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The recombinant anti-TNF-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy

The currently used anti-cytokine therapeutic antibodies cannot selectively neutralize pathogenic cytokine signaling that cause collateral damage to protective signaling cascades carrying the potential for unwanted side effects. The variable domains of heavy-chain only antibodies (HCAbs) discovered i...

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Autores principales: Chen, Xiaole, Nie, Kaimei, Zhang, Xin, Tan, Shuangyu, Zheng, Qingmei, Wang, Yaduan, Chen, Xiaofeng, Tang, Zhiyu, Liu, Rui, Yan, Mengru, Liu, Zhiwei, Lin, Jianbo, Xu, Jianhua, Zhang, Nanwen, Wang, He, Yang, Juhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502693/
https://www.ncbi.nlm.nih.gov/pubmed/32880389
http://dx.doi.org/10.1042/BSR20194515
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author Chen, Xiaole
Nie, Kaimei
Zhang, Xin
Tan, Shuangyu
Zheng, Qingmei
Wang, Yaduan
Chen, Xiaofeng
Tang, Zhiyu
Liu, Rui
Yan, Mengru
Liu, Zhiwei
Lin, Jianbo
Xu, Jianhua
Zhang, Nanwen
Wang, He
Yang, Juhua
author_facet Chen, Xiaole
Nie, Kaimei
Zhang, Xin
Tan, Shuangyu
Zheng, Qingmei
Wang, Yaduan
Chen, Xiaofeng
Tang, Zhiyu
Liu, Rui
Yan, Mengru
Liu, Zhiwei
Lin, Jianbo
Xu, Jianhua
Zhang, Nanwen
Wang, He
Yang, Juhua
author_sort Chen, Xiaole
collection PubMed
description The currently used anti-cytokine therapeutic antibodies cannot selectively neutralize pathogenic cytokine signaling that cause collateral damage to protective signaling cascades carrying the potential for unwanted side effects. The variable domains of heavy-chain only antibodies (HCAbs) discovered in Camelidae are stable and display to be fully functional in antigen-binding against variable targets, which seem to be attractive candidates for the next-generation biologic drug study. The purpose of our study was to establish a simple prokaryotic expression system for large-scale expression, purification, and refolding of the recombinant anti-tumor necrosis factor α (TNF-α) fusion protein (FVH1-1) from inclusion bodies. Over 95% purity of the recombinant anti-TNF-α fusion proteins was obtained by just one purification step in our developed prokaryotic expression system, while the results of surface plasmon resonance (SPR) established the high-efficiency potent binding ability of FVH1-1 to human TNF-α. The counteraction of TNF-α cytotoxic effect experiment on the mouse fibroblast fibrosarcoma cell line (L929) confirmed that the expressed FVH1-1 were able to selectively and highly combine with human recombinant TNF-α (hTNF-α) in vitro. Western blot results showed that FVH1-1 can inhibit the activation of caspase-9 and PARP, which are the apoptotic signaling pathway proteins activated by hTNF-α. Meanwhile, lysosome autophagy signaling pathways stimulated by hTNF-α were inhibited by FVH1-1, which down-regulated the expression of LC3II/LC3I and up-regulated the expression of P62, indicating that the autophagy linked with TNF-α-induced apoptosis in response to rheumatoid arthritis. The results of the AIA rat model experiment presented that FVH1-1 can reduce the degree of joint swelling and inflammatory factors to a certain extent in vivo.
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spelling pubmed-75026932020-09-28 The recombinant anti-TNF-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy Chen, Xiaole Nie, Kaimei Zhang, Xin Tan, Shuangyu Zheng, Qingmei Wang, Yaduan Chen, Xiaofeng Tang, Zhiyu Liu, Rui Yan, Mengru Liu, Zhiwei Lin, Jianbo Xu, Jianhua Zhang, Nanwen Wang, He Yang, Juhua Biosci Rep Immunology & Inflammation The currently used anti-cytokine therapeutic antibodies cannot selectively neutralize pathogenic cytokine signaling that cause collateral damage to protective signaling cascades carrying the potential for unwanted side effects. The variable domains of heavy-chain only antibodies (HCAbs) discovered in Camelidae are stable and display to be fully functional in antigen-binding against variable targets, which seem to be attractive candidates for the next-generation biologic drug study. The purpose of our study was to establish a simple prokaryotic expression system for large-scale expression, purification, and refolding of the recombinant anti-tumor necrosis factor α (TNF-α) fusion protein (FVH1-1) from inclusion bodies. Over 95% purity of the recombinant anti-TNF-α fusion proteins was obtained by just one purification step in our developed prokaryotic expression system, while the results of surface plasmon resonance (SPR) established the high-efficiency potent binding ability of FVH1-1 to human TNF-α. The counteraction of TNF-α cytotoxic effect experiment on the mouse fibroblast fibrosarcoma cell line (L929) confirmed that the expressed FVH1-1 were able to selectively and highly combine with human recombinant TNF-α (hTNF-α) in vitro. Western blot results showed that FVH1-1 can inhibit the activation of caspase-9 and PARP, which are the apoptotic signaling pathway proteins activated by hTNF-α. Meanwhile, lysosome autophagy signaling pathways stimulated by hTNF-α were inhibited by FVH1-1, which down-regulated the expression of LC3II/LC3I and up-regulated the expression of P62, indicating that the autophagy linked with TNF-α-induced apoptosis in response to rheumatoid arthritis. The results of the AIA rat model experiment presented that FVH1-1 can reduce the degree of joint swelling and inflammatory factors to a certain extent in vivo. Portland Press Ltd. 2020-09-18 /pmc/articles/PMC7502693/ /pubmed/32880389 http://dx.doi.org/10.1042/BSR20194515 Text en © 2020 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY).
spellingShingle Immunology & Inflammation
Chen, Xiaole
Nie, Kaimei
Zhang, Xin
Tan, Shuangyu
Zheng, Qingmei
Wang, Yaduan
Chen, Xiaofeng
Tang, Zhiyu
Liu, Rui
Yan, Mengru
Liu, Zhiwei
Lin, Jianbo
Xu, Jianhua
Zhang, Nanwen
Wang, He
Yang, Juhua
The recombinant anti-TNF-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy
title The recombinant anti-TNF-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy
title_full The recombinant anti-TNF-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy
title_fullStr The recombinant anti-TNF-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy
title_full_unstemmed The recombinant anti-TNF-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy
title_short The recombinant anti-TNF-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy
title_sort recombinant anti-tnf-α fusion protein ameliorates rheumatoid arthritis by the protective role of autophagy
topic Immunology & Inflammation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502693/
https://www.ncbi.nlm.nih.gov/pubmed/32880389
http://dx.doi.org/10.1042/BSR20194515
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