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Reciprocal regulation of autophagy and dNTP pools in human cancer cells

Ribonucleotide reductase (RNR) plays a critical role in catalyzing the biosynthesis and maintaining the intracellular concentration of 4 deoxyribonucleoside triphosphates (dNTPs). Unbalanced or deficient dNTP pools cause serious genotoxic consequences. Autophagy is the process by which cytoplasmic c...

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Autores principales: Chen, Wei, Zhang, Lisheng, Zhang, Keqiang, Zhou, Bingsen, Kuo, Mei-Ling, Hu, Shuya, Chen, Linling, Tang, Michelle, Chen, Yun-Ru, Yang, Lixin, Ann, David K, Yen, Yun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4203552/
https://www.ncbi.nlm.nih.gov/pubmed/24905824
http://dx.doi.org/10.4161/auto.28954
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author Chen, Wei
Zhang, Lisheng
Zhang, Keqiang
Zhou, Bingsen
Kuo, Mei-Ling
Hu, Shuya
Chen, Linling
Tang, Michelle
Chen, Yun-Ru
Yang, Lixin
Ann, David K
Yen, Yun
author_facet Chen, Wei
Zhang, Lisheng
Zhang, Keqiang
Zhou, Bingsen
Kuo, Mei-Ling
Hu, Shuya
Chen, Linling
Tang, Michelle
Chen, Yun-Ru
Yang, Lixin
Ann, David K
Yen, Yun
author_sort Chen, Wei
collection PubMed
description Ribonucleotide reductase (RNR) plays a critical role in catalyzing the biosynthesis and maintaining the intracellular concentration of 4 deoxyribonucleoside triphosphates (dNTPs). Unbalanced or deficient dNTP pools cause serious genotoxic consequences. Autophagy is the process by which cytoplasmic constituents are degraded in lysosomes to maintain cellular homeostasis and bioenergetics. However, the role of autophagy in regulating dNTP pools is not well understood. Herein, we reported that starvation- or rapamycin-induced autophagy was accompanied by a decrease in RNR activity and dNTP pools in human cancer cells. Furthermore, downregulation of the small subunit of RNR (RRM2) by siRNA or treatment with the RNR inhibitor hydroxyurea substantially induced autophagy. Conversely, cancer cells with abundant endogenous intracellular dNTPs or treated with dNTP precursors were less responsive to autophagy induction by rapamycin, suggesting that autophagy and dNTP pool levels are regulated through a negative feedback loop. Lastly, treatment with si-RRM2 caused an increase in MAP1LC3B, ATG5, BECN1, and ATG12 transcript abundance in xenografted Tu212 tumors in vivo. Together, our results revealed a previously unrecognized reciprocal regulation between dNTP pools and autophagy in cancer cells.
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spelling pubmed-42035522015-07-01 Reciprocal regulation of autophagy and dNTP pools in human cancer cells Chen, Wei Zhang, Lisheng Zhang, Keqiang Zhou, Bingsen Kuo, Mei-Ling Hu, Shuya Chen, Linling Tang, Michelle Chen, Yun-Ru Yang, Lixin Ann, David K Yen, Yun Autophagy Basic Research Paper Ribonucleotide reductase (RNR) plays a critical role in catalyzing the biosynthesis and maintaining the intracellular concentration of 4 deoxyribonucleoside triphosphates (dNTPs). Unbalanced or deficient dNTP pools cause serious genotoxic consequences. Autophagy is the process by which cytoplasmic constituents are degraded in lysosomes to maintain cellular homeostasis and bioenergetics. However, the role of autophagy in regulating dNTP pools is not well understood. Herein, we reported that starvation- or rapamycin-induced autophagy was accompanied by a decrease in RNR activity and dNTP pools in human cancer cells. Furthermore, downregulation of the small subunit of RNR (RRM2) by siRNA or treatment with the RNR inhibitor hydroxyurea substantially induced autophagy. Conversely, cancer cells with abundant endogenous intracellular dNTPs or treated with dNTP precursors were less responsive to autophagy induction by rapamycin, suggesting that autophagy and dNTP pool levels are regulated through a negative feedback loop. Lastly, treatment with si-RRM2 caused an increase in MAP1LC3B, ATG5, BECN1, and ATG12 transcript abundance in xenografted Tu212 tumors in vivo. Together, our results revealed a previously unrecognized reciprocal regulation between dNTP pools and autophagy in cancer cells. Landes Bioscience 2014-07-01 2014-05-16 /pmc/articles/PMC4203552/ /pubmed/24905824 http://dx.doi.org/10.4161/auto.28954 Text en Copyright © 2014 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Basic Research Paper
Chen, Wei
Zhang, Lisheng
Zhang, Keqiang
Zhou, Bingsen
Kuo, Mei-Ling
Hu, Shuya
Chen, Linling
Tang, Michelle
Chen, Yun-Ru
Yang, Lixin
Ann, David K
Yen, Yun
Reciprocal regulation of autophagy and dNTP pools in human cancer cells
title Reciprocal regulation of autophagy and dNTP pools in human cancer cells
title_full Reciprocal regulation of autophagy and dNTP pools in human cancer cells
title_fullStr Reciprocal regulation of autophagy and dNTP pools in human cancer cells
title_full_unstemmed Reciprocal regulation of autophagy and dNTP pools in human cancer cells
title_short Reciprocal regulation of autophagy and dNTP pools in human cancer cells
title_sort reciprocal regulation of autophagy and dntp pools in human cancer cells
topic Basic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4203552/
https://www.ncbi.nlm.nih.gov/pubmed/24905824
http://dx.doi.org/10.4161/auto.28954
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