Department of Pharmacy Practice, University of Illinois-Chicago, 833 South Wood Street, Chicago, IL, 60612, USA.
Department of Pharmacy, The Fifth Affiliated Hospital of Guangzhou Medical University, 621 Harbour Road, Guangzhou, Guangdong, 510700, P. R. China.
Proteomics. 2021 Feb;21(3-4):e1900386. doi: 10.1002/pmic.201900386. Epub 2020 Dec 31.
Plant-derived natural products (NPs) with electrophilic functional groups engage various subsets of the proteome via covalent modification of nucleophilic cysteine residues. This electrophile-nucleophile interaction can change protein conformation, alter protein function, and modulate their biological action. The biological significance of these covalent protein modifications in health and disease is increasingly recognized. One way to understand covalent NP-protein interactions is to utilize traditional proteomics and modern mass spectrometry (MS)-based proteomic strategies. These strategies have proven effective in uncovering specific NP protein targets and are critical first steps that allow for a much deeper understanding of the ability of NPs to modulate cellular processes. Here, plant-derived NPs that covalently modify proteins are reviewed, the biological significance of these covalent modifications, and the different proteomic strategies that have been employed to study these NP-protein interactions.
植物源天然产物 (NPs) 带有亲电官能团,通过与亲核半胱氨酸残基的共价修饰来作用于蛋白质组的各个亚类。这种亲电-亲核相互作用可以改变蛋白质构象、改变蛋白质功能,并调节其生物作用。这些在健康和疾病中具有共价蛋白质修饰的生物学意义正日益得到认可。了解共价 NP-蛋白相互作用的一种方法是利用传统的蛋白质组学和现代基于质谱 (MS) 的蛋白质组学策略。这些策略已被证明在揭示特定的 NP 蛋白靶标方面非常有效,是深入了解 NPs 调节细胞过程能力的关键的第一步。本文综述了共价修饰蛋白质的植物源 NPs、这些共价修饰的生物学意义以及用于研究这些 NP-蛋白相互作用的不同蛋白质组学策略。