Department of Cellular and Molecular Medicine, University of Copenhagen, Copenhagen Center for Glycomics, Blegdamsvej 3b, DK-2200 Copenhagen N, Denmark.
J Proteome Res. 2010 Dec 3;9(12):6705-14. doi: 10.1021/pr1008477. Epub 2010 Nov 2.
Identification of disease-specific biomarkers is important to address early diagnosis and management of disease. Aberrant post-translational modifications (PTM) of proteins such as O-glycosylations (O-PTMs) are emerging as triggers of autoantibodies that can serve as sensitive biomarkers. Here we have developed a random glycopeptide bead library screening platform for detection of autoantibodies and other binding proteins. Libraries were build on biocompatible PEGA beads including a safety-catch C-terminal amide linker (SCAL) that allowed mild cleavage conditions (I(2)/NaBH(4) and TFA) for release of glycopeptides and sequence determination by ESI-Orbitrap-MS(n). As proof-of-principle, tumor -specific glycopeptide reporter epitopes were built-in into the libraries and were detected by tumor-specific monoclonal antibodies and autoantibodies from cancer patients. Sequenced and identified glycopeptides were resynthesized at the preparative scale by automated parallel peptide synthesis and printed on microarrays for validation and broader analysis with larger sets of sera. We further showed that chemical synthesis of the monosaccharide O-glycopeptide library (Tn-glycoform) could be diversified to other tumor glycoforms by on-bead enzymatic glycosylation reactions with recombinant glycosyltransferases. Hence, we have developed a high-throughput flexible platform for rapid discovery of O-glycopeptide biomarkers and the method has applicability in other types of assays such as lectin/antibody/enzyme specificity studies as well as investigation of other PTMs.
鉴定疾病特异性生物标志物对于实现疾病的早期诊断和治疗至关重要。蛋白质翻译后的异常修饰(PTM),如 O-糖基化(O-PTM),正逐渐成为自身抗体的触发因素,而自身抗体可以作为敏感的生物标志物。在此,我们开发了一种随机糖肽珠库筛选平台,用于检测自身抗体和其他结合蛋白。该文库构建在生物相容性的 PEGA 珠上,其中包含一个安全捕获 C 末端酰胺键(SCAL),允许使用温和的裂解条件(I(2)/NaBH(4) 和 TFA)释放糖肽,并通过 ESI-Orbitrap-MS(n) 进行序列测定。作为原理验证,肿瘤特异性糖肽报告表位被构建到文库中,并被肿瘤特异性单克隆抗体和癌症患者的自身抗体检测到。测序和鉴定的糖肽通过自动化平行肽合成在制备规模上重新合成,并打印在微阵列上进行验证和更广泛的分析,使用更大的血清集。我们还表明,通过在珠上进行重组糖基转移酶的酶糖基化反应,可以将单糖 O-糖肽文库(Tn 糖型)的化学合成多样化为其他肿瘤糖型。因此,我们开发了一种高通量、灵活的平台,用于快速发现 O-糖肽生物标志物,该方法适用于其他类型的检测,如凝集素/抗体/酶特异性研究以及其他 PTM 的研究。