Department of Biomedical and Molecular Sciences, Queen's University, Kingston K7L 3N6, Canada.
Department of Chemistry, Queen's University, Kingston K7L 3N6, Canada.
ACS Chem Biol. 2023 Nov 17;18(11):2418-2429. doi: 10.1021/acschembio.3c00475. Epub 2023 Nov 7.
Exo-enzymatic glycan labeling strategies have emerged as versatile tools for efficient and selective installation of terminal glyco-motifs onto live cell surfaces. Through employing specific enzymes and nucleotide-sugar probes, cells can be equipped with defined glyco-epitopes for modulating cell function or selective visualization and enrichment of glycoconjugates. Here, we identifysialyltransferase Cst-II I53S as a tool for cell surface glycan modification, expanding the exo-enzymatic labeling toolkit to include installation of α2,8-disialyl epitopes. Labeling with Cst-II was achieved with biotin- and azide-tagged CMP-Neu5Ac derivatives on a model glycoprotein and native sialylated cell surface glycans across a panel of cell lines. The introduction of modified Neu5Ac derivatives onto cells by Cst-II was also retained on the surface for 6 h. By examining the specificity of Cst-II on cell surfaces, it was revealed that the α2,8-sialyltransferase primarily labeled N-glycans, with O-glycans labeled to a lesser extent, and there was an apparent preference for α2,3-linked sialosides on cells. This approach thus broadens the scope of tools for selective exo-enzymatic labeling of native sialylated glycans and is highly amenable for the construction of cell-based arrays.
外切糖苷酶糖基化标记策略已成为在活细胞表面高效、选择性地安装末端糖基基序的通用工具。通过使用特定的酶和核苷酸糖探针,可以为细胞配备定义明确的糖基表位,以调节细胞功能或选择性地可视化和富集糖缀合物。在这里,我们鉴定出唾液酸转移酶 Cst-II I53S 是一种用于细胞表面糖基化修饰的工具,将外切酶标记工具包扩展到包括α2,8-二唾液酰基表位的安装。用生物素和叠氮化物标记的 CMP-Neu5Ac 衍生物在模型糖蛋白和一系列细胞系的天然唾液酸化细胞表面糖上实现了 Cst-II 的标记。通过 Cst-II 将修饰的 Neu5Ac 衍生物引入细胞表面后,其在表面保留了 6 小时。通过研究 Cst-II 在细胞表面的特异性,发现该α2,8-唾液酸转移酶主要标记 N-聚糖,O-聚糖的标记程度较低,并且细胞表面上α2,3 连接的唾液酸苷明显优先。因此,这种方法拓宽了用于选择性外切酶标记天然唾液酸化糖的工具范围,非常适合构建基于细胞的阵列。