Institute of Enzymology, RCNS, Hungarian Academy of Sciences, Magyar Tudósok krt 2, Budapest, H-1117, Hungary.
Institute of Organic Chemistry, RCNS, Hungarian Academy of Sciences, Magyar Tudósok krt 2, Budapest, H-1117, Hungary.
Sci Rep. 2019 Oct 31;9(1):15729. doi: 10.1038/s41598-019-52188-4.
The research on transmembrane proteins (TMPs) is quite widespread due to their biological importance. Unfortunately, only a little amount of structural data is available of TMPs. Since technical difficulties arise during their high-resolution structure determination, bioinformatics and other experimental approaches are widely used to characterize their low-resolution structure, namely topology. Experimental and computational methods alone are still limited to determine TMP topology, but their combination becomes significant for the production of reliable structural data. By applying amino acid specific membrane-impermeable labelling agents, it is possible to identify the accessible surface of TMPs. Depending on the residue-specific modifications, new extracellular topology data is gathered, allowing the identification of more extracellular segments for TMPs. A new method has been developed for the experimental analysis of TMPs: covalent modification of the carboxyl groups on the accessible cell surface, followed by the isolation and digestion of these proteins. The labelled peptide fragments and their exact modification sites are identified by nanoLC-MS/MS. The determined peptides are mapped to the primary sequences of TMPs and the labelled sites are utilised as extracellular constraints in topology predictions that contribute to the refined low-resolution structure data of these proteins.
由于跨膜蛋白(TMPs)具有重要的生物学意义,因此对其进行了广泛的研究。不幸的是,目前只有很少量的 TMPs 结构数据可用。由于在高分辨率结构测定过程中会出现技术难题,因此广泛使用生物信息学和其他实验方法来表征其低分辨率结构,即拓扑结构。单独使用实验和计算方法仍然难以确定 TMP 的拓扑结构,但它们的结合对于产生可靠的结构数据变得非常重要。通过应用氨基酸特异性的膜不可渗透标记试剂,可以识别 TMPs 的可及表面。根据残基特异性的修饰,可以收集新的细胞外拓扑结构数据,从而确定 TMP 更多的细胞外片段。已经开发出一种用于 TMP 实验分析的新方法:对可及细胞表面上的羧基进行共价修饰,然后对这些蛋白质进行分离和消化。通过纳升液相色谱-串联质谱(nanoLC-MS/MS)鉴定标记的肽片段及其确切修饰位点。将确定的肽映射到 TMP 的一级序列上,并将标记的位点用作拓扑预测中的细胞外约束条件,这有助于这些蛋白质的低分辨率结构数据的细化。