Department of Laboratory Diagnostics, Division of Laboratory Diagnostics, Faculty of Pharmacy, Wroclaw Medical University, Borowska Street 211A, 50-556 Wroclaw, Poland.
Oxid Med Cell Longev. 2022 Aug 28;2022:7657876. doi: 10.1155/2022/7657876. eCollection 2022.
The present review gathers together the most important information about variability in clusterin molecular structure, its profile, and the degree of glycosylation occurring in human tissues and body fluids in the context of the utility of these characteristics as potential diagnostic biomarkers of selected pathophysiological conditions. The carbohydrate part of clusterin plays a crucial role in many biological processes such as endocytosis and apoptosis. Many pathologies associated with neurodegeneration, carcinogenesis, metabolic diseases, and civilizational diseases (e.g., cardiovascular incidents and male infertility) have been described as causes of homeostasis disturbance, in which the glycan part of clusterin plays a very important role. The results of the discussed studies suggest that glycoproteomic analysis of clusterin may help differentiate the severity of hippocampal atrophy, detect the causes of infertility with an immune background, and monitor the development of cancer. Understanding the mechanism of clusterin (CLU) action and its binding epitopes may enable to indicate new therapeutic goals. The carbohydrate part of clusterin is considered necessary to maintain its proper molecular conformation, structural stability, and proper systemic and/or local biological activity. Taking into account the wide spectrum of CLU action and its participation in many processes in the human body, further studies on clusterin glycosylation variability are needed to better understand the molecular mechanisms of many pathophysiological conditions. They can also provide the opportunity to find new biomarkers and enrich the panel of diagnostic parameters for diseases that still pose a challenge for modern medicine.
本综述汇集了关于凝聚素分子结构、其谱和在人类组织和体液中发生的糖基化程度的最重要信息,这些特征可作为选定病理生理状况的潜在诊断生物标志物。凝聚素的碳水化合物部分在许多生物学过程中发挥着关键作用,如内吞作用和细胞凋亡。许多与神经退行性疾病、致癌作用、代谢疾病和文明疾病(如心血管事件和男性不育)相关的疾病被描述为体内平衡紊乱的原因,其中凝聚素的聚糖部分起着非常重要的作用。所讨论研究的结果表明,凝聚素糖蛋白组学分析可能有助于区分海马萎缩的严重程度,检测具有免疫背景的不育症的原因,并监测癌症的发展。了解凝聚素 (CLU) 作用机制及其结合表位可能有助于指明新的治疗目标。凝聚素的碳水化合物部分被认为是维持其适当分子构象、结构稳定性以及适当的全身和/或局部生物活性所必需的。考虑到 CLU 作用的广泛谱及其在人体许多过程中的参与,需要进一步研究凝聚素糖基化的可变性,以更好地了解许多病理生理状况的分子机制。它们还为寻找新的生物标志物和丰富疾病的诊断参数提供了机会,这些疾病仍然对现代医学构成挑战。