Gao Qi, Yang Jeong-Yeh, Moremen Kelley W, Flanagan John G, Prestegard James H
Complex Carbohydrate Research Center , University of Georgia , Athens , Georgia 30602 , United States.
Department of Cell Biology and Program in Neuroscience , Harvard Medical School , Boston , Massachusetts 02115 , United States.
Biochemistry. 2018 Apr 17;57(15):2189-2199. doi: 10.1021/acs.biochem.8b00241. Epub 2018 Apr 3.
Leukocyte common antigen-related (LAR) protein is one of the type IIa receptor protein tyrosine phosphatases (RPTPs) that are important for signal transduction in biological processes, including axon growth and regeneration. Glycosaminoglycan chains, including heparan sulfate (HS) and chondroitin sulfate (CS), act as ligands that regulate LAR signaling. Here, we report the structural characterization of the first two immunoglobulin domains (Ig1-2) of LAR interacting with an HS pentasaccharide (GlcNS6S-GlcA-GlcNS3,6S-IdoA2S-GlcNS6S-OME, fondaparinux) using multiple solution-based NMR methods. In the course of the study, we extended an assignment strategy useful for sparsely labeled proteins expressed in mammalian cell culture supplemented with a single type of isotopically enriched amino acid ([N]-Lys in this case) by including paramagnetic perturbations to NMR resonances. The folded two-domain structure for LAR-Ig1-2 seen in previous crystal structures has been validated in solution using residual dipolar coupling data, and a combination of chemical shift perturbation on titration of LAR-Ig1-2 with fondaparinux, saturation transfer difference (STD) spectra, and transferred nuclear Overhauser effects (trNOEs) have been employed in the docking program HADDOCK to generate models for the LAR-fondaparinux complex. These models are further analyzed by postprocessing energetic analysis to identify key binding interactions. In addition to providing insight into the ligand interaction mechanisms of type IIa RPTPs and the origin of opposing effects of CS and HS ligands, these results may assist in future design of therapeutic compounds for nervous system repair.
白细胞共同抗原相关(LAR)蛋白是IIa型受体蛋白酪氨酸磷酸酶(RPTP)之一,在包括轴突生长和再生在内的生物过程的信号转导中起重要作用。糖胺聚糖链,包括硫酸乙酰肝素(HS)和硫酸软骨素(CS),作为调节LAR信号传导的配体。在这里,我们使用多种基于溶液的核磁共振方法报告了LAR的前两个免疫球蛋白结构域(Ig1-2)与HS五糖(GlcNS6S-GlcA-GlcNS3,6S-IdoA2S-GlcNS6S-OME,磺达肝癸钠)相互作用的结构特征。在研究过程中,我们扩展了一种分配策略,该策略通过对核磁共振共振进行顺磁扰动,对在补充有单一类型同位素富集氨基酸(在这种情况下为[N]-Lys)的哺乳动物细胞培养物中表达的稀疏标记蛋白质有用。先前晶体结构中看到的LAR-Ig1-2的折叠双结构域结构已在溶液中使用残余偶极耦合数据进行了验证,并且在对接程序HADDOCK中采用了LAR-Ig1-2与磺达肝癸钠滴定的化学位移扰动、饱和转移差异(STD)光谱和转移核Overhauser效应(trNOE)的组合来生成LAR-磺达肝癸钠复合物的模型。通过后处理能量分析进一步分析这些模型,以识别关键的结合相互作用。除了深入了解IIa型RPTP的配体相互作用机制以及CS和HS配体相反作用的起源外,这些结果可能有助于未来设计用于神经系统修复的治疗化合物。