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The bisecting GlcNAc in cell growth control and tumor progression

机译:平分的GlcNAc在细胞生长控制和肿瘤进展中

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The bisecting GlcNAc is transferred to the core mannose residue of complex or hybrid N-glycans on glycoproteins by the β1,4-N- acetylglucosaminyltransferase III (GlcNAcT-III) or MGAT3. The addition of the bisecting GlcNAc confers unique lectin recognition properties to Nglycans. Thus, LEC10 gain-of-function Chinese hamster ovary (CHO) cells selected for the acquisition of ricin resistance, carry N-glycans with a bisecting GlcNAc, which enhances the binding of the erythroagglutinin E-PHA, but reduces the binding of ricin and galectins-1, -3 and -8. The altered interaction with galactose-binding lectins suggests that the bisecting GlcNAc affects N-glycan conformation. LEC10 mutants expressing polyoma middle T antigen (PyMT) exhibit reduced growth factor signaling. Furthermore, PyMT-induced mammary tumors lacking MGAT3, progress more rapidly than tumors with the bisecting GlcNAc on N-glycans of cell surface glycoproteins. In recent years, evidence for a new paradigm of cell growth control has emerged involving regulation of cell surface residency of growth factor and cytokine receptors via interactions and cross-linking of their branched N-glycans with a lattice of galectin(s). Specific cross-linking of glycoprotein receptors in the lattice regulates their endocytosis, leading to effects on growth factor-induced signaling. This review will describe evidence that the bisecting GlcNAc of N-glycans regulates cellular signaling and tumor progression, apparently through modulating N-glycan/galectin interactions.
机译:二等分的GlcNAc通过β1,4-N-乙酰氨基葡萄糖氨基转移酶III(GlcNAcT-III)或MGAT3转移到糖蛋白上复合或杂合N-聚糖的核心甘露糖残基。平分的GlcNAc的添加赋予Nglycan独特的凝集素识别特性。因此,为获得蓖麻毒素抗性而选择的LEC10功能性中国仓鼠卵巢(CHO)细胞携带带有二等分GlcNAc的N-聚糖,这增强了红血球凝集素E-PHA的结合,但降低了蓖麻毒素和galectins-1,-3和-8。与半乳糖结合的凝集素相互作用的改变表明平分的GlcNAc影响N-聚糖构象。表达多瘤中期T抗原(PyMT)的LEC10突变体表现出减少的生长因子信号转导。此外,缺乏MGAT3的PyMT诱导的乳腺肿瘤比在细胞表面糖蛋白的N-聚糖上平分GlcNAc的肿瘤进展更快。近年来,出现了新的细胞生长控制范例,涉及通过其支链N-聚糖与半乳凝素的相互作用和交联来调节生长因子和细胞因子受体在细胞表面的驻留。糖蛋白受体在晶格中的特定交联调节其内吞作用,从而导致对生长因子诱导的信号传导的影响。这篇综述将描述证据,证明平分N聚糖的GlcNAc调节细胞信号传导和肿瘤进展,显然是通过调节N聚糖/半乳糖凝集素的相互作用。

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