Centro de Química Estrutural, Faculdade de Ciências, Universidade de Lisboa, Campo Grande, Portugal.
FEBS Lett. 2020 Nov;594(22):3698-3718. doi: 10.1002/1873-3468.13986.
Plasma membrane carries out multiple physiological functions that require its dynamic and tightly regulated organization into specialized domains of different size, stability, and lipid/protein composition. Sphingolipids are a group of lipids in which the plasma membrane is particularly enriched, thus being crucial for its structure and function. A specific type of sphingolipid-enriched plasma membrane domains, where ergosterol is depleted and lipids are tightly packed in a rigid gel phase, has recently been found in several fungal species, including yeasts and moulds. After presenting the main biophysical features of gel domains and the experimental method for their detection in the fungal plasma membrane, we review these sphingolipid-enriched gel domains and illustrate their importance to both unicellular and multicellular fungi. First, the biophysical properties of the fungal sphingolipid-enriched domains will be analysed taking into consideration the plasma membrane sphingolipidome. Next, their possible biological roles will be summarized, including their relations with plasma membrane compartments and involvement in stress responses. Moreover, since the plasma membrane is a target for several antifungal compounds, a biophysical connection between sphingolipid-enriched domains and antifungal action will be explored.
质膜执行多种生理功能,需要其动态且受到严格调控的组织成为不同大小、稳定性和脂质/蛋白质组成的专门区域。神经酰胺是一组脂质,其中质膜特别丰富,因此对其结构和功能至关重要。最近在几种真菌物种中发现了一种特殊类型的富含神经酰胺的质膜域,其中麦角固醇耗尽,脂质紧密排列在刚性凝胶相中,包括酵母和霉菌。在介绍凝胶域的主要生物物理特征以及在真菌质膜中检测它们的实验方法之后,我们将回顾这些富含神经酰胺的凝胶域,并说明它们对单细胞和多细胞真菌的重要性。首先,将根据质膜神经酰胺组分析真菌富含神经酰胺的域的生物物理特性。接下来,将总结它们可能的生物学作用,包括它们与质膜隔室的关系以及在应激反应中的参与。此外,由于质膜是几种抗真菌化合物的靶标,因此将探索富含神经酰胺的域与抗真菌作用之间的生物物理联系。