Folorunso Olufemi S, Sebolai Olihile M
Department of Microbiology and Biochemistry University of the Free State, 205 Nelson Mandela Drive, Park West, Bloemfontein 9301, South Africa.
Int J Microbiol. 2024 Aug 8;2024:5566438. doi: 10.1155/2024/5566438. eCollection 2024.
One unique attribute of is its ability to procure essential monomers from its surroundings to survive in diverse environments. Preferentially, sugars are the energy sources for this opportunistic pathogenic fungus under the carbon catabolite repression (CCR); however, sugar restriction induces alternative use of low molecular weight alcohol, organic acids, and amino acids. The expression of transmembrane amino acid permeases (Aaps) allows to utilize different amino acids and their conjugates, notwithstanding under the nitrogen catabolite repression (NCR). Being referred to as global permeases, there is a notion that all cryptococcal Aaps are important to survival and virulence. This functional divergence makes alternative drug targeting against a challenge. We examine the functions and regulations of Aap variants with the aim of rationalizing their relevance to cryptococcal cell survival and virulence. Based on nutrient bioavailability, we linked the Cac1 pathway to Ras1 activation for thermotolerance that provides a temperature cushion for Aap activity under physiological conditions. Lastly, mutants of Aaps are examined for significant phenotypic deficiencies/advantages, which buttress the specific importance of limited numbers of Aaps involved in cryptococcal infections.
[此处原文不完整,缺少具体所指内容]的一个独特特性是其能够从周围环境中获取必需的单体以在不同环境中生存。在碳分解代谢物阻遏(CCR)下,糖类优先作为这种机会性致病真菌的能量来源;然而,糖限制会诱导其转而利用低分子量醇、有机酸和氨基酸。跨膜氨基酸通透酶(Aaps)的表达使[此处原文不完整,缺少具体所指内容]能够利用不同的氨基酸及其共轭物,尽管处于氮分解代谢物阻遏(NCR)之下。被称为全局通透酶,有一种观点认为所有隐球菌属的Aaps对生存和毒力都很重要。这种功能差异使得针对[此处原文不完整,缺少具体所指内容]的替代药物靶向成为一项挑战。我们研究了[此处原文不完整,缺少具体所指内容]Aap变体的功能和调控,目的是阐明它们与隐球菌细胞生存和毒力的相关性。基于营养物质的生物可利用性,我们将Cac1途径与Ras1激活联系起来以实现耐热性,这为生理条件下Aap的活性提供了一个温度缓冲。最后,对Aaps的突变体进行了显著表型缺陷/优势的检测,这支持了参与隐球菌感染的有限数量的Aaps的特定重要性。