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Galectin-3 in angiogenesis and metastasis

机译:Galectin-3在血管生成和转移中的作用

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摘要

Galectin-3 is a member of the family of β-galactoside-binding lectins characterized by evolutionarily conserved sequences defined by structural similarities in their carbohydrate-recognition domains. Galectin-3 is a unique, chimeric protein consisting of three distinct structural motifs: (i) a short NH2 terminal domain containing a serine phosphorylation site; (ii) a repetitive proline-rich collagen-α-like sequence cleavable by matrix metalloproteases; and (iii) a globular COOH-terminal domain containing a carbohydrate-binding motif and an NWGR anti-death motif. It is ubiquitously expressed and has diverse biological functions depending on its subcellular localization. Galectin-3 is mainly found in the cytoplasm, also seen in the nucleus and can be secreted by non-classical, secretory pathways. In general, secreted galectin-3 mediates cell migration, cell adhesion and cell–cell interactions through the binding with high affinity to galactose-containing glycoproteins on the cell surface. Cytoplasmic galectin-3 exhibits anti-apoptotic activity and regulates several signal transduction pathways, whereas nuclear galectin-3 has been associated with pre-mRNA splicing and gene expression. Its unique chimeric structure enables it to interact with a plethora of ligands and modulate diverse functions such as cell growth, adhesion, migration, invasion, angiogenesis, immune function, apoptosis and endocytosis emphasizing its significance in the process of tumor progression. In this review, we have focused on the role of galectin-3 in tumor metastasis with special emphasis on angiogenesis.
机译:Galectin-3是β-半乳糖苷结合凝集素家族的一员,其特征是进化保守的序列,其序列由其碳水化合物识别结构域中的结构相似性决定。 Galectin-3是一种独特的嵌合蛋白,由三个不同的结构基序组成:(i)含有丝氨酸磷酸化位点的短NH2末端结构域; (ii)可被基质金属蛋白酶切割的重复的富含脯氨酸的胶原-α样序列; (iii)球状COOH-末端结构域,其包含碳水化合物结合基序和NWGR抗死亡基序。它被普遍表达,并根据其亚细胞定位具有多种生物学功能。 Galectin-3主要存在于细胞质中,也见于细胞核中,可以通过非经典的分泌途径分泌。通常,分泌的galectin-3通过与细胞表面含半乳糖的糖蛋白的高亲和力结合来介导细胞迁移,细胞粘附和细胞间相互作用。细胞质的galectin-3表现出抗凋亡活性,并调节几种信号转导途径,而核galectin-3已与mRNA前的剪接和基因表达相关。其独特的嵌合结构使其能够与大量配体相互作用,并调节多种功能,例如细胞生长,粘附,迁移,侵袭,血管生成,免疫功能,细胞凋亡和内吞作用,从而强调其在肿瘤进展过程中的重要性。在这篇综述中,我们集中研究了galectin-3在肿瘤转移中的作用,特别着重于血管生成。

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