Kazan Institute of Biochemistry and Biophysics, FRC Kazan Scientific Center of RAS, P.O. Box 261, Kazan 420111, Russia.
School of Life Sciences, University of KwaZulu-Natal, Private Bag X01, Scottsville 3209, South Africa.
Int J Mol Sci. 2024 Jul 25;25(15):8122. doi: 10.3390/ijms25158122.
Sterols play important structural and regulatory roles in numerous intracellular processes. Unlike animals, plants contain a distinctive and diverse variety of sterols. Recently, information has emerged showing that stigmasterol is a "stress sterol". Stigmasterol is synthesized via the mevalonate biosynthesis pathway and has structural similarity to -sitosterol but differs in the presence of a trans-oriented double bond in the side chain. In plants, the accumulation of stigmasterol has been observed in response to various stresses. However, the precise ways that stigmasterol is involved in the stress responses of plants remain unclear. This comprehensive review provides an update on the biology of stigmasterol, particularly the physicochemical properties of this ethylsterol, its biosynthesis, and its occurrence in higher plants and extremophilic organisms, e.g., mosses and lichens. Special emphasis is given to the evolutionary aspects of stigmasterol biosynthesis, particularly the variations in the gene structure of C22-sterol desaturase, which catalyzes the formation of stigmasterol from -sitosterol, in a diversity of evolutionarily distant organisms. The roles of stigmasterol in the tolerance of plants to hostile environments and the prospects for its biomedical applications are also discussed. Taken together, the available data suggest that stigmasterol plays important roles in plant metabolism, although in some aspects, it remains an enigmatic compound.
甾醇在许多细胞内过程中发挥着重要的结构和调节作用。与动物不同,植物含有独特而多样的甾醇。最近的信息表明,豆甾醇是一种“应激甾醇”。豆甾醇通过甲羟戊酸生物合成途径合成,与β-谷甾醇结构相似,但在侧链中存在一个反式取向的双键。在植物中,甾醇的积累已被观察到对各种胁迫的反应。然而,豆甾醇参与植物应激反应的确切方式仍不清楚。本综述提供了关于豆甾醇生物学的最新信息,特别是这种乙基甾醇的物理化学性质、生物合成及其在高等植物和极端生物中的存在,如苔藓和地衣。特别强调了豆甾醇生物合成的进化方面,特别是催化β-谷甾醇形成豆甾醇的 C22-甾醇去饱和酶基因结构的变化,这种变化存在于多种进化上遥远的生物中。还讨论了豆甾醇在植物耐受恶劣环境中的作用以及其在生物医学应用中的前景。总的来说,现有数据表明,豆甾醇在植物代谢中发挥着重要作用,尽管在某些方面,它仍然是一种神秘的化合物。