Zhang Nan, Liu Qiao, Wang Daihan, Wang Xiaoyun, Pan Zhaoping, Han Bo, He Gu
State Key Laboratory of Southwestern Chinese Medicine Resources, College of Medical Technology and School of Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu, 611137, China.
Institute of Precision Drug Innovation and Cancer Center, the Second Hospital of Dalian Medical University, Dalian, 116023, China.
Biomark Res. 2025 Mar 25;13(1):49. doi: 10.1186/s40364-025-00759-1.
Galectins play pivotal roles in cellular recognition and signaling processes by interacting with glycoconjugates. Extensive research has highlighted the significance of Galectins in the context of cancer, aiding in the identification of biomarkers for early detection, personalized therapy, and predicting treatment responses. This review offers a comprehensive overview of the structural characteristics, ligand-binding properties, and interacting proteins of Galectins. We delve into their biological functions and examine their roles across various cancer types. Galectins, characterized by a conserved carbohydrate recognition domain (CRD), are divided into prototype, tandem-repeat, and chimera types based on their structural configurations. Prototype Galectins contain a single CRD, tandem-repeat Galectins contain two distinct CRDs linked by a peptide, and the chimera-type Galectin-3 features a unique structural arrangement. The capacity of Galectins to engage in multivalent interactions allows them to regulate a variety of signaling pathways, thereby affecting cell fate and function. In cancer, Galectins contribute to tumor cell transformation, angiogenesis, immune evasion, and metastasis, making them critical targets for therapeutic intervention. This review discusses the multifaceted roles of Galectins in cancer progression and explores current advancements in the development of Galectin-targeted therapies. We also address the challenges and future directions for integrating Galectin research into clinical practice to enhance cancer treatment outcomes. In brief, understanding the complex functions of Galectins in cancer biology opens new avenues for therapeutic strategies. Continued research on Galectin interactions and their pathological roles is essential for developing effective carbohydrate-based treatments and improving clinical interventions for cancer patients.
半乳糖凝集素通过与糖缀合物相互作用,在细胞识别和信号传导过程中发挥关键作用。广泛的研究突出了半乳糖凝集素在癌症背景下的重要性,有助于识别用于早期检测、个性化治疗和预测治疗反应的生物标志物。本综述全面概述了半乳糖凝集素的结构特征、配体结合特性和相互作用蛋白。我们深入探讨它们的生物学功能,并研究它们在各种癌症类型中的作用。半乳糖凝集素以保守的碳水化合物识别结构域(CRD)为特征,根据其结构构型分为原型、串联重复型和嵌合型。原型半乳糖凝集素含有单个CRD,串联重复型半乳糖凝集素含有两个由肽连接的不同CRD,嵌合型半乳糖凝集素-3具有独特的结构排列。半乳糖凝集素进行多价相互作用的能力使它们能够调节多种信号通路,从而影响细胞命运和功能。在癌症中,半乳糖凝集素有助于肿瘤细胞转化、血管生成、免疫逃逸和转移,使其成为治疗干预的关键靶点。本综述讨论了半乳糖凝集素在癌症进展中的多方面作用,并探讨了靶向半乳糖凝集素治疗的当前进展。我们还讨论了将半乳糖凝集素研究整合到临床实践中以提高癌症治疗效果所面临的挑战和未来方向。简而言之,了解半乳糖凝集素在癌症生物学中的复杂功能为治疗策略开辟了新途径。继续研究半乳糖凝集素的相互作用及其病理作用对于开发有效的基于碳水化合物的治疗方法和改善癌症患者的临床干预至关重要。