Su Xun-Cheng, Man Bradley, Beeren Sophie, Liang Haobo, Simonsen Shane, Schmitz Christophe, Huber Thomas, Messerle Barbara A, Otting Gottfried
Research School of Chemistry, Australian National University, Canberra ACT 0200, Australia.
J Am Chem Soc. 2008 Aug 13;130(32):10486-7. doi: 10.1021/ja803741f. Epub 2008 Jul 19.
A new lanthanide tag was designed for site-specific labeling of proteins with paramagnetic lanthanide ions. The tag, 4-mercaptomethyl-dipicolinic acid, binds lanthanide ions with nanomolar affinity, is readily attached to proteins via a disulfide bond, and avoids the problems of diastereomer formation associated with most of the conventional lanthanide tags. The high lanthanide affinity of the tag opens the possibility to measure residual dipolar couplings in a single sample containing a mixture of paramagnetic and diamagnetic lanthanides. Using the DNA-binding domain of the E. coli arginine repressor as an example, it is demonstrated that the tag allows immobilization of the lanthanide ion in close proximity of the protein by additional coordination of the lanthanide by a carboxyl group of the protein. The close proximity of the lanthanide ion promotes accurate determinations of magnetic susceptibility anisotropy tensors. In addition, the small size of the tag makes it highly suitable for studies of intermolecular interactions.
设计了一种新的镧系元素标签,用于用顺磁性镧系离子对蛋白质进行位点特异性标记。该标签为4-巯基甲基-二吡啶甲酸,以纳摩尔亲和力结合镧系离子,易于通过二硫键连接到蛋白质上,并且避免了与大多数传统镧系元素标签相关的非对映体形成问题。该标签对镧系元素的高亲和力为在含有顺磁性和抗磁性镧系元素混合物的单个样品中测量残余偶极耦合提供了可能性。以大肠杆菌精氨酸阻遏物的DNA结合结构域为例,证明该标签通过蛋白质的羧基对镧系元素的额外配位,使镧系离子固定在蛋白质附近。镧系离子的紧密接近促进了磁化率各向异性张量的精确测定。此外,该标签的小尺寸使其非常适合研究分子间相互作用。