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一种用于稳定间接固定多聚体重组蛋白的系统。

A system for stable indirect immobilization of multimeric recombinant proteins.

作者信息

Grob P, Baumann S, Ackermann M, Suter M

机构信息

Institute of Virology, University of Zurich, Switzerland.

出版信息

Immunotechnology. 1998 Oct;4(2):155-63. doi: 10.1016/s1380-2933(98)00015-3.

Abstract

BACKGROUND

To perform an ELISA or for panning phage particles which display recombinant proteins, one of the reactants is immobilized on solid phase. Immobilization in ELISA is generally performed by passive adsorption of ligands to plastic. However, protein is denatured during the adsorption process. This may result in low efficiency interaction between ligands and receptors which depend on native structures. In contrast, indirect immobilization has been shown to prevent protein denaturation.

OBJECTIVES

The aim was to develop a system that allows efficient and stable indirect immobilization of a variety of recombinant multimeric proteins to solid phase.

RESULTS

A new vector was constructed which allows the expression of up to three proteins linked by the Jun/Fos leucine zipper. Purification of the resulting protein was achieved by Ni+ affinity chromatography utilizing the 6xHis-ABP (albumin binding protein) protein fused to the N-terminus of the Jun polypeptide. The high binding affinity of ABP to rat serum albumin (RSA) was exploited for indirect immobilization of recombinant proteins to solid phase. In an enzyme linked assay, the binding of ABP to immobilized RSA was shown to be 10-1000 times more efficient than other immobilization systems. Using the ZZ IgG binding domain of staphylococcal protein A as bait, the RSA-ABP immobilization system was successfully used to screen and enrich IgG Fc encoding DNA fragments from a cDNA phage library.

CONCLUSION

The newly designed vector termed pJuFoexpress allows production and purification of multimeric protein complexes linked by the Jun/Fos leucine zipper. Without chemical modifications, the recombinant proteins can be immobilized indirectly to solid phase. The immobilization results in the stable display of native, biologically active proteins which can be used in ELISA and phage display systems.

摘要

背景

为了进行酶联免疫吸附测定(ELISA)或淘选展示重组蛋白的噬菌体颗粒,其中一种反应物需固定在固相上。在ELISA中,固定化通常通过将配体被动吸附到塑料上来实现。然而,蛋白质在吸附过程中会变性。这可能导致依赖天然结构的配体与受体之间的低效率相互作用。相比之下,间接固定化已被证明可以防止蛋白质变性。

目的

旨在开发一种系统,该系统能够将多种重组多聚体蛋白高效且稳定地间接固定到固相上。

结果

构建了一种新载体,该载体可表达多达三种由Jun/Fos亮氨酸拉链连接的蛋白。利用与Jun多肽N端融合的6xHis-ABP(白蛋白结合蛋白),通过镍离子亲和层析实现了所得蛋白的纯化。利用ABP与大鼠血清白蛋白(RSA)的高结合亲和力,将重组蛋白间接固定到固相上。在酶联测定中,ABP与固定化RSA的结合效率比其他固定化系统高10至1000倍。以葡萄球菌蛋白A的ZZ IgG结合结构域为诱饵,RSA-ABP固定化系统成功用于从cDNA噬菌体文库中筛选和富集编码IgG Fc的DNA片段。

结论

新设计的载体pJuFoexpress能够生产和纯化由Jun/Fos亮氨酸拉链连接的多聚体蛋白复合物。无需化学修饰,重组蛋白即可间接固定到固相上。这种固定化可稳定展示天然的、具有生物活性的蛋白,这些蛋白可用于ELISA和噬菌体展示系统。

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