Fernández-López Maikel Gilberto, Batista-García Ramón Alberto, Aréchiga-Carvajal Elva Teresa
Unidad de Manipulación Genética, Laboratorio de Micología y Fitopatología, Facultad de Ciencias Biológicas, Universidad Autónoma de Nuevo León, San Nicolás de los Garza 66451, Mexico.
Centro de Investigación en Dinámica Celular, Instituto de Investigación en Ciencias Básicas y Aplicadas, Universidad Autónoma del Estado de Morelos, Cuernavaca 62209, Mexico.
J Fungi (Basel). 2023 Jun 9;9(6):652. doi: 10.3390/jof9060652.
Biotechnologist interest in extremophile microorganisms has increased in recent years. Alkaliphilic and alkali-tolerant fungi that resist alkaline pH are among these. Alkaline environments, both terrestrial and aquatic, can be created by nature or by human activities. and are the two eukaryotic organisms whose pH-dependent gene regulation has received the most study. In both biological models, the PacC transcription factor activates the Pal/Rim pathway through two successive proteolytic mechanisms. PacC is a repressor of acid-expressed genes and an activator of alkaline-expressed genes when it is in an active state. It appears, however, that these are not the only mechanisms associated with pH adaptations in alkali-tolerant fungi. These fungi produce enzymes that are resistant to harsh conditions, i.e., alkaline pH, and can be used in technological processes, such as in the textile, paper, detergent, food, pharmaceutical, and leather tanning industries, as well as in bioremediation of pollutants. Consequently, it is essential to understand how these fungi maintain intracellular homeostasis and the signaling pathways that activate the physiological mechanisms of alkali resistance in fungi.
近年来,生物技术学家对嗜极微生物的兴趣有所增加。耐碱和耐碱性的真菌就属于这类微生物,它们能够抵抗碱性pH值。陆地和水生的碱性环境既可以由自然形成,也可以由人类活动造成。[此处原文缺失两个生物模型的具体名称]是两种pH依赖型基因调控研究最多的真核生物。在这两种生物模型中,PacC转录因子通过两种连续的蛋白水解机制激活Pal/Rim途径。PacC在处于活性状态时,是酸性表达基因的阻遏物和碱性表达基因的激活剂。然而,这些似乎并不是耐碱真菌中与pH适应相关的唯一机制。这些真菌产生的酶能够抵抗恶劣条件,即碱性pH值,可用于纺织、造纸、洗涤剂、食品、制药和皮革鞣制等工艺过程,以及污染物的生物修复。因此,了解这些真菌如何维持细胞内稳态以及激活真菌抗碱生理机制的信号通路至关重要。