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首页> 外文期刊>Protein Expression and Purification >High yield purification of nanobodies from the periplasm of E. coli as fusions with the maltose binding protein
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High yield purification of nanobodies from the periplasm of E. coli as fusions with the maltose binding protein

机译:通过与麦芽糖结合蛋白融合,从大肠杆菌的周质中高效纯化纳米抗体

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Nanobodies (Nbs) are single domain antibodies based on the variable domains of heavy chain only antibodies (HCAbs) found in camelids, also referred to as VHHs. Their small size (ca. 12-15 kDa), superior biophysical and antigen binding properties have made Nbs very attractive molecules for multiple biotechnological applications, including human therapy. The most widely used system for the purification of Nbs is their expression in the periplasm of Escherichia coli with a C-terminal hexa-histidine (His_6) tag followed by immobilized metal affinity chromatography (IMAC). However, significant variability in the expression levels of different Nbs are routinely observed and a single affinity chromatography step is often not sufficient to obtain Nbs of high purity. Here, we report an alternative method for expression and purification of Nbs from the periplasm of E. coli based on their fusion to maltose binding protein (MBP) in the N-terminus and His6 tag in the C-terminus (MBP-Nb_(His6)). Soluble MBP-Nb_(His6) fusions were consistently expressed at high levels (≥12 mg/L of induced culture in shake flasks) in the periplasm of E. coli HM140, a strain deficient in several periplasmic proteases. Highly pure MBP-Nb_(His6) fusions and free Nb_(His6) (after site specific proteolysis of the fusions), were recovered by amylose and metal affinity chromatography steps. The monomeric nature of the purified Nb_(His6) was determined by gel filtration chromatography. Lastly, we demonstrated by ELISA that both monomeric Nb_ (His6) and MBP-Nb_(His6) fusions retained antigen binding activity and specificity, thus facilitating their direct use in antigen recognition assays.
机译:纳米抗体(Nbs)是基于在骆驼科动物中发现的仅重链抗体(HCAb)可变域的单域抗体,也称为VHH。 Nb的体积小(约12-15 kDa),出色的生物物理和抗原结合特性,使Nb对许多生物技术应用(包括人类治疗)非常有吸引力。用于纯化Nb的最广泛使用的系统是它们在带有C端六组氨酸(His_6)标签的大肠杆菌周质中的表达,然后是固定金属亲和色谱(IMAC)。然而,常规观察到不同Nbs表达水平的显着变化,并且单亲和层析步骤通常不足以获得高纯度的Nbs。在这里,我们报告了另一种表达和纯化Nbs的方法,该方法基于Nbs与N末端的麦芽糖结合蛋白(MBP)和C末端的His6标签(MBP-Nb_(His6 ))。可溶的MBP-Nb_(His6)融合蛋白在大肠杆菌HM140(一种缺乏几种周质蛋白酶的菌株)的周质中始终以高水平(≥12 mg / L摇瓶中诱导培养)表达。通过直链淀粉和金属亲和层析步骤回收了高纯度的MBP-Nb_(His6)融合物和游离的Nb_(His6)(在融合物进行位点特异性蛋白水解后)。通过凝胶过滤色谱法测定纯化的Nb_(His6)的单体性质。最后,我们通过ELISA证明了单体Nb_(His6)和MBP-Nb_(His6)融合体均保留了抗原结合活性和特异性,从而促进了它们在抗原识别测定中的直接使用。

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