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Scalable Production of a Multifunctional Protein (TSG-6) That Aggregates with Itself and the CHO Cells That Synthesize It

TNF-α stimulated gene/protein 6 (TNFAIP6/TSG-6) is a multifunctional protein that has a number of potential therapeutic applications. Experiments and clinical trials with TSG-6, however, have been limited by the technical difficulties of producing the recombinant protein. We prepared stable clones o...

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Autores principales: Kim, Dong-Ki, Choi, Hosoon, Nishida, Hidetaka, Oh, Joo Youn, Gregory, Carl, Lee, Ryang Hwa, Yu, Ji Min, Watanabe, Jun, An, Su Yeon, Bartosh, Thomas J., Prockop, Darwin J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4721919/
https://www.ncbi.nlm.nih.gov/pubmed/26793973
http://dx.doi.org/10.1371/journal.pone.0147553
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author Kim, Dong-Ki
Choi, Hosoon
Nishida, Hidetaka
Oh, Joo Youn
Gregory, Carl
Lee, Ryang Hwa
Yu, Ji Min
Watanabe, Jun
An, Su Yeon
Bartosh, Thomas J.
Prockop, Darwin J.
author_facet Kim, Dong-Ki
Choi, Hosoon
Nishida, Hidetaka
Oh, Joo Youn
Gregory, Carl
Lee, Ryang Hwa
Yu, Ji Min
Watanabe, Jun
An, Su Yeon
Bartosh, Thomas J.
Prockop, Darwin J.
author_sort Kim, Dong-Ki
collection PubMed
description TNF-α stimulated gene/protein 6 (TNFAIP6/TSG-6) is a multifunctional protein that has a number of potential therapeutic applications. Experiments and clinical trials with TSG-6, however, have been limited by the technical difficulties of producing the recombinant protein. We prepared stable clones of CHO cells that expressed recombinant human TSG-6 (rhTSG-6) as a secreted glycoprotein. Paradoxically, both cell number and protein production decreased dramatically when the clones were expanded. The decreases occurred because the protein aggregated the synthesizing CHO cells by binding to the brush border of hyaluronan that is found around many cultured cells. In addition, the rhTSG-6 readily self-aggregated. To address these problems, we added to the medium an inhibitor of hyaluronan synthesis and heparin to compete with the binding of TSG-6 to hyaluronan. Also, we optimized the composition of the culture medium, and transferred the CHO cells from a spinner culture system to a bioreactor that controlled pH and thereby decreased pH-dependent binding properties of the protein. With these and other improvements in the culture conditions, we obtained 57.0 mg ± 9.16 S.D. of rhTSG-6 in 5 or 6 liter of medium. The rhTSG-6 accounted for 18.0% ± 3.76 S.D. of the total protein in the medium. We then purified the protein with a Ni-chelate column that bound the His tag engineered into the C-terminus of the protein followed by an anion exchange column. The yield of the purified monomeric rhTSG-6 was 4.1 mg to 5.6 mg per liter of culture medium. After intravenous injection into mice, the protein had a longer plasma half-life than commercially available rhTSG-6 isolated from a mammalian cell lysate, apparently because it was recovered as a secreted glycoprotein. The bioactivity of the rhTSG-6 in suppressing inflammation was demonstrated in a murine model.
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spelling pubmed-47219192016-01-30 Scalable Production of a Multifunctional Protein (TSG-6) That Aggregates with Itself and the CHO Cells That Synthesize It Kim, Dong-Ki Choi, Hosoon Nishida, Hidetaka Oh, Joo Youn Gregory, Carl Lee, Ryang Hwa Yu, Ji Min Watanabe, Jun An, Su Yeon Bartosh, Thomas J. Prockop, Darwin J. PLoS One Research Article TNF-α stimulated gene/protein 6 (TNFAIP6/TSG-6) is a multifunctional protein that has a number of potential therapeutic applications. Experiments and clinical trials with TSG-6, however, have been limited by the technical difficulties of producing the recombinant protein. We prepared stable clones of CHO cells that expressed recombinant human TSG-6 (rhTSG-6) as a secreted glycoprotein. Paradoxically, both cell number and protein production decreased dramatically when the clones were expanded. The decreases occurred because the protein aggregated the synthesizing CHO cells by binding to the brush border of hyaluronan that is found around many cultured cells. In addition, the rhTSG-6 readily self-aggregated. To address these problems, we added to the medium an inhibitor of hyaluronan synthesis and heparin to compete with the binding of TSG-6 to hyaluronan. Also, we optimized the composition of the culture medium, and transferred the CHO cells from a spinner culture system to a bioreactor that controlled pH and thereby decreased pH-dependent binding properties of the protein. With these and other improvements in the culture conditions, we obtained 57.0 mg ± 9.16 S.D. of rhTSG-6 in 5 or 6 liter of medium. The rhTSG-6 accounted for 18.0% ± 3.76 S.D. of the total protein in the medium. We then purified the protein with a Ni-chelate column that bound the His tag engineered into the C-terminus of the protein followed by an anion exchange column. The yield of the purified monomeric rhTSG-6 was 4.1 mg to 5.6 mg per liter of culture medium. After intravenous injection into mice, the protein had a longer plasma half-life than commercially available rhTSG-6 isolated from a mammalian cell lysate, apparently because it was recovered as a secreted glycoprotein. The bioactivity of the rhTSG-6 in suppressing inflammation was demonstrated in a murine model. Public Library of Science 2016-01-21 /pmc/articles/PMC4721919/ /pubmed/26793973 http://dx.doi.org/10.1371/journal.pone.0147553 Text en © 2016 Kim et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kim, Dong-Ki
Choi, Hosoon
Nishida, Hidetaka
Oh, Joo Youn
Gregory, Carl
Lee, Ryang Hwa
Yu, Ji Min
Watanabe, Jun
An, Su Yeon
Bartosh, Thomas J.
Prockop, Darwin J.
Scalable Production of a Multifunctional Protein (TSG-6) That Aggregates with Itself and the CHO Cells That Synthesize It
title Scalable Production of a Multifunctional Protein (TSG-6) That Aggregates with Itself and the CHO Cells That Synthesize It
title_full Scalable Production of a Multifunctional Protein (TSG-6) That Aggregates with Itself and the CHO Cells That Synthesize It
title_fullStr Scalable Production of a Multifunctional Protein (TSG-6) That Aggregates with Itself and the CHO Cells That Synthesize It
title_full_unstemmed Scalable Production of a Multifunctional Protein (TSG-6) That Aggregates with Itself and the CHO Cells That Synthesize It
title_short Scalable Production of a Multifunctional Protein (TSG-6) That Aggregates with Itself and the CHO Cells That Synthesize It
title_sort scalable production of a multifunctional protein (tsg-6) that aggregates with itself and the cho cells that synthesize it
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4721919/
https://www.ncbi.nlm.nih.gov/pubmed/26793973
http://dx.doi.org/10.1371/journal.pone.0147553
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