首页> 美国卫生研究院文献>Bioscience Reports >Carbohydrate-to-carbohydrate interactions between α23-linked sialic acids on α2 integrin subunits and asialo-GM1 underlie the bone metastatic behaviour of LNCAP-derivative C4-2B prostate cancer cells
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Carbohydrate-to-carbohydrate interactions between α23-linked sialic acids on α2 integrin subunits and asialo-GM1 underlie the bone metastatic behaviour of LNCAP-derivative C4-2B prostate cancer cells

机译:L2CAP衍生的C4-2B前列腺癌细胞的α23-连锁唾液酸α2整联蛋白亚基和去唾液酸GM1之间的碳水化合物之间的相互作用

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摘要

Complex interplays among proteins, lipids and carbohydrates can alter the phenotype and are suggested to have a crucial role in tumour metastasis. Our previous studies indicated that a complex of the GSLs (glycosphingolipids), AsGM1 (asialo-GM1), which lacks α2,3-linked sialic acid, and α2β1 integrin receptors is responsible for the metastatic behaviour of C4-2B prostate cancer cells. Herein, we identified and addressed the functional significance of changes in sialylation during prostate cancer progression. We observed an increase in α2,3-linked sialic acid residues on α2 subunits of α2β1 integrin receptors, correlating with increased gene expression of α2,3-STs (sialyltransferases), particularly ST3GAL3. Cell surface α2,3-sialylation of α2 subunits was required for the integrin α2β1-dependent cell adhesion to collagen type I and the same α2,3-linked sialic acid residues on the integrin receptor were responsible for the interaction with the carbohydrate moiety of AsGM1, explaining the complex formation between AsGM1 and α2β1 integrin receptors. These results provide novel insights into the role of sialic acids in the organization and function of important membrane components in invasion and metastatic processes.
机译:蛋白质,脂质和碳水化合物之间的复杂相互作用可以改变表型,并被认为在肿瘤转移中起着至关重要的作用。我们以前的研究表明,缺少α2,3-连接的唾液酸和α2β1整联蛋白受体的GSLs(糖鞘脂),AsGM1(asialo-GM1)的复合物是导致C4-2B前列腺癌细胞转移的原因。本文中,我们确定并解决了前列腺癌进展过程中唾液酸化改变的功能意义。我们观察到α2β1整联蛋白受体的α2亚基上的α2,3-连接的唾液酸残基增加,与α2,3-STs(唾液酸转移酶),特别是ST3GAL3的基因表达增加相关。整合素α2β1依赖的细胞粘附至I型胶原需要细胞表面α2,3-唾液酸化,整合素受体上相同的与α2,3-连接的唾液酸残基负责与AsGM1碳水化合物部分的相互作用,解释了AsGM1和α2β1整合素受体之间的复合物形成。这些结果提供了对唾液酸在入侵和转移过程中重要膜成分的组织和功能中的作用的新颖见解。

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