Wu Zuyan, Lee Michael D, Carruthers Thomas J, Szabo Monika, Dennis Matthew L, Swarbrick James D, Graham Bim, Otting Gottfried
Research School of Chemistry, Australian National University , Canberra, ACT 2601, Australia.
Medicinal Chemistry, Monash Institute of Pharmaceutical Sciences, Monash University , Parkville, VIC 3052, Australia.
Bioconjug Chem. 2017 Jun 21;28(6):1741-1748. doi: 10.1021/acs.bioconjchem.7b00202. Epub 2017 May 15.
Pseudocontact shifts (PCS) generated by paramagnetic lanthanides provide a rich source of long-range structural restraints that can readily be measured by nuclear magnetic resonance (NMR) spectroscopy. Many different lanthanide-binding tags have been designed for site-specific tagging of proteins, but established routes for tagging DNA with a single metal ion rely on difficult chemical synthesis. Here we present a simple and practical strategy for site-specific tagging of inexpensive phosphorothioate (PT) oligonucleotides. Commercially available PT oligonucleotides are diastereomers with S and R stereoconfiguration at the backbone PT site. The respective S and R diastereomers can readily be separated by HPLC. A new alkylating lanthanide-binding tag, C10, was synthesized that delivered quantitative tagging yields with both diastereomers. PCSs were observed following ligation with the complementary DNA strand to form double-stranded DNA duplexes. The PCSs were larger for the S than the R oligonucleotide and good correlation between back-calculated and experimental PCSs was observed. The C10 tag can also be attached to cysteine residues in proteins, where it generates a stable thioether bond. Ligated to the A28C mutant of ubiquitin, the tag produced excellent fits of magnetic susceptibility anisotropy (Δχ) tensors, with larger tensors than for the tagged PT oligonucleotides, indicating that the tag is not completely immobilized after ligation with a PT group.
顺磁性镧系元素产生的伪接触位移(PCS)提供了丰富的远程结构限制来源,可通过核磁共振(NMR)光谱轻松测量。许多不同的镧系元素结合标签已被设计用于蛋白质的位点特异性标记,但用单个金属离子标记DNA的既定方法依赖于困难的化学合成。在这里,我们提出了一种简单实用的策略,用于对廉价的硫代磷酸酯(PT)寡核苷酸进行位点特异性标记。市售的PT寡核苷酸是在主链PT位点具有S和R立体构型的非对映异构体。各自的S和R非对映异构体可通过高效液相色谱(HPLC)轻松分离。合成了一种新的烷基化镧系元素结合标签C10,它对两种非对映异构体都能产生定量标记产率。与互补DNA链连接形成双链DNA双链体后观察到了PCS。S寡核苷酸的PCS比R寡核苷酸的大,并且观察到反算的PCS与实验PCS之间有良好的相关性。C10标签也可以连接到蛋白质中的半胱氨酸残基上,在那里它会形成稳定的硫醚键。与泛素的A28C突变体连接后,该标签产生了出色的磁化率各向异性(Δχ)张量拟合,其张量比标记的PT寡核苷酸的大,表明该标签在与PT基团连接后并未完全固定。