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细菌生产重组凝血因子 VIII 结构域。

Bacterial Production of Recombinant Coagulation Factor VIII Domains.

机构信息

Industry-Academia Cooperation Foundation, Hongik University, 2639 Sejong-ro, Sejong-si 30016, Republic of Korea.

Department of Biological and Chemical Engineering, Hongik University, 2639 Sejong-ro, Sejong-si 30016, Republic of Korea.

出版信息

Medicina (Kaunas). 2023 Apr 1;59(4):694. doi: 10.3390/medicina59040694.

Abstract

Factor VIII (F8) is a blood coagulation protein prearranged in six domains, and its deficiency causes hemophilia A. To fashion functional F8 therapeutics, development of a recombinant F8 (rF8) domain is essential not only for F8 substitution, but also to decipher the F8-related mechanisms. In this study, we generated Glutathione S-transferase (GST)-conjugated recombinant A2 and A3 domains of F8 using . The high growth rate and economically advantageous protein production system in terms of inexpensive reagents and materials in cells facilitated the completion of entire process from protein expression to purification in 3-4 days with low production cost. Subsequent assessment of these purified proteins using enzyme-linked immunosorbent assay (ELISA) and antibodies against F8 revealed enhanced detection of rF8-A2 or rF8-A3 in a concentration dependent manner, indicating the presence of the antibody-binding epitopes in these proteins. Furthermore, these proteins are suitable for generating novel antibodies against the F8 domain and F8 domain-capturing affinity columns by enabling their conjugation to GST-capturing beads. Additionally, the recombinant F8 domains produced herein can be used for various studies, which include investigating the explicit roles of the F8 domain in the coagulation process, with domain-specific binding partners, and antibodies.

摘要

凝血因子 VIII(F8)预先排列在六个结构域中,其缺乏会导致血友病 A。为了设计功能性 F8 治疗药物,不仅需要开发重组 F8(rF8)结构域来替代 F8,还需要解析与 F8 相关的机制。在这项研究中,我们使用. 生成了 GST 缀合的 F8 的 A2 和 A3 结构域的重组蛋白。. 细胞中的高生长速度和具有成本效益的蛋白质生产系统,使用廉价的试剂和材料,在 3-4 天内即可完成从蛋白质表达到纯化的整个过程,生产成本低。随后使用酶联免疫吸附测定(ELISA)和针对 F8 的抗体对这些纯化蛋白进行评估,结果表明 rF8-A2 或 rF8-A3 的检测呈浓度依赖性增强,表明这些蛋白中存在抗体结合表位。此外,这些蛋白可通过与 GST 捕获珠缀合,用于生成针对 F8 结构域和 F8 结构域捕获亲和柱的新型抗体。此外,本文中产生的重组 F8 结构域可用于各种研究,包括研究 F8 结构域在凝血过程中的明确作用,以及与 F8 结构域特异性结合的配体和抗体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df5b/10143837/9bb089323ee5/medicina-59-00694-g001.jpg

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