首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Construction of a Functional S-Layer Fusion Protein Comprising an Immunoglobulin G-Binding Domain for Development of Specific Adsorbents for Extracorporeal Blood Purification
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Construction of a Functional S-Layer Fusion Protein Comprising an Immunoglobulin G-Binding Domain for Development of Specific Adsorbents for Extracorporeal Blood Purification

机译:包含免疫球蛋白G结合域的功能性S层融合蛋白的构建用于开发体外血液净化的特定吸附剂

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摘要

The chimeric gene encoding a C-terminally-truncated form of the S-layer protein SbpA from Bacillus sphaericus CCM 2177 and two copies of the Fc-binding Z-domain was constructed, cloned, and heterologously expressed in Escherichia coli HMS174(DE3). The Z-domain is a synthetic analogue of the B-domain of protein A, capable of binding the Fc part of immunoglobulin G (IgG). The S-layer fusion protein rSbpA31-1068/ZZ retained the specific properties of the S-layer protein moiety to self-assemble in suspension and to recrystallize on supports precoated with secondary cell wall polymer (SCWP), which is the natural anchoring molecule for the S-layer protein in the bacterial cell wall. Due to the construction principle of the S-layer fusion protein, the ZZ-domains remained exposed on the outermost surface of the protein lattice. The binding capacity of the native or cross-linked monolayer for human IgG was determined by surface plasmon resonance measurements. For batch adsorption experiments, 3-μm-diameter, biocompatible cellulose-based, SCWP-coated microbeads were used for recrystallization of the S-layer fusion protein. In the case of the native monolayer, the binding capacity for human IgG was 5.1 ng/mm2, whereas after cross-linking with dimethyl pimelimidate, 4.4 ng of IgG/mm2 was bound. This corresponded to 78 and 65% of the theoretical saturation capacity of a planar surface for IgGs aligned in the upright position, respectively. Compared to commercial particles used as immunoadsorbents to remove autoantibodies from sera of patients suffering from an autoimmune disease, the IgG binding capacity of the S-layer fusion protein-coated microbeads was at least 20 times higher. For that reason, this novel type of microbeads should find application in the microsphere-based detoxification system.
机译:构建,克隆,编码并克隆了两个编码来自球形芽孢杆菌CCM 2177的S层蛋白SbpA的C端截短形式和Fc结合Z域的拷贝的嵌合基因,并在大肠杆菌HMS174(DE3)中异源表达。 Z结构域是蛋白质A的B结构域的合成类似物,其能够结合免疫球蛋白G(IgG)的Fc部分。 S层融合蛋白rSbpA31-1068 / ZZ保留了S层蛋白部分的特定特性,可在悬浮液中自组装并在预涂有次级细胞壁聚合物(SCWP)的载体上重结晶,后者是天然的锚固分子细菌细胞壁中的S层蛋白。由于S层融合蛋白的构建原理,ZZ结构域仍暴露在蛋白晶格的最外表面。天然的或交联的单层对人IgG的结合能力通过表面等离子体共振测量来确定。对于批量吸附实验,使用直径为3μm,生物相容性的基于纤维素的SCWP涂覆的微珠对S层融合蛋白进行重结晶。在天然单层的情况下,与人IgG的结合能力为5.1 ng / mm 2 ,而在与次苯二甲酰亚胺二甲酯交联后,则为4.4 ng IgG / mm 2 已绑定。对于在直立位置排列的IgG,这分别相当于平面的理论饱和容量的78%和65%。与用作免疫吸附剂以从自身免疫疾病患者的血清中清除自身抗体的商业颗粒相比,S层融合蛋白包被的微珠的IgG结合能力至少高20倍。因此,这种新型的微珠应在基于微球的排毒系统中找到应用。

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