Chemical Biology Program, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.
The Institute of Chemical Sciences and Technologies (SCITEC), Italian National Research Council (CNR), 20131 Milano, Italy.
Biomolecules. 2024 Feb 27;14(3):282. doi: 10.3390/biom14030282.
Glycosylation, a prevalent post-translational modification, plays a pivotal role in regulating intricate cellular processes by covalently attaching glycans to macromolecules. Dysregulated glycosylation is linked to a spectrum of diseases, encompassing cancer, neurodegenerative disorders, congenital disorders, infections, and inflammation. This review delves into the intricate interplay between glycosylation and protein conformation, with a specific focus on the profound impact of N-glycans on the selection of distinct protein conformations characterized by distinct interactomes-namely, protein assemblies-under normal and pathological conditions across various diseases. We begin by examining the spike protein of the SARS virus, illustrating how N-glycans regulate the infectivity of pathogenic agents. Subsequently, we utilize the prion protein and the chaperone glucose-regulated protein 94 as examples, exploring instances where N-glycosylation transforms physiological protein structures into disease-associated forms. Unraveling these connections provides valuable insights into potential therapeutic avenues and a deeper comprehension of the molecular intricacies that underlie disease conditions. This exploration of glycosylation's influence on protein conformation effectively bridges the gap between the glycome and disease, offering a comprehensive perspective on the therapeutic implications of targeting conformational mutants and their pathologic assemblies in various diseases. The goal is to unravel the nuances of these post-translational modifications, shedding light on how they contribute to the intricate interplay between protein conformation, assembly, and disease.
糖基化是一种普遍的翻译后修饰,通过将聚糖共价连接到大分子上来调节复杂的细胞过程,起着关键作用。糖基化失调与一系列疾病有关,包括癌症、神经退行性疾病、先天性疾病、感染和炎症。本综述深入探讨了糖基化与蛋白质构象之间的复杂相互作用,特别关注 N-聚糖对不同蛋白质构象选择的深远影响,这些构象在各种疾病的正常和病理条件下具有不同的互作组,即蛋白质组装。我们首先研究了 SARS 病毒的刺突蛋白,说明了 N-聚糖如何调节致病因子的感染力。随后,我们以朊病毒蛋白和伴侣葡萄糖调节蛋白 94 为例,探讨了 N-糖基化如何将生理蛋白质结构转化为与疾病相关的形式的情况。揭示这些联系为潜在的治疗途径提供了有价值的见解,并深入了解了疾病状态下分子复杂性的基础。这种对糖基化影响蛋白质构象的研究有效地弥合了聚糖和疾病之间的差距,全面探讨了针对构象突变体及其在各种疾病中的病理组装的治疗意义。目标是揭示这些翻译后修饰的细微差别,阐明它们如何在蛋白质构象、组装和疾病之间的复杂相互作用中发挥作用。