of Necrosis
Necrotic cells show different types of morphological appearance depending on the type of tissue and infection. In coagulative necrosis, cells become...
6.2K
Inorganic Nitrogen Assimilation
428
Nitrogen is an essential element in biological systems, forming a crucial component of proteins, nucleic acids, and other cellular constituents. Many bacteria and archaea acquire nitrogen in the form of nitrate (NO₃⁻) or ammonia (NH₃), which are then assimilated into biomolecules through specific enzymatic pathways.Assimilatory Nitrate ReductionWhen nitrate enters the cell, it undergoes a two-step reduction process known as assimilatory nitrate reduction. Initially, the enzyme...
428
The Early Endosome: Endocytosis of Transferrin
4.6K
Essential proteins such as insulin or low-density lipoprotein (LDL) and micronutrients such as iron enter a eukaryotic cell through receptor-mediated endocytosis. Subsequently, the early endosomes fuse with the vesicles containing such receptor-ligand complexes and play a vital role in sorting the incoming ligands and receptors. While the ligands are either degraded inside the vesicle or released into the cytosol, their receptors are returned to the plasma membrane for further rounds of...
4.6K


