Department of Biochemistry and Molecular Biology, University of Southern Denmark, Odense M, Denmark.
Department of Biochemistry and Molecular Biology, University of Southern Denmark, Odense M, Denmark.
Mol Cell Proteomics. 2020 Sep;19(9):1418-1435. doi: 10.1074/mcp.RA119.001896. Epub 2020 Jun 9.
Synaptic transmission leading to release of neurotransmitters in the nervous system is a fast and highly dynamic process. Previously, protein interaction and phosphorylation have been thought to be the main regulators of synaptic transmission. Here we show that sialylation of -linked glycosylation is a novel potential modulator of neurotransmitter release mechanisms by investigating depolarization-dependent changes of formerly sialylated -linked glycopeptides. We suggest that negatively charged sialic acids can be modulated, similarly to phosphorylation, by the action of sialyltransferases and sialidases thereby changing local structure and function of membrane glycoproteins. We characterized site-specific alteration in sialylation on -linked glycoproteins in isolated rat nerve terminals after brief depolarization using quantitative sialiomics. We identified 1965 formerly sialylated -linked glycosites in synaptic proteins and found that the abundances of 430 glycosites changed after 5 s depolarization. We observed changes on essential synaptic proteins such as synaptic vesicle proteins, ion channels and transporters, neurotransmitter receptors and cell adhesion molecules. This study is to our knowledge the first to describe ultra-fast site-specific modulation of the sialiome after brief stimulation of a biological system.
神经系统中导致神经递质释放的突触传递是一个快速且高度动态的过程。此前,蛋白质相互作用和磷酸化被认为是突触传递的主要调节剂。在这里,我们通过研究去极化依赖性的先前唾液酸化的连接糖肽的变化,表明糖基化的唾液酸化是神经递质释放机制的一个新的潜在调节剂。我们假设负电荷的唾液酸可以像磷酸化一样被唾液酸转移酶和唾液酸酶的作用所调节,从而改变膜糖蛋白的局部结构和功能。我们使用定量唾液酸组学技术,在短暂去极化后,在分离的大鼠神经末梢中对连接糖蛋白上的唾液酸化进行了特异性改变的特征描述。我们在突触蛋白中鉴定了 1965 个先前唾液酸化的连接糖基位点,并发现 5 秒去极化后 430 个糖基位点的丰度发生了变化。我们观察到了一些重要的突触蛋白的变化,如突触囊泡蛋白、离子通道和转运蛋白、神经递质受体和细胞黏附分子。就我们所知,这项研究首次描述了生物系统短暂刺激后唾液酸组的超快速特异性调节。