Hospital for Skin Diseases, Institute of Dermatology, Chinese Academy of Medical Sciences (CAMS) & Peking Union Medical College (PUMC), Nanjing, China.
Department of Microbiology & Immunology, Georgetown University Medical Center, Washington, DC, USA.
Virulence. 2024 Dec;15(1):2412750. doi: 10.1080/21505594.2024.2412750. Epub 2024 Oct 8.
is an opportunistic fungal pathogen known for surviving in various nutrient-limited conditions within the host and causing infections. Our prior research revealed that Hfl1p, an archaeal histone-like or Hap5-like protein, is linked to mitochondrial ATP generation and yeast-hyphae morphogenesis. However, the specific roles of Hfl1p in these virulence behaviours, through its function in the CBF/NF-Y complex or as a DNA polymerase II subunit, remain unclear. This study explores Hfl1p's diverse functions in energy metabolism and morphogenesis. By combining proteomic analysis and phenotypic evaluations of the mutant with ChIP data, we found that Hfl1p significantly impacts mitochondrial DNA-encoded CI subunits, the tricarboxylic acid (TCA) cycle, and morphogenetic pathways. This influence occurs either independently or alongside other transcription factors recognizing a conserved DNA motif (TAXXTAATTA). These findings emphasize Hfl1p's critical role in linking carbon metabolism and mitochondrial respiration to the yeast-to-filamentous form transition, enhancing our understanding of ' metabolic adaptability during morphological transition, an important pathogenic trait of this fungus. This could help identify therapeutic targets by disrupting the relationship between energy metabolism and cell morphology in
是一种机会性真菌病原体,已知能够在宿主内的各种营养受限条件下生存,并引起感染。我们之前的研究表明,Hfl1p,一种古细菌组蛋白样或 Hap5 样蛋白,与线粒体 ATP 生成和酵母-菌丝形态发生有关。然而,Hfl1p 在这些毒力行为中的具体作用,通过其在 CBF/NF-Y 复合物中的功能或作为 DNA 聚合酶 II 亚基,仍然不清楚。本研究探讨了 Hfl1p 在能量代谢和形态发生中的多种功能。通过结合蛋白质组分析和突变体的表型评估以及 ChIP 数据,我们发现 Hfl1p 显著影响线粒体 DNA 编码的 CI 亚基、三羧酸 (TCA) 循环和形态发生途径。这种影响既可以独立发生,也可以与其他识别保守 DNA 模体 (TAXXTAATTA) 的转录因子一起发生。这些发现强调了 Hfl1p 在将碳代谢和线粒体呼吸与酵母到丝状形态转变联系起来的关键作用,增强了我们对“形态转变过程中代谢适应性”的理解,这是该真菌的一个重要致病特征。这可能有助于通过破坏能量代谢和细胞形态之间的关系来确定治疗靶点。