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Overexpression, purification, and biochemical characterization of the extracellular human CD83 domain and generation of monoclonal antibodies

机译:细胞外人CD83结构域的过表达,纯化和生化特征以及单克隆抗体的产生

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CD83 is a 45-kDa glycoprotein and member of the immunoglobulin (Ig) superfamily, It is the best known marker for mature dendritic cells. Although the precise function of CD83 is not known, its selective expression and upregulation together with the costimulators CD80 and CD86 suggests an important role of CD83 in the induction of immune responses. To perform functional studies and to elucidate its mode of action it is vital to obtain recombinant expressed and highly purified CD83 molecules. Therefore, the external Ig domain of human CD83 (hCD83ext) was expressed as a GST fusion protein (GST-hCD83ext) and the soluble protein was purified under native conditions. The fusion protein was purified using GSTrap columns followed by anion-exchange chromatography. GSThCD83ext was then cleaved using thrombin and soluble hCD83ext was further purified using GSTrap columns and finally by a preparative gel filtration as a polishing step and used for further characterization. The purified GST-hCD83 fusion protein was also used to generate monoclonal anti-CD83 antibodies in a rat system. Two different monoclonal antibodies were generated. Using these antibodies, CD83 was specifically recognized in FACS and Western blot analyses. Furthermore, we showed that native CD83 is glycosylated and that this glycosylation influences the binding of the antibodies in Western blot analyses. Finally, the purified hCD83ext protein was analyzed by one-dimensional NI M and these analyses strongly indicate that hCD83ext is folded and could therefore be used for further structural and functional studies. (C) 2002 Elsevier Science (USA). [References: 15]
机译:CD83是一种45 kDa的糖蛋白,是免疫球蛋白(Ig)超家族的成员,它是成熟树突状细胞最著名的标记。尽管尚不清楚CD83的确切功能,但其选择性表达和上调以及共刺激物CD80和CD86暗示了CD83在诱导免疫反应中的重要作用。为了进行功能研究并阐明其作用方式,获得重组表达和高度纯化的CD83分子至关重要。因此,人CD83的外部Ig结构域(hCD83ext)被表达为GST融合蛋白(GST-hCD83ext),并且可溶性蛋白在天然条件下被纯化。融合蛋白使用GSTrap柱纯化,然后进行阴离子交换色谱纯化。然后使用凝血酶裂解GSThCD83ext,并使用GSTrap柱进一步纯化可溶性hCD83ext,最后通过制备性凝胶过滤作为纯化步骤,并用于进一步表征。纯化的GST-hCD83融合蛋白也用于在大鼠系统中产生单克隆抗CD83抗体。产生了两种不同的单克隆抗体。使用这些抗体,CD83在FACS和Western blot分析中被特异性识别。此外,我们显示了天然CD83被糖基化,并且这种糖基化会影响Western印迹分析中抗体的结合。最后,通过一维NI M分析了纯化的hCD83ext蛋白,这些分析强烈表明hCD83ext是折叠的,因此可用于进一步的结构和功能研究。 (C)2002 Elsevier Science(美国)。 [参考:15]

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