Institute of Laboratory Medicine, Clinical Chemistry and Pathobiochemistry, Charité-Universitätsmedizin Berlin, 13353 Berlin, Germany.
Institute of Chemistry and Biochemistry, Freie Universität Berlin, 14195 Berlin, Germany.
Sensors (Basel). 2017 Jan 24;17(2):226. doi: 10.3390/s17020226.
l-selectin is a transmembrane receptor expressed on the surface of white blood cells and responsible for the tethering of leukocytes to vascular endothelial cells. This initial intercellular contact is the first step of the complex leukocyte adhesion cascade that ultimately permits extravasation of leukocytes into the surrounding tissue in case of inflammation. Here we show the binding of a soluble histidine tagged l-selectin to a recently described shortened variant of an l-selectin specific DNA aptamer with surface plasmon resonance. The high specificity of this aptamer in combination with its high binding affinity of ~12 nM, allows for a single-step protein purification from cell culture supernatants. In comparison to the well-established Ni-NTA based technology, aptamer affinity chromatography (AAC) was easier to establish, resulted in a 3.6-fold higher protein yield, and increased protein purity. Moreover, due to target specificity, the DNA aptamer facilitated binding studies directly from cell culture supernatant, a helpful characteristic to quickly monitor successful expression of biological active l-selectin.
l-选择素是一种跨膜受体,表达于白细胞表面,负责将白细胞锚定于血管内皮细胞。这种初始的细胞间接触是复杂的白细胞黏附级联反应的第一步,该反应最终允许白细胞渗出到炎症部位的周围组织中。在这里,我们展示了一种可溶性组氨酸标记的 l-选择素与最近描述的 l-选择素特异性 DNA 适体缩短变体的结合,该结合通过表面等离子体共振实现。这种适体的高特异性与其~12 nM 的高结合亲和力相结合,允许从细胞培养上清液中进行一步式蛋白质纯化。与成熟的 Ni-NTA 技术相比,适体亲和层析(AAC)更容易建立,可使蛋白质产量提高 3.6 倍,并且提高了蛋白质纯度。此外,由于靶标特异性,DNA 适体可直接从细胞培养上清液中进行结合研究,这是一个有用的特征,可以快速监测生物活性 l-选择素的表达成功。