Department of Experimental and Translational Ophthalmology, University Medical Center, Johannes Gutenberg University, 55131 Mainz, Germany.
Molecules. 2023 Jan 8;28(2):648. doi: 10.3390/molecules28020648.
The glycosylation of proteins is one of the most common post-translational modifications (PTMs) and plays important regulatory functions in diverse biological processes such as protein stability or cell signaling. Accordingly, glycoproteins are also a consistent part of the human tear film proteome, maintaining the proper function of the ocular surface and forming the first defense barrier of the ocular immune system. Irregularities in the glycoproteomic composition of tear film might promote the development of chronic eye diseases, indicating glycoproteins as a valuable source for biomarker discovery or drug target identification. Therefore, the present study aimed to develop a lectin-based affinity method for the enrichment and concentration of tear glycoproteins/glycopeptides and to characterize their specific N-glycosylation sites by high-resolution mass spectrometry (MS). For method development and evaluation, we first accumulated native glycoproteins from human tear sample pools and assessed the enrichment efficiency of different lectin column systems by 1D gel electrophoresis and specific protein stainings (Coomassie and glycoproteins). The best-performing multi-lectin column system (comprising the four lectins ConA, JAC, WGA, and UEA I, termed 4L) was applied to glycopeptide enrichment from human tear sample digests, followed by MS-based detection and localization of their specific N-glycosylation sites. As the main result, our study identified a total of 26 N glycosylation sites of 11 N-glycoproteins in the tear sample pools of healthy individuals ( = 3 biological sample pools). Amongst others, we identified tear film proteins lactotransferrin (N497 and N642, LTF), Ig heavy chain constant α-1 (N144 and 340, IGHA1), prolactin-inducible protein (N105, PIP), and extracellular lacritin (N105, LACRT) as highly reliable and significant N glycoproteins, already associated with the pathogenesis of various chronic eye diseases such as dry eye syndrome (DES). In conclusion, the results of the present study will serve as an important tear film N-glycoprotein catalog for future studies focusing on human tear film and ocular surface-related inflammatory diseases.
蛋白质的糖基化是最常见的翻译后修饰(PTMs)之一,在多种生物过程中发挥着重要的调节功能,如蛋白质稳定性或细胞信号转导。因此,糖蛋白也是人泪液蛋白组的一个组成部分,维持眼表面的正常功能,并形成眼免疫系统的第一道防御屏障。泪膜糖蛋白组组成的不规则可能会促进慢性眼病的发展,表明糖蛋白是生物标志物发现或药物靶标识别的有价值来源。因此,本研究旨在开发一种基于凝集素的亲和方法,用于富集和浓缩泪液糖蛋白/糖肽,并通过高分辨率质谱(MS)对其特定的 N-糖基化位点进行表征。为了方法开发和评估,我们首先从人泪液样品池中积累天然糖蛋白,并通过 1D 凝胶电泳和特定蛋白质染色(考马斯亮蓝和糖蛋白)评估不同凝集素柱系统的富集效率。表现最佳的多凝集素柱系统(包含四种凝集素 ConA、JAC、WGA 和 UEA I,称为 4L)用于从人泪液样品消化物中进行糖肽富集,然后进行基于 MS 的检测和特定 N-糖基化位点的定位。作为主要结果,我们的研究总共鉴定了健康个体泪液样品池中的 11 种 N-糖蛋白中的 26 个 N 糖基化位点(= 3 个生物学样品池)。其中,我们鉴定出泪膜蛋白乳铁传递蛋白(N497 和 N642,LTF)、免疫球蛋白重链恒定区 α-1(N144 和 340,IGHA1)、催乳素诱导蛋白(N105,PIP)和细胞外泪液蛋白(N105,LACRT)作为高度可靠和显著的 N 糖蛋白,已与各种慢性眼病(如干眼症综合征(DES))的发病机制相关。总之,本研究的结果将作为未来研究人泪膜和眼表面相关炎症性疾病的重要泪膜 N-糖蛋白目录。