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Regulation of pyruvate dehydrogenase complex related to lactate switch in CHO cells

The metabolism of Chinese hamster ovary (CHO) cell lines is typically characterized by high rates of aerobic glycolysis with increased lactate formation, known as the ”Warburg” effect. Although this metabolic state can switch to lactate consumption, the involved regulations of the central metabolism...

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Autores principales: Möller, Johannes, Bhat, Krathika, Guhl, Lotta, Pörtner, Ralf, Jandt, Uwe, Zeng, An‐Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7923601/
https://www.ncbi.nlm.nih.gov/pubmed/33716610
http://dx.doi.org/10.1002/elsc.202000037
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author Möller, Johannes
Bhat, Krathika
Guhl, Lotta
Pörtner, Ralf
Jandt, Uwe
Zeng, An‐Ping
author_facet Möller, Johannes
Bhat, Krathika
Guhl, Lotta
Pörtner, Ralf
Jandt, Uwe
Zeng, An‐Ping
author_sort Möller, Johannes
collection PubMed
description The metabolism of Chinese hamster ovary (CHO) cell lines is typically characterized by high rates of aerobic glycolysis with increased lactate formation, known as the ”Warburg” effect. Although this metabolic state can switch to lactate consumption, the involved regulations of the central metabolism have only been partially studied so far. An important reaction transferring the lactate precursor, pyruvate, into the tricarboxylic acid cycle is the decarboxylation reaction catalyzed by the pyruvate dehydrogenase enzyme complex (PDC). Among other mechanisms, PDC is mainly regulated by phosphorylation–dephosphorylation at the three sites Ser232, Ser293, and Ser300. In this work, the PDC phosphorylation in antibody‐producing CHO DP‐12 cell culture is investigated during the lactate switch. Batch cultivations were carried out with frequent sampling (every 6 h) during the transition from lactate formation to lactate uptake, and the PDC phosphorylation levels were quantified using a novel indirect flow cytometry protocol. Contrary to the expected activation of PDC (i.e., reduced PDC phosphorylation) during lactate consumption, Ser293 and Ser300 phosphorylation levels were 33% higher compared to the phase of glucose excess. At the same time, the relative phosphorylation level of Ser232 increased steadily throughout the cultivation (66% increase overall). The intracellular pyruvate was found to accumulate only during the period of high lactate production, while acetyl‐CoA showed nearly no accumulation. These results indicate a deactivation of PDC and reduced oxidative metabolism during lactate switch even though the cells undergo a metabolic transition to lactate‐based cell growth and metabolism. Overall, this study provides a unique view on the regulation of PDC during the lactate switch, which contributes to an improved understanding of PDC and its interaction with the bioprocess.
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spelling pubmed-79236012021-03-12 Regulation of pyruvate dehydrogenase complex related to lactate switch in CHO cells Möller, Johannes Bhat, Krathika Guhl, Lotta Pörtner, Ralf Jandt, Uwe Zeng, An‐Ping Eng Life Sci Research Articles The metabolism of Chinese hamster ovary (CHO) cell lines is typically characterized by high rates of aerobic glycolysis with increased lactate formation, known as the ”Warburg” effect. Although this metabolic state can switch to lactate consumption, the involved regulations of the central metabolism have only been partially studied so far. An important reaction transferring the lactate precursor, pyruvate, into the tricarboxylic acid cycle is the decarboxylation reaction catalyzed by the pyruvate dehydrogenase enzyme complex (PDC). Among other mechanisms, PDC is mainly regulated by phosphorylation–dephosphorylation at the three sites Ser232, Ser293, and Ser300. In this work, the PDC phosphorylation in antibody‐producing CHO DP‐12 cell culture is investigated during the lactate switch. Batch cultivations were carried out with frequent sampling (every 6 h) during the transition from lactate formation to lactate uptake, and the PDC phosphorylation levels were quantified using a novel indirect flow cytometry protocol. Contrary to the expected activation of PDC (i.e., reduced PDC phosphorylation) during lactate consumption, Ser293 and Ser300 phosphorylation levels were 33% higher compared to the phase of glucose excess. At the same time, the relative phosphorylation level of Ser232 increased steadily throughout the cultivation (66% increase overall). The intracellular pyruvate was found to accumulate only during the period of high lactate production, while acetyl‐CoA showed nearly no accumulation. These results indicate a deactivation of PDC and reduced oxidative metabolism during lactate switch even though the cells undergo a metabolic transition to lactate‐based cell growth and metabolism. Overall, this study provides a unique view on the regulation of PDC during the lactate switch, which contributes to an improved understanding of PDC and its interaction with the bioprocess. John Wiley and Sons Inc. 2020-09-28 /pmc/articles/PMC7923601/ /pubmed/33716610 http://dx.doi.org/10.1002/elsc.202000037 Text en © 2020 The Authors. Engineering in Life Sciences published by Wiley‐VCH GmbH This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Möller, Johannes
Bhat, Krathika
Guhl, Lotta
Pörtner, Ralf
Jandt, Uwe
Zeng, An‐Ping
Regulation of pyruvate dehydrogenase complex related to lactate switch in CHO cells
title Regulation of pyruvate dehydrogenase complex related to lactate switch in CHO cells
title_full Regulation of pyruvate dehydrogenase complex related to lactate switch in CHO cells
title_fullStr Regulation of pyruvate dehydrogenase complex related to lactate switch in CHO cells
title_full_unstemmed Regulation of pyruvate dehydrogenase complex related to lactate switch in CHO cells
title_short Regulation of pyruvate dehydrogenase complex related to lactate switch in CHO cells
title_sort regulation of pyruvate dehydrogenase complex related to lactate switch in cho cells
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7923601/
https://www.ncbi.nlm.nih.gov/pubmed/33716610
http://dx.doi.org/10.1002/elsc.202000037
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