Institute of Biochemistry II, Medical Faculty, University of Cologne, Köln, Germany.
J Biol Chem. 2012 May 25;287(22):18275-86. doi: 10.1074/jbc.M111.280297. Epub 2012 Apr 3.
The terminal modification of glycans by β4 addition of N-acetylgalactosamine to N-acetylglucosamine with formation of the N,N-diacetyllactosediamine (LacdiNAc) moiety has been well documented for a number of N-linked glycoproteins and peptides, like neurohormones. Much less is known about O-glycoproteins in this regard because only human zona pellucida glycoprotein 3 (ZP3) and bovine proopiomelanocortin were reported to be LacdiNAc-modified. In searching for mammalian proteins modified with O-linked LacdiNAc we identified six positive species among nine endogenous and recombinant O-glycoproteins, which were extracellular matrix, or matrix-related proteins. These are ZP3 and the five novel LacdiNAc-positive species ECM1, AMACO, nidogen-1, α-dystroglycan, and neurofascin. The mass spectrometric analyses revealed a core 2-based tetrasaccharide as the common structural basis of O-linked LacdiNAc that could be further modified, similar to the type 2 LacNAc termini, with fucose, sialic acid, or sulfate. Here, we provide structural evidence for a novel type of mucin-type O-glycans that is strictly specific for LacdiNAc termini: sugar phosphorylation with formation of GalNAcβ1-4(phospho-)GlcNAc. The structural details of the phosphatase-labile compound were elucidated by MS(2) analysis of tetralysine complexes and by MS(n) measurements of the permethylated glycan alditols. Phospho-LacdiNAc was detected in human HEK-293 as well as in mouse myoblast cells and in bovine brain tissue.
糖基末端通过β4 添加 N-乙酰半乳糖胺到 N-乙酰葡萄糖胺形成 N,N-二乙酰乳糖胺(LacdiNAc)部分,这种修饰方式在许多 N-连接糖蛋白和肽类,如神经激素中已经得到了很好的证明。在这方面,关于 O-糖蛋白的了解要少得多,因为只有人透明带糖蛋白 3(ZP3)和牛促黑皮质素原被报道为 LacdiNAc 修饰。在寻找被 O-连接的 LacdiNAc 修饰的哺乳动物蛋白时,我们在 9 种内源性和重组 O-糖蛋白中鉴定出 6 种阳性种,它们是细胞外基质或与基质相关的蛋白。这些是 ZP3 和 5 种新的 LacdiNAc 阳性种 ECM1、AMACO、nidogen-1、α- dystroglycan 和神经束蛋白。质谱分析显示,核心 2 基四糖是 O-连接 LacdiNAc 的共同结构基础,它可以进一步修饰,类似于类型 2 LacNAc 末端,可加上岩藻糖、唾液酸或硫酸。在这里,我们提供了结构证据,证明存在一种新型的粘蛋白型 O-聚糖,其严格特异性地针对 LacdiNAc 末端:糖基磷酸化形成 GalNAcβ1-4(磷酸化)-GlcNAc。通过四赖氨酸复合物的 MS(2)分析和甲基化糖醛醇的 MS(n)测量,阐明了该磷酸酶不稳定化合物的结构细节。在人 HEK-293 以及小鼠成肌细胞和牛脑组织中均检测到了磷酸化 LacdiNAc。