A New Combination: Anti Glypican-3 scFv and Diphtheria Toxin with the Best Flexible Linker

IF 1.9 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY The Protein Journal Pub Date : 2022-08-24 DOI:10.1007/s10930-022-10074-5
Hamid Hashemi Yeganeh, Mohammad Heiat, Seyed Moayed Alavian, Ehsan Rezaei
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Abstract

Along with all cancer treatments, including chemotherapy, radiotherapy, and surgery, targeting therapy is a new treatment manner. Immunotoxins are new recombinant structures that kill cancer cells by targeting specific antigens. Immunotoxins are composed of two parts: toxin moiety, which disrupts protein synthesis process, and antigen binding moiety that bind to antigens on the surface of cancer cells. Glypican 3 (GPC3) is an oncofetal antigen on the surface of Hepatocellular carcinoma (HCC) cells. In this study, truncated Diphtheria toxin (DT389) was fused to humanized scFv YP7 by one, two and three repeats of GGGGS linkers (DT389-(GGGGS)1-3YP7). In-silico and experimental investigation were performed to find out how many repeats of linker between toxin and scFv moieties are sufficient. Results of in-silico investigations revealed that the difference in the number of linkers does not have a significant effect on the main structures of the immunotoxin; however, the three-dimensional structure of two repeats of linker had a more appropriate structure compared to others with one and three linker replications. In addition, with enhancing the number of linkers, the probability of protein solubility has increased. Generally, the bioinformatics results of DT389-(GGGGS)2-YP7 structure showed that expression and folding is suitable; and YP7 scFv has appropriate orientation to bind GPC3. The experimental investigations indicated that the fusion protein was expressed as near to 50% soluble. Due to the high binding affinity of YP7 scFv and the proven potency of diphtheria in inhibiting protein synthesis, the proposed DT389-(GGGGS)2-YP7 immunotoxin is expected to function well in inhibiting HCC.

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抗Glypican-3 scFv与白喉毒素最佳柔性连接的新组合
随着化疗、放疗、手术等各种癌症治疗方法的发展,靶向治疗是一种新的治疗方式。免疫毒素是一种新的重组结构,通过靶向特定抗原来杀死癌细胞。免疫毒素由破坏蛋白质合成过程的毒素片段和与癌细胞表面抗原结合的抗原结合片段两部分组成。Glypican 3 (GPC3)是肝细胞癌(HCC)细胞表面的癌胚抗原。在这项研究中,截断的白喉毒素(DT389)通过1、2和3个GGGGS连接子(DT389-(GGGGS)1-3YP7)的重复与人源化的scFv YP7融合。我们进行了计算机和实验研究,以找出毒素与scFv片段之间的连接体重复多少次是足够的。计算机研究结果显示,连接体数量的差异对免疫毒素的主要结构没有显著影响;而连接子重复2次的三维结构比重复1次和重复3次的三维结构更合适。此外,随着连接体数量的增加,蛋白质溶解度的概率也增加。总体而言,DT389-(GGGGS)2-YP7结构的生物信息学结果表明,表达和折叠是合适的;YP7 scFv有合适的取向结合GPC3。实验研究表明,融合蛋白的可溶性接近50%。由于YP7 scFv的高结合亲和力和白喉抑制蛋白合成的有效性,所提出的DT389-(GGGGS)2-YP7免疫毒素有望在抑制HCC中发挥良好的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The Protein Journal
The Protein Journal 生物-生化与分子生物学
CiteScore
5.20
自引率
0.00%
发文量
57
审稿时长
12 months
期刊介绍: The Protein Journal (formerly the Journal of Protein Chemistry) publishes original research work on all aspects of proteins and peptides. These include studies concerned with covalent or three-dimensional structure determination (X-ray, NMR, cryoEM, EPR/ESR, optical methods, etc.), computational aspects of protein structure and function, protein folding and misfolding, assembly, genetics, evolution, proteomics, molecular biology, protein engineering, protein nanotechnology, protein purification and analysis and peptide synthesis, as well as the elucidation and interpretation of the molecular bases of biological activities of proteins and peptides. We accept original research papers, reviews, mini-reviews, hypotheses, opinion papers, and letters to the editor.
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