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Differential effects of N-linked glycosylation of Vstm5 at multiple sites on surface expression and filopodia formation

机译:Vstm5在多个位点的N-联糖基化对表面表达和丝状伪足形成的差异作用

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V-set and transmembrane domain-containing protein 5 (Vstm5), a newly characterized small membrane glycoprotein, can induce membrane protrusions in various cells. Vstm5 can modulate both the position and complexity of central neurons by altering their membrane morphology and dynamics. In this study, we investigated the significance of glycosylation in the expression and function of Vstm5. Four N-linked glycosylation sites (Asn43, Asn87, Asn101, and Asn108) are predicted to be located in the extracellular N-terminus of mouse Vstm5. Although all four sites were glycosylated, their functional roles may not be identical. N-glycosylation at multiple sites affects differentially the function of Vstm5. Glycosylation at individual sites not only played essential roles in surface expression of Vstm5 but also in the formation of neuronal dendritic filopodia. These results indicate that N-linked glycosylation at multiple sites plays important roles by differentially influencing the expression, targeting, and biological activity of Vstm5.
机译:V-set和跨膜结构域蛋白5(Vstm5)是一种新近表征的小膜糖蛋白,可以诱导各种细胞的膜突起。 Vstm5可以通过改变中枢神经元的膜形态和动力学来调节其位置和复杂性。在这项研究中,我们调查了糖基化在Vstm5表达和功能中的意义。四个N连接的糖基化位点(Asn43,Asn87,Asn101和Asn108)预计位于小鼠Vstm5的细胞外N端。尽管所有四个位点均被糖基化,但它们的功能作用可能并不相同。在多个位点的N-糖基化差异影响Vstm5的功能。单个位点的糖基化不仅在Vstm5的表面表达中起重要作用,而且在神经元树突状丝状伪足的形成中也起着重要作用。这些结果表明,通过差异地影响Vstm5的表达,靶向和生物学活性,多个位点的N-联糖基化起着重要的作用。

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