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神经细胞黏附分子 1 上的聚唾液酸和小神经胶质细胞上的神经纤毛蛋白 2 上的聚唾液酸局限于细胞内池,刺激后迅速耗尽。

Polysialic acid on SynCAM 1 in NG2 cells and on neuropilin-2 in microglia is confined to intracellular pools that are rapidly depleted upon stimulation.

机构信息

Hannover Medical School, Institute for Cellular Chemistry, Carl-Neuberg-Straße 1, Hannover, Germany; Center for Systems Neuroscience (ZSN), Hannover, Germany.

出版信息

Glia. 2015 Jul;63(7):1240-55. doi: 10.1002/glia.22815. Epub 2015 Mar 10.

Abstract

NG2 cells comprise a heterogeneous precursor population but molecular markers distinguishing between the assumed NG2 cell subpopulations are lacking. Previously, we described that a subfraction of the synaptic cell adhesion molecule SynCAM 1 is modified with the glycan polysialic acid (polySia) in NG2 cells. As for its major carrier, the neural cell adhesion molecule NCAM, polySia attenuates SynCAM 1 adhesion. Functions, as well as cellular and subcellular distribution of polySia-SynCAM 1 are elusive. Using murine glial cultures we now demonstrate that polySia-SynCAM 1 is confined to the Golgi compartment of a subset of NG2 cells and transiently recruited to the cell surface in response to depolarization. NG2 cells with Golgi-confined polySia were NCAM-negative, but positive for markers of oligodendrocyte precursor cells (OPCs). Consistent with previous data on polySia-SynCAM 1, polySia in Ncam(-/-) NG2 cells was exclusively attached to N-glycans and synthesized by ST8SIA2, one out of two mammalian polysialyltransferases. Unexpectedly, Golgi-confined polySia was also detected in Ncam(-/-) microglia, but this fraction resided on O-glycans and was produced by the second polysialyltransferase, ST8SIA4, indicating the presence of yet another polySia carrier in microglia. Searching for this carrier, we identified polysialylated neuropilin-2, so far only known from dendritic cells and exudate macrophages. Microglia activation by LPS, but not interleukin-4, caused a transient translocation of Golgi-localized polySia to the cell surface, resulting in complete depletion. Finally, NO-production of LPS-stimulated microglia was attenuated by addition of polySia suggesting that the observed loss of polySia-neuropilin-2 is involved in negative feedback regulation of pro-inflammatory microglia polarization.

摘要

NG2 细胞包含一个异质的前体细胞群,但缺乏区分假定的 NG2 细胞亚群的分子标记。以前,我们描述了突触细胞粘附分子 SynCAM1 的一个亚群在 NG2 细胞中被糖基化多涎酸(polySia)修饰。对于其主要载体神经细胞粘附分子 NCAM 来说,polySia 会减弱 SynCAM1 的粘附作用。polySia-SynCAM1 的功能以及细胞内和亚细胞分布尚不清楚。使用鼠神经胶质培养物,我们现在证明 polySia-SynCAM1 局限于一组 NG2 细胞的高尔基体隔室,并在去极化时短暂募集到细胞表面。具有高尔基体限制的 polySia 的 NG2 细胞为 NCAM 阴性,但为少突胶质前体细胞(OPC)标志物阳性。与之前关于 polySia-SynCAM1 的数据一致,Ncam(-/-)NG2 细胞中的 polySia 仅附着于 N-聚糖并由两个哺乳动物多涎酸转移酶之一 ST8SIA2 合成。出乎意料的是,也在 Ncam(-/-)小胶质细胞中检测到高尔基体限制的 polySia,但该部分位于 O-聚糖上,由第二个多涎酸转移酶 ST8SIA4 产生,表明小胶质细胞中存在另一种 polySia 载体。在寻找这种载体时,我们鉴定了神经纤毛蛋白-2 的多涎酸化,迄今为止仅在树突状细胞和渗出巨噬细胞中发现。LPS 对小胶质细胞的激活,但不是白细胞介素-4,导致高尔基体定位的 polySia 短暂易位到细胞表面,导致完全耗尽。最后,通过添加 polySia 来减弱 LPS 刺激的小胶质细胞的 NO 产生表明,观察到的 polySia-神经纤毛蛋白-2 的丢失参与了促炎小胶质细胞极化的负反馈调节。

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