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人纤维蛋白原瞬时重组表达和亲和层析系统的建立。

Development of Transient Recombinant Expression and Affinity Chromatography Systems for Human Fibrinogen.

机构信息

Department of Chemistry, East Carolina University, Greenville, NC 27858, USA.

Department of Physics, East Carolina University, Greenville, NC 27858, USA.

出版信息

Int J Mol Sci. 2022 Jan 19;23(3):1054. doi: 10.3390/ijms23031054.

Abstract

Fibrin forms the structural scaffold of blood clots and has great potential for biomaterial applications. Creating recombinant expression systems of fibrinogen, fibrin's soluble precursor, would advance the ability to construct mutational libraries that would enable structure-function studies of fibrinogen and expand the utility of fibrin as a biomaterial. Despite these needs, recombinant fibrinogen expression systems, thus far, have relied on the time-consuming creation of stable cell lines. Here we present tests of a transient fibrinogen expression system that can rapidly generate yields of 8-12 mg/L using suspension HEK Expi293 cells. We report results from two different plasmid systems encoding the fibrinogen cDNAs and two different transfection reagents. In addition, we describe a novel, affinity-based approach to purifying fibrinogen from complex media such as human plasma. We show that using a high-affinity peptide which mimics fibrin's knob 'A' sequence enables the purification of 50-75% of fibrinogen present in plasma. Having robust expression and purification systems of fibrinogen will enable future studies of basic fibrin(ogen) biology, while paving the way for the ubiquitous use of fibrin as a biomaterial.

摘要

纤维蛋白形成血栓的结构支架,具有很大的生物材料应用潜力。构建纤维蛋白原(纤维蛋白的可溶性前体)的重组表达系统将提高构建突变文库的能力,从而能够对纤维蛋白原进行结构-功能研究,并扩大纤维蛋白作为生物材料的用途。尽管有这些需求,但迄今为止,重组纤维蛋白原表达系统依赖于耗时的稳定细胞系的创建。在这里,我们测试了一种瞬时纤维蛋白原表达系统,该系统使用悬浮 HEK Expi293 细胞可快速产生 8-12mg/L 的产量。我们报告了两种不同的质粒系统编码纤维蛋白原 cDNA 和两种不同的转染试剂的结果。此外,我们还描述了一种从复杂介质(如人血浆)中纯化纤维蛋白原的新型、基于亲和性的方法。我们表明,使用模拟纤维蛋白 knob 'A' 序列的高亲和力肽能够纯化 50-75%存在于血浆中的纤维蛋白原。拥有强大的纤维蛋白原表达和纯化系统将能够促进对基本纤维蛋白(原)生物学的未来研究,同时为纤维蛋白作为生物材料的广泛应用铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b823/8835685/19d5aa297fce/ijms-23-01054-g001.jpg

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