Waugh David S
Protein Engineering Section, Macromolecular Crystallography Laboratory, Center for Cancer Research, National Cancer Institute at Frederick, P.O. Box B, Frederick, MD 21702-1201, USA.
Protein Expr Purif. 2011 Sep 3. doi: 10.1016/j.pep.2011.08.019.
Proteins do not naturally lend themselves to high-throughput analysis because of their diverse physiochemical properties. Consequently, affinity tags have become indispensable tools for structural and functional proteomics initiatives. Although originally developed to facilitate the detection and purification of recombinant proteins, in recent years it has become clear that affinity tags can have a positive impact on the yield, solubility and even the folding of their fusion partners. However, no single affinity tag is optimal with respect to all of these parameters; each has its strengths and weaknesses. Therefore, combinatorial tagging might be the only way to harness the full potential of affinity tags in a high-throughput setting.
由于蛋白质具有多样的物理化学性质,它们天然不适合进行高通量分析。因此,亲和标签已成为结构和功能蛋白质组学研究中不可或缺的工具。尽管亲和标签最初是为便于重组蛋白的检测和纯化而开发的,但近年来人们清楚地认识到,亲和标签对其融合伙伴的产量、溶解度甚至折叠都能产生积极影响。然而,就所有这些参数而言,没有一种单一的亲和标签是最佳的;每种标签都有其优缺点。因此,组合标签可能是在高通量环境中充分发挥亲和标签全部潜力的唯一途径。