National Key Laboratory of Green Pesticide, Key Laboratory of Green Pesticide and Agricultural Bioengineering, Ministry of Education, Guizhou University, Guiyang 550025, China.
Int J Mol Sci. 2023 Mar 1;24(5):4725. doi: 10.3390/ijms24054725.
Universal stress proteins (USPs) exist across a wide range of species and are vital for survival under stressful conditions. Due to the increasingly harsh global environmental conditions, it is increasingly important to study the role of USPs in achieving stress tolerance. This review discusses the role of USPs in organisms from three aspects: (1) organisms generally have multiple USP genes that play specific roles at different developmental periods of the organism, and, due to their ubiquity, USPs can be used as an important indicator to study species evolution; (2) a comparison of the structures of USPs reveals that they generally bind ATP or its analogs at similar sequence positions, which may underlie the regulatory role of USPs; and (3) the functions of USPs in species are diverse, and are generally directly related to the stress tolerance. In microorganisms, USPs are associated with cell membrane formation, whereas in plants they may act as protein chaperones or RNA chaperones to help plants withstand stress at the molecular level and may also interact with other proteins to regulate normal plant activities. This review will provide directions for future research, focusing on USPs to provide clues for the development of stress-tolerant crop varieties and for the generation of novel green pesticide formulations in agriculture, and to better understand the evolution of drug resistance in pathogenic microorganisms in medicine.
普遍应激蛋白(USPs)存在于广泛的物种中,对于在应激条件下生存至关重要。由于全球环境条件日益恶劣,研究 USPs 在实现应激耐受中的作用变得越来越重要。本综述从三个方面讨论了 USPs 在生物体中的作用:(1)生物体通常具有多个 USP 基因,这些基因在生物体的不同发育阶段发挥特定作用,并且由于其普遍性,USPs 可以用作研究物种进化的重要指标;(2)对 USPs 结构的比较表明,它们通常在相似的序列位置结合 ATP 或其类似物,这可能是 USPs 调节作用的基础;(3)USPs 在物种中的功能多种多样,通常与应激耐受直接相关。在微生物中,USPs 与细胞膜形成有关,而在植物中,它们可能作为蛋白质伴侣或 RNA 伴侣发挥作用,帮助植物在分子水平上耐受应激,还可能与其他蛋白质相互作用以调节正常的植物活动。本综述将为未来的研究提供方向,重点关注 USPs,为开发抗应激作物品种和在农业中生成新型绿色农药制剂提供线索,并更好地理解医学中致病微生物抗药性的进化。