Zhang Xin, Chemmalil Letha, Ding Julia, Mussa Nesredin, Li Zhengjian
Department of Biologics Process Development, Bristol-Myers Squibb, USA.
Department of Biologics Process Development, Bristol-Myers Squibb, USA.
Anal Biochem. 2017 Nov 15;537:13-19. doi: 10.1016/j.ab.2017.08.014. Epub 2017 Aug 24.
Imaged capillary isoelectric focusing (icIEF) separates ampholytic components of biomolecules in an electric field according to their isoelectric points and has been used for protein charge variants quantification and characterization. Denaturants are ordinarily incorporated into icIEF to stabilize charge species in solution. In certain circumstances, however, denaturants are detrimental to stable isoelectric separation of proteins due to their unique structural and biophysical features, such as an aggregation-prone antibody we encountered recently. Here we report our novel matrix formula non-detergent sulfobetaine and taurine (NDSB-T). It is deprived of denaturants that notably ameliorates the assay robustness and peak resolution for this antibody. NDSB-T is a combination of non-detergent sulfobetaine (NDSB) and taurine possessing the stabilization and separation power while maintaining protein integrity. As a result, assay throughputs are tremendously increased for more than 10 folds along with extraordinarily improved assay accuracy. Furthermore, NDSB-T can separate and quantify protein charge species in native state and therefore avoid partial denaturation derived peaks which are often misleading and hard to characterize. NDSB-T may be a valuable tool for proteins incompatible with conventional icIEF matrices and potentially opens a new window for icIEF assay in native conditions.
成像毛细管等电聚焦(icIEF)根据生物分子的等电点在电场中分离两性成分,已用于蛋白质电荷变体的定量和表征。变性剂通常被加入到icIEF中以稳定溶液中的带电物种。然而,在某些情况下,由于其独特的结构和生物物理特性,变性剂对蛋白质的稳定等电分离是有害的,比如我们最近遇到的一种易于聚集的抗体。在此,我们报告我们新型的基质配方——非去污剂磺基甜菜碱和牛磺酸(NDSB-T)。它不含变性剂,这显著改善了针对该抗体的分析稳健性和峰分辨率。NDSB-T是一种非去污剂磺基甜菜碱(NDSB)和牛磺酸的组合,具有稳定和分离能力,同时保持蛋白质的完整性。结果,分析通量大幅提高了10倍以上,同时分析准确性也得到了极大提高。此外,NDSB-T可以在天然状态下分离和定量蛋白质电荷物种,因此避免了通常具有误导性且难以表征的部分变性衍生峰。NDSB-T对于与传统icIEF基质不兼容的蛋白质可能是一种有价值的工具,并可能为天然条件下的icIEF分析打开一扇新窗口。