Iwaoka Emiko, Mori Tomoko, Shimizu Tadashi, Hosoya Ken, Tanaka Akito
Department of Pharmacy, Hyogo University of Health Sciences, 1-3-6 Minatojima, Chuo-ku, Kobe 650-8530, Japan.
Bioorg Med Chem Lett. 2009 Mar 1;19(5):1469-72. doi: 10.1016/j.bmcl.2009.01.050. Epub 2009 Jan 22.
Affinity chromatography is an important strategy for target identifications. However, commercial available solid materials have limitations while selection of that is sometimes vital for the purpose. We have reported a synthetic resin with a monolithic structure in previous papers. In this paper, introduction effects of spacer to the monolithic material on identification of specific binding protein was quantitatively analyzed using benzensulfonamide as a bait, which exhibited introduction of omega-substituted heptanoic acid as spacer enabled affinity resins to capture the target proteins effectively. Utilization of the optimized spacer enable the monolithic material bearing FK506 to identify not only FKBP12 but FKBP52, calcineurin A and calcineurin B at silver stained level, while that without spacer had failed.
亲和层析是一种用于目标识别的重要策略。然而,市售的固体材料存在局限性,而其选择对于该目的有时至关重要。我们在之前的论文中报道了一种具有整体结构的合成树脂。在本文中,以苯磺酰胺作为诱饵,定量分析了间隔基对整体材料识别特异性结合蛋白的影响,结果表明引入ω-取代庚酸作为间隔基能够使亲和树脂有效捕获目标蛋白。使用优化后的间隔基,负载FK506的整体材料不仅能够在银染水平上识别FKBP12,还能识别FKBP52、钙调神经磷酸酶A和钙调神经磷酸酶B,而没有间隔基的材料则无法做到。