Muraki Michiro, Honda Shinya
Biomedical Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Higashi, Tsukuba, Ibaraki 305-8566, Japan.
Protein Expr Purif. 2011 Nov;80(1):102-9. doi: 10.1016/j.pep.2011.07.002. Epub 2011 Jul 14.
To achieve an efficient isolation of human Fas receptor extracellular domain (hFasRECD), a fusion protein of hFasRECD with human IgG1 heavy chain Fc domain containing thrombin cleavage sequence at the junction site was overexpressed using baculovirus-silkworm larvae expression system. The hFasRECD part was separated from the fusion protein by the effective cleavage of the recognition site with bovine thrombin. Protein G column treatment of the reaction mixture and the subsequent cation-exchange chromatography provided purified hFasRECD with a final yield of 13.5mg from 25.0 ml silkworm hemolymph. The functional activity of the product was examined by size-exclusion chromatography analysis. The isolated hFasRECD less strongly interacted with human Fas ligand extracellular domain (hFasLECD) than the Fc domain-bridged counterpart, showing the contribution of antibody-like avidity in the latter case. The purified glycosylated hFasRECD presented several discrete bands in the disulphide-bridge non-reducing SDS-PAGE analysis, and virtually all of the components were considered to participate in the binding to hFasLECD. The attached glycans were susceptible to PNGase F digestion, but mostly resistant to Endo Hf digestion under denaturing conditions. One of the components exhibited a higher susceptibility to PNGase F digestion under non-denaturing conditions.
为了高效分离人Fas受体胞外域(hFasRECD),利用杆状病毒-家蚕幼虫表达系统过量表达了一种在连接位点含凝血酶切割序列的hFasRECD与人IgG1重链Fc结构域的融合蛋白。通过用牛凝血酶有效切割识别位点,将hFasRECD部分与融合蛋白分离。对反应混合物进行蛋白G柱处理,随后进行阳离子交换色谱,从25.0 ml家蚕血淋巴中获得了最终产量为13.5 mg的纯化hFasRECD。通过尺寸排阻色谱分析检测了产物的功能活性。与Fc结构域桥连的对应物相比,分离得到的hFasRECD与人Fas配体胞外域(hFasLECD)的相互作用较弱,这表明在后一种情况下抗体样亲和力的作用。在二硫键非还原SDS-PAGE分析中,纯化的糖基化hFasRECD呈现出几条离散条带,几乎所有组分都被认为参与了与hFasLECD的结合。连接的聚糖易受PNGase F消化,但在变性条件下大多对内切糖苷酶Hf消化具有抗性。其中一个组分在非变性条件下对PNGase F消化表现出更高的敏感性。