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引用次数: 0
摘要
凝集素是生物体内表达最丰富的凝集素(碳水化合物结合蛋白)之一,能特异性地结合β-半乳糖苷。它们不仅在细胞外发挥作用,与细胞外基质糖结合,而且还在细胞内发挥作用,对信号传导途径产生重大影响。Galectin-8 是由 LGALS8 基因编码的一种 galectin 家族蛋白。它在 T 细胞和 B 细胞免疫以及先天性免疫反应中作用明显,可直接作用于树突状细胞并诱导一些促炎细胞因子。在抵御细菌和病毒感染方面,Galectin-8 也发挥着重要作用。众所周知,它通过识别和结合存在于空泡膜上的聚糖,从而充当危险受体,促进抗菌自噬。galectin-8 最重要的作用是调节癌症生长、转移、肿瘤进展和肿瘤细胞存活。重要的是,肿瘤组织中 galectins 的表达通常高于非肿瘤组织。在这篇综述文章中,我们将重点讨论 galectin-8 及其在免疫反应、微生物感染和癌症中的功能。鉴于 galectin-8 的所有这些功能,我们强调了开发新型和选择性 galectin-8 抑制剂的重要性,并报告了这些抑制剂的开发现状。
Galectin-8 inhibition and functions in immune response and tumor biology
Galectins are among organisms' most abundantly expressed lectins (carbohydrate-binding proteins) that specifically bind β-galactosides. They act not only outside the cell, where they bind to extracellular matrix glycans, but also inside the cell, where they have a significant impact on signaling pathways. Galectin-8 is a galectin family protein encoded by the LGALS8 gene. Its role is evident in both T- and B-cell immunity and in the innate immune response, where it acts directly on dendritic cells and induces some pro-inflammatory cytokines. Galectin-8 also plays an important role in the defense against bacterial and viral infections. It is known to promote antibacterial autophagy by recognizing and binding glycans present on the vacuolar membrane, thus acting as a danger receptor. The most important role of galectin-8 is the regulation of cancer growth, metastasis, tumor progression, and tumor cell survival. Importantly, the expression of galectins is typically higher in tumor tissues than in noncancerous tissues. In this review article, we focus on galectin-8 and its function in immune response, microbial infections, and cancer. Given all of these functions of galectin-8, we emphasize the importance of developing new and selective galectin-8 inhibitors and report the current status of their development.
期刊介绍:
Medicinal Research Reviews is dedicated to publishing timely and critical reviews, as well as opinion-based articles, covering a broad spectrum of topics related to medicinal research. These contributions are authored by individuals who have made significant advancements in the field.
Encompassing a wide range of subjects, suitable topics include, but are not limited to, the underlying pathophysiology of crucial diseases and disease vectors, therapeutic approaches for diverse medical conditions, properties of molecular targets for therapeutic agents, innovative methodologies facilitating therapy discovery, genomics and proteomics, structure-activity correlations of drug series, development of new imaging and diagnostic tools, drug metabolism, drug delivery, and comprehensive examinations of the chemical, pharmacological, pharmacokinetic, pharmacodynamic, and clinical characteristics of significant drugs.