New England Biolabs Inc., 240 County Road, Ipswich, Massachusetts 01938, USA.
Nat Commun. 2017 May 23;8:15487. doi: 10.1038/ncomms15487.
A method for selective and comprehensive enrichment of N-linked glycopeptides was developed to facilitate detection of micro-heterogeneity of N-glycosylation. The method takes advantage of the inherent properties of Fbs1, which functions within the ubiquitin-mediated degradation system to recognize the common core pentasaccharide motif (Man3GlcNAc2) of N-linked glycoproteins. We show that Fbs1 is able to bind diverse types of N-linked glycomolecules; however, wild-type Fbs1 preferentially binds high-mannose-containing glycans. We identified Fbs1 variants through mutagenesis and plasmid display selection, which possess higher affinity and improved recovery of complex N-glycomolecules. In particular, we demonstrate that the Fbs1 GYR variant may be employed for substantially unbiased enrichment of N-linked glycopeptides from human serum. Most importantly, this highly efficient N-glycopeptide enrichment method enables the simultaneous determination of N-glycan composition and N-glycosites with a deeper coverage (compared to lectin enrichment) and improves large-scale N-glycoproteomics studies due to greatly reduced sample complexity.
一种用于选择性和全面富集 N 连接糖肽的方法被开发出来,以促进 N 糖基化微异质性的检测。该方法利用 Fbs1 的固有特性,该特性在泛素介导的降解系统中起作用,以识别 N 连接糖蛋白的常见核心五糖基序(Man3GlcNAc2)。我们表明,Fbs1 能够结合多种类型的 N 连接糖分子;然而,野生型 Fbs1 优先结合高甘露糖含量的聚糖。我们通过诱变和质粒展示选择鉴定了 Fbs1 变体,它们具有更高的亲和力和改进的复杂 N-糖复合物的回收率。特别是,我们证明 Fbs1 GYR 变体可用于从人血清中基本上无偏地富集 N 连接糖肽。最重要的是,这种高效的 N 糖肽富集方法能够同时确定 N-聚糖组成和 N-糖基化位点,具有更深的覆盖范围(与凝集素富集相比),并由于大大降低了样品复杂性而改善了大规模 N-糖蛋白质组学研究。