Effective expression and characterization of the receptor binding domains in SARS-CoV-2 Spike proteins from original strain and variants of concern using Bombyx mori nucleopolyhedrovirus in silkworm

IF 1.4 4区 生物学 Q4 BIOCHEMICAL RESEARCH METHODS Protein expression and purification Pub Date : 2024-02-22 DOI:10.1016/j.pep.2024.106450
Akira Tsukamoto , Lee Jae Man , Kosuke Oyama , Akitsu Masuda , Hiroaki Mon , Tadashi Ueda , Takahiro Kusakabe
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Abstract

A new coronavirus, known as severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), is responsible for the global pandemic of COVID-19 in 2020. Through structural analysis, it was found that several amino acid residues in the human angiotensin-converting enzyme-2 (hACE2) receptor directly interact with those in the receptor binding domain (RBD) of the spike glycoprotein (S-protein). Various cell lines, including HEK293, HeLa cells, and the baculovirus expression vector system (BEVS) with the insect cell line Sf9, have been utilized to produce the RBD. In this study, we investigated the use of Bombyx mori nucleopolyhedrovirus (BmNPV) and BEVS. For efficient production of a highly pure recombinant RBD protein, we designed it with two tags (His tag and STREP tag) at the C-terminus and a solubilizing tag (SUMO) at the N-terminus. After expressing the protein using BmNPV and silkworm and purifying it with a HisTrap excel column, the eluted protein was digested with SUMO protease and further purified using a Strep-Tactin Superflow column. As a result, we obtained the RBD as a monomer with a yield of 2.6 mg/10 mL serum (equivalent to 30 silkworms). The RBD showed an affinity for the hACE2 receptor. Additionally, the RBDs from the Alpha, Beta, Gamma, Delta, and Omicron variants were expressed and purified using the same protocol. It was found that the RBD from the Alpha, Beta, Gamma, and Delta variants could be obtained with yields of 1.4–2.6 mg/10 mL serum and had an affinity to the hACE2 receptor.

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利用蚕核型多角体病毒有效表达和鉴定 SARS-CoV-2 Spike 蛋白原始株和关注变异株的受体结合域。
一种被称为严重急性呼吸系统综合征冠状病毒 2(SARS-CoV-2)的新型冠状病毒是 2020 年 COVID-19 全球大流行的罪魁祸首。通过结构分析发现,人类血管紧张素转换酶-2(hACE2)受体中的几个氨基酸残基与 S 蛋白受体结合域(RBD)中的氨基酸残基直接相互作用。各种细胞系,包括 HEK293、HeLa 细胞和带有昆虫细胞系 Sf9 的杆状病毒表达载体系统(BEVS),都被用来生产 RBD。在本研究中,我们研究了如何使用蚕核多杀性病毒(BmNPV)和 BEVS。为了高效生产高纯度的重组 RBD 蛋白,我们在 C 端设计了两个标签(His 标签和 STREP 标签),在 N 端设计了一个增溶标签(SUMO)。用 BmNPV 和家蚕表达蛋白并用 HisTrap excel 柱纯化后,用 SUMO 蛋白酶消化洗脱的蛋白,并用 Strep-Tactin Superflow 柱进一步纯化。结果,我们获得了单体的 RBD,产量为 2.6 mg/10 mL 血清(相当于 30 条蚕)。该 RBD 对 hACE2 受体具有亲和力。此外,还使用相同的方案表达和纯化了来自 Alpha、Beta、Gamma、Delta 和 Omicron 变体的 RBD。结果发现,来自 Alpha、Beta、Gamma 和 Delta 变体的 RBD 的产量为 1.4-2.6 毫克/10 毫升血清,并且对 hACE2 受体具有亲和力。
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来源期刊
Protein expression and purification
Protein expression and purification 生物-生化研究方法
CiteScore
3.70
自引率
6.20%
发文量
120
审稿时长
32 days
期刊介绍: Protein Expression and Purification is an international journal providing a forum for the dissemination of new information on protein expression, extraction, purification, characterization, and/or applications using conventional biochemical and/or modern molecular biological approaches and methods, which are of broad interest to the field. The journal does not typically publish repetitive examples of protein expression and purification involving standard, well-established, methods. However, exceptions might include studies on important and/or difficult to express and/or purify proteins and/or studies that include extensive protein characterization, which provide new, previously unpublished information.
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