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Lysine and Arginine Side Chains in Glycosaminoglycan−Protein Complexes Investigated by NMR, Cross-Linking, and Mass Spectrometry: A Case Study of the Factor H−Heparin Interaction

机译:赖氨酸和精氨酸侧链在通过NMR,交联和质谱中研究的糖胺聚糖 - 蛋白质复合物中的糖胺蛋白酶蛋白质复合物:一种对H-肝素相互作用的因子研究

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摘要

We have used the interaction between module 7 of complement factor H (CFH similar to 7) and a fully sulfated heparin tetrasaccharide to exemplify a new approach for studying contributions of basic side chains to the formation of glycosaminoglycan (GAG)-protein complexes. We first employed HISQC and H2CN NMR experiments to monitor the side-chain resonances of lysines and arginines in N-15, C-13-labeled protein during titrations with a fully sulfated heparin tetrasaccharide under physiological conditions. Under identical conditions and using N-15-labeled protein, we then cross-linked tetrasaccharide to CFH similar to 7 and confirmed the 1:1 stoichiometry by FT-ICR-MS. We subsequently characterized this covalent protein-GAG conjugate by NMR and further MS techniques. MALDI-TOF MS identified protein fragments obtained via trypsin digestion or chemical fragmentation, yielding information concerning the site of GAG attachment. Combining MS and NMR data allowed us to identify the side chain of K405 as the point of attachment of the crosslinked heparin oligosaccharide to CFH similar to 7. On the basis of the analysis of NMR and MS data of the noncovalent and cross-linked CFH similar to 7-tetrasaccharide complexes, we conclude that the K446 side chain is not essential for binding the tetrasaccharide, despite the large chemical shift perturbations of its backbone amide N-15 and H-1 resonances during titrations. We show that R444 provides the most important charge-charge interaction within a C-terminal heparin-binding subsite of CFH similar to 7 whereas side chains of R404, K405, and K388 are the predominant contributors to an N-terminal binding subsite located in the immediate vicinity of residue 402, which is implicated in age-related macular degeneration (AMD).
机译:我们使用补体因子H的模块7(CFH类似于7)之间的相互作用和完全硫酸肝素四糖来举例为研究基础侧链糖胺聚糖(GAG)的形成 - 蛋白质复合物的贡献的一种新方法。我们首先使用HISQC和H2CN NMR实验以监测赖氨酸和精氨酸的侧链的共振在N-15,C-13标记的蛋白质滴定期间与完全硫酸化肝素四糖在生理条件下。在相同条件下,用N-15标记的蛋白质,我们再交联四糖对CFH类似于7和确认1:通过FT-ICR-MS 1的化学计量。我们随后通过NMR和进一步MS技术这种共价蛋白 - GAG缀合物。通过胰蛋白酶消化或化学断裂得到的MALDI-TOF MS鉴定的蛋白片段,得到关于GAG附着位点的信息。组合MS和NMR数据使我们能够确定K405的侧链如交联的肝素寡糖CFH类似的连接点至7.在非共价的NMR和MS数据的分析的基础上并交联CFH类似至7-四糖复合物,我们的结论是K446的侧链不是结合四糖必需的,尽管滴定在其主链的大的化学位移扰动酰胺N-15和H-1的共振。我们表明,R 444提供CFH的类似于7 C端肝素结合亚位点中的最重要的电荷 - 电荷相互作用,而R404,K405,和K388的侧链是主要贡献者到位于N-末端的结合亚位点残基402,其在年龄相关性黄斑变性(AMD)的牵连紧邻。

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