首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Polysialic Acid on Neuropilin-2 Is Exclusively Synthesized by the Polysialyltransferase ST8SiaIV and Attached to Mucin-type O-Glycans Located between the b2 and c Domain
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Polysialic Acid on Neuropilin-2 Is Exclusively Synthesized by the Polysialyltransferase ST8SiaIV and Attached to Mucin-type O-Glycans Located between the b2 and c Domain

机译:Neuropilin-2上的聚唾液酸是由聚唾液酸转移酶ST8SiaIV独家合成的并与位于b2和c结构域之间的粘蛋白型O-聚糖连接

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摘要

Neuropilin-2 (NRP2) is well known as a co-receptor for class 3 semaphorins and vascular endothelial growth factors, involved in axon guidance and angiogenesis. Moreover, NRP2 was shown to promote chemotactic migration of human monocyte-derived dendritic cells (DCs) toward the chemokine CCL21, a function that relies on the presence of polysialic acid (polySia). In vertebrates, this posttranslational modification is predominantly found on the neural cell adhesion molecule (NCAM), where it is synthesized on N-glycans by either of the two polysialyltransferases, ST8SiaII or ST8SiaIV. In contrast to NCAM, little is known on the biosynthesis of polySia on NRP2. Here we identified the polySia attachment sites and demonstrate that NRP2 is recognized only by ST8SiaIV. Although polySia-NRP2 was found on bone marrow-derived DCs from wild-type and St8sia2−/− mice, polySia was completely lost in DCs from St8sia4−/− mice despite normal NRP2 expression. In COS-7 cells, co-expression of NRP2 with ST8SiaIV but not ST8SiaII resulted in the formation of polySia-NRP2, highlighting distinct acceptor specificities of the two polysialyltransferases. Notably, ST8SiaIV synthesized polySia selectively on a NRP2 glycoform that was characterized by the presence of sialylated core 1 and core 2 O-glycans. Based on a comprehensive site-directed mutagenesis study, we localized the polySia attachment sites to an O-glycan cluster located in the linker region between b2 and c domain. Combined alanine exchange of Thr-607, -613, -614, -615, -619, and -624 efficiently blocked polysialylation. Restoration of single sites only partially rescued polysialylation, suggesting that within this cluster, polySia is attached to more than one site.
机译:Neuropilin-2(NRP2)是众所周知的3类信号量和血管内皮生长因子的共受体,参与轴突引导和血管生成。此外,NRP2已显示出可促进人单核细胞衍生的树突状细胞(DC)向趋化因子CCL21的趋化性迁移,该功能依赖于多唾液酸(polySia)的存在。在脊椎动物中,这种翻译后修饰主要在神经细胞粘附分子(NCAM)上发现,在该处,它是通过两种聚唾液酸转移酶ST8SiaII或ST8SiaIV中的一种在N-聚糖上合成的。与NCAM相反,在NRP2上polySia的生物合成知之甚少。在这里,我们确定了polySia附着位点,并证明NRP2仅被ST8SiaIV识别。尽管在野生型和St8sia2 -/-小鼠的骨髓DC中发现了polySia-NRP2,但尽管如此,但在St8sia4 -/-小鼠的DC中polySia却完全消失了。正常的NRP2表达。在COS-7细胞中,NRP2与ST8SiaIV而不是ST8SiaII的共表达导致polySia-NRP2的形成,突出了两种聚唾液酸转移酶的独特受体特异性。值得注意的是,ST8SiaIV在NRP2糖型上选择性合成了polySia,其特征是存在唾液酸化的核心1和核心2 O-聚糖。基于全面的定点诱变研究,我们将polySia附着位点定位到位于b2和c结构域之间接头区域的O-聚糖簇。 Thr-607,-613,-614,-614,-615,-619和-624的联合丙氨酸交换可有效阻止多唾液酸化。单个位点的恢复只能部分拯救多唾液酸化,这表明在该簇中,polySia附着于多个位点。

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