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Expression of the human activin type I and II receptor extracellular domains in Pichia pastoris

机译:人激活素I型和II型受体胞外域在毕赤酵母中的表达

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Methods for the expression in Pichia pastoris and purification of the human activin receptor type I and II extracellular domains (ARIa/ARIb-ECDs, ARIIA/ARIIB-ECDs) are described. Key experimental aspects are also documented of the vector transformation methodology and the binding characteristics of these ECDs with activin A and inhibin. The cDNA constructs for these ECDs contained a C-terminal His(6)-tag with either the native signal (N) or the yeast alpha mating factor (alpha MF) sequence and were introduced into the pPICZ expression vector either as a single-copy or as a four-copy expression cassette. Hyper-resistant transformants (zeo(R): 500 mu g/mL) generated from the cassette containing a single copy of the expression vector gave the stronger signal intensity with a DNA dot-blot screening assay. These transformants also produced higher quantities of the corresponding recombinant protein compared to transformants using the four-copy cassette vector. All receptor-ECD proteins expressed were found to be heterogeneously glycosylated, whereby the ARIIA-ECD and ARIIB-ECD had undergone two Asn-linked glycosylation events and the ARIb-ECD a single event. By SDS-PAGE, the de-glycosylated proteins migrated larger than the expected core size, indicating that they may have undergone O-linked glycosylation. Biacore-based procedures with the glycosylated and de-glycosylated ARIIA-ECD were employed to determine the kinetic and equilibrium binding parameters for the interaction with activin A and inhibin. The glycosylated ARIIA-ECD bound to activin A with a K-D Of 11.9 nM and inhibin with a K-D of 21.1 nM. Although glycosylation of ARIIA-ECD was not strictly required for high affinity interactions with activin A or inhibin, it markedly improved the overall stability of the ARIIA-ECD. (c) 2005 Elsevier Inc. All rights reserved.
机译:描述了在毕赤酵母中表达和纯化人激活素受体I和II型细胞外结构域(ARIa / ARIb-ECD,ARIIA / ARIIB-ECD)的方法。还记录了关键实验方面的载体转化方法以及这些ECD与激活素A和抑制素的结合特征。这些ECD的cDNA构建体包含带有天然信号(N)或酵母alpha交配因子(alpha MF)序列的C端His(6)-tag,并以单拷贝形式引入pPICZ表达载体或作为四拷贝表达盒。从含有单拷贝表达载体的盒中产生的高抗性转化体(zeo:500μg/ mL)通过DNA斑点印迹筛选测定给出了更强的信号强度。与使用四拷贝盒载体的转化体相比,这些转化体还产生了更高数量的相应重组蛋白。发现所有表达的受体-ECD蛋白是异源糖基化的,由此ARIIA-ECD和ARIIB-ECD经历了两次Asn关联的糖基化事件,而ARIb-ECD经历了一次事件。通过SDS-PAGE,去糖基化的蛋白质迁移得比预期的核心大小大,表明它们可能已经经历了O-联糖基化。使用基于糖化和去糖基化ARIIA-ECD的基于Biacore的程序来确定与激活素A和抑制素相互作用的动力学和平衡结合参数。糖基化的ARIIA-ECD以11.9 nM的K-D结合到激活素A上,以21.1 nM的K-D结合到抑制素上。尽管与激活素A或抑制素的高亲和力相互作用并非严格要求ARIIA-ECD的糖基化,但它显着提高了ARIIA-ECD的整体稳定性。 (c)2005 Elsevier Inc.保留所有权利。

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