首页> 外文期刊>The Journal of biological chemistry >Autopolysialylation of polysialyltransferases is required for polysialylation and polysialic acid chain elongation on select glycoprotein substrates
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Autopolysialylation of polysialyltransferases is required for polysialylation and polysialic acid chain elongation on select glycoprotein substrates

机译:选择性糖蛋白底物上的聚唾液酸化和聚唾液酸链延长需要聚唾液酸转移酶的自聚唾液酸化

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Polysialic acid (polySia) is a large glycan polymer that is added to some glycoproteins by two polysialyltransferases (polySTs), ST8Sia-II and ST8Sia-IV. As polySia modulates cell adhesion and signaling, immune cell function, and tumor metastasis, it is of interest to determine how the polySTs recognize their select substrates. We have recently identified residues within the ST8Sia-IV polybasic region (PBR) that are required for neural cell adhesion molecule (NCAM) recognition and subsequent polysialylation. Here, we compared the PBR sequence requirements for NCAM, neuropilin-2 (NRP-2), and synaptic cell adhesion molecule 1 (SynCAM 1) for polysialylation by their respective polySTs. We found that the polySTs use unique but overlapping sets of PBR residues for substrate recognition, that the NCAM-recognizing PBR sites in ST8Sia-II and ST8Sia-IV include homologous residues, but that the ST8Sia-II site is larger, and that fewer PBR residues are involved in NRP-2 and SynCAM 1 recognition than in NCAM recognition. Noting that the two sites for ST8Sia-IV autopolysialylation flank the PBR, we evaluated the role of PBR residues in autopolysialylation and found that the requirements for polyST autopolysialylation and substrate polysialylation overlap. These data together with the evaluation of the polyST autopolysialylation mechanism enabled us to further identify PBR residues potentially playing dual roles in substrate recognition and in polySia chain polymerization. Finally, we found that ST8Sia-IV autopolysialylation is required for NRP-2 polysialylation and that ST8Sia-II autopolysialylation promotes the polymerization of longer polySia chains on SynCAM 1, suggesting a critical role for polyST autopolysialylation in substrate selection and polySia chain elongation.
机译:聚唾液酸(polySia)是一种大型的聚糖聚合物,通过两个聚唾液酸转移酶(polySTs)ST8Sia-II和ST8Sia-IV添加到某些糖蛋白中。随着polySia调节细胞黏附和信号传导,免疫细胞功能以及肿瘤转移,确定polySTs如何识别其选择的底物非常重要。我们最近在ST8Sia-IV多碱基区域(PBR)中发现了神经细胞粘附分子(NCAM)识别和随后的多唾液酸化所需的残基。在这里,我们比较了NCAM,neuropilin-2(NRP-2)和突触细胞粘附分子1(SynCAM 1)通过其各自的polyST进行多唾液酸化的PBR序列要求。我们发现,polySTs使用独特但重叠的PBR残基集进行底物识别,ST8Sia-II和ST8Sia-IV中的NCAM识别PBR位点包含同源残基,但ST8Sia-II位点较大,PBR较少与NCAM识别相比,NRP-2和SynCAM 1识别涉及的残基。注意到ST8Sia-IV自聚唾液酸化的两个位点位于PBR的侧面,我们评估了PBR残基在自聚唾液酸化中的作用,发现polyST自聚唾液酸化和底物聚唾液酸化的要求重叠。这些数据以及对polyST自聚唾液酸化机制的评估使我们能够进一步鉴定在底物识别和polySia链聚合中可能起双重作用的PBR残基。最后,我们发现NRP-2聚唾液酸化需要ST8Sia-IV自聚唾液酸化作用,ST8Sia-II自聚唾液酸化作用促进SynCAM 1上更长的polySia链聚合,这表明polySTiasialylation在底物选择和polySia链延伸中起着关键作用。

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