Graduate School of Natural Science and Technology, Gifu University, Gifu 501-1193, Japan.
Department of Biological Chemistry, Human Health Sciences, Graduate School of Medicine, Kyoto University, Kyoto 606-8501, Japan.
Molecules. 2021 Aug 26;26(17):5176. doi: 10.3390/molecules26175176.
Human natural killer-1 (HNK-1) is a sulfated glyco-epitope regulating cell adhesion and synaptic functions. HNK-1 and its non-sulfated forms, which are specifically expressed in the brain and the kidney, respectively, are distinctly biosynthesized by two homologous glycosyltransferases: GlcAT-P in the brain and GlcAT-S in the kidney. However, it is largely unclear how the activity of these isozymes is regulated in vivo. We recently found that bisecting GlcNAc, a branching sugar in -glycan, suppresses both GlcAT-P activity and HNK-1 expression in the brain. Here, we observed that the expression of non-sulfated HNK-1 in the kidney is unexpectedly unaltered in mutant mice lacking bisecting GlcNAc. This suggests that the biosynthesis of HNK-1 in the brain and the kidney are differentially regulated by bisecting GlcNAc. Mechanistically, in vitro activity assays demonstrated that bisecting GlcNAc inhibits the activity of GlcAT-P but not that of GlcAT-S. Furthermore, molecular dynamics simulation showed that GlcAT-P binds poorly to bisected -glycan substrates, whereas GlcAT-S binds similarly to bisected and non-bisected -glycans. These findings revealed the difference of the highly homologous isozymes for HNK-1 synthesis, highlighting the novel mechanism of the tissue-specific regulation of HNK-1 synthesis by bisecting GlcNAc.
人类自然杀伤细胞-1(HNK-1)是一种硫酸化糖基表位,调节细胞黏附和突触功能。HNK-1 及其非硫酸化形式分别特异性表达于脑和肾脏,分别由两种同源糖基转移酶:脑内的 GlcAT-P 和肾脏内的 GlcAT-S 进行特异性生物合成。然而,这些同工酶的活性在体内是如何被调控的,在很大程度上还不清楚。我们最近发现,分支糖 GlcNAc 的双糖部分(bisecting GlcNAc)抑制了脑内 GlcAT-P 的活性和 HNK-1 的表达。在这里,我们观察到缺乏双糖部分 GlcNAc 的突变小鼠肾脏中非硫酸化 HNK-1 的表达出人意料地没有改变。这表明 HNK-1 在脑和肾脏中的生物合成受到双糖部分 GlcNAc 的差异调控。从机制上讲,体外活性测定表明,双糖部分 GlcNAc 抑制了 GlcAT-P 的活性,但不抑制 GlcAT-S 的活性。此外,分子动力学模拟表明,GlcAT-P 与双糖化 - 聚糖底物结合不良,而 GlcAT-S 与双糖化和非双糖化 - 聚糖结合相似。这些发现揭示了高度同源同工酶在 HNK-1 合成中的差异,强调了双糖部分 GlcNAc 对 HNK-1 合成的组织特异性调控的新机制。