Cargando…
Serine Biosynthesis Pathway Supports MYC–miR-494–EZH2 Feed-Forward Circuit Necessary to Maintain Metabolic and Epigenetic Reprogramming of Burkitt Lymphoma Cells
Burkitt lymphoma (BL) is a rapidly growing tumor, characterized by high anabolic requirements. The MYC oncogene plays a central role in the pathogenesis of this malignancy, controlling genes involved in apoptosis, proliferation, and cellular metabolism. Serine biosynthesis pathway (SBP) couples glyc...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7139810/ https://www.ncbi.nlm.nih.gov/pubmed/32138178 http://dx.doi.org/10.3390/cancers12030580 |
_version_ | 1783518852272881664 |
---|---|
author | Białopiotrowicz, Emilia Noyszewska-Kania, Monika Kachamakova-Trojanowska, Neli Łoboda, Agnieszka Cybulska, Magdalena Grochowska, Aleksandra Kopczyński, Michał Mikula, Michał Prochorec-Sobieszek, Monika Firczuk, Małgorzata Graczyk-Jarzynka, Agnieszka Zagożdżon, Radosław Ząbek, Adam Młynarz, Piotr Dulak, Józef Górniak, Patryk Szydłowski, Maciej Pyziak, Karolina Martyka, Justyna Sroka-Porada, Agnieszka Jabłońska, Ewa Polak, Anna Kowalczyk, Piotr Szumera-Ciećkiewicz, Anna Chapuy, Bjoern Rzymski, Tomasz Brzózka, Krzysztof Juszczyński, Przemysław |
author_facet | Białopiotrowicz, Emilia Noyszewska-Kania, Monika Kachamakova-Trojanowska, Neli Łoboda, Agnieszka Cybulska, Magdalena Grochowska, Aleksandra Kopczyński, Michał Mikula, Michał Prochorec-Sobieszek, Monika Firczuk, Małgorzata Graczyk-Jarzynka, Agnieszka Zagożdżon, Radosław Ząbek, Adam Młynarz, Piotr Dulak, Józef Górniak, Patryk Szydłowski, Maciej Pyziak, Karolina Martyka, Justyna Sroka-Porada, Agnieszka Jabłońska, Ewa Polak, Anna Kowalczyk, Piotr Szumera-Ciećkiewicz, Anna Chapuy, Bjoern Rzymski, Tomasz Brzózka, Krzysztof Juszczyński, Przemysław |
author_sort | Białopiotrowicz, Emilia |
collection | PubMed |
description | Burkitt lymphoma (BL) is a rapidly growing tumor, characterized by high anabolic requirements. The MYC oncogene plays a central role in the pathogenesis of this malignancy, controlling genes involved in apoptosis, proliferation, and cellular metabolism. Serine biosynthesis pathway (SBP) couples glycolysis to folate and methionine cycles, supporting biosynthesis of certain amino acids, nucleotides, glutathione, and a methyl group donor, S-adenosylmethionine (SAM). We report that BLs overexpress SBP enzymes, phosphoglycerate dehydrogenase (PHGDH) and phosphoserine aminotransferase 1 (PSAT1). Both genes are controlled by the MYC-dependent ATF4 transcription factor. Genetic ablation of PHGDH/PSAT1 or chemical PHGDH inhibition with NCT-503 decreased BL cell lines proliferation and clonogenicity. NCT-503 reduced glutathione level, increased reactive oxygen species abundance, and induced apoptosis. Consistent with the role of SAM as a methyl donor, NCT-503 decreased DNA and histone methylation, and led to the re-expression of ID4, KLF4, CDKN2B and TXNIP tumor suppressors. High H3K27me3 level is known to repress the MYC negative regulator miR-494. NCT-503 decreased H3K27me3 abundance, increased the miR-494 level, and reduced the expression of MYC and MYC-dependent histone methyltransferase, EZH2. Surprisingly, chemical/genetic disruption of SBP did not delay BL and breast cancer xenografts growth, suggesting the existence of mechanisms compensating the PHGDH/PSAT1 absence in vivo. |
format | Online Article Text |
id | pubmed-7139810 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-71398102020-04-10 Serine Biosynthesis Pathway Supports MYC–miR-494–EZH2 Feed-Forward Circuit Necessary to Maintain Metabolic and Epigenetic Reprogramming of Burkitt Lymphoma Cells Białopiotrowicz, Emilia Noyszewska-Kania, Monika Kachamakova-Trojanowska, Neli Łoboda, Agnieszka Cybulska, Magdalena Grochowska, Aleksandra Kopczyński, Michał Mikula, Michał Prochorec-Sobieszek, Monika Firczuk, Małgorzata Graczyk-Jarzynka, Agnieszka Zagożdżon, Radosław Ząbek, Adam Młynarz, Piotr Dulak, Józef Górniak, Patryk Szydłowski, Maciej Pyziak, Karolina Martyka, Justyna Sroka-Porada, Agnieszka Jabłońska, Ewa Polak, Anna Kowalczyk, Piotr Szumera-Ciećkiewicz, Anna Chapuy, Bjoern Rzymski, Tomasz Brzózka, Krzysztof Juszczyński, Przemysław Cancers (Basel) Article Burkitt lymphoma (BL) is a rapidly growing tumor, characterized by high anabolic requirements. The MYC oncogene plays a central role in the pathogenesis of this malignancy, controlling genes involved in apoptosis, proliferation, and cellular metabolism. Serine biosynthesis pathway (SBP) couples glycolysis to folate and methionine cycles, supporting biosynthesis of certain amino acids, nucleotides, glutathione, and a methyl group donor, S-adenosylmethionine (SAM). We report that BLs overexpress SBP enzymes, phosphoglycerate dehydrogenase (PHGDH) and phosphoserine aminotransferase 1 (PSAT1). Both genes are controlled by the MYC-dependent ATF4 transcription factor. Genetic ablation of PHGDH/PSAT1 or chemical PHGDH inhibition with NCT-503 decreased BL cell lines proliferation and clonogenicity. NCT-503 reduced glutathione level, increased reactive oxygen species abundance, and induced apoptosis. Consistent with the role of SAM as a methyl donor, NCT-503 decreased DNA and histone methylation, and led to the re-expression of ID4, KLF4, CDKN2B and TXNIP tumor suppressors. High H3K27me3 level is known to repress the MYC negative regulator miR-494. NCT-503 decreased H3K27me3 abundance, increased the miR-494 level, and reduced the expression of MYC and MYC-dependent histone methyltransferase, EZH2. Surprisingly, chemical/genetic disruption of SBP did not delay BL and breast cancer xenografts growth, suggesting the existence of mechanisms compensating the PHGDH/PSAT1 absence in vivo. MDPI 2020-03-03 /pmc/articles/PMC7139810/ /pubmed/32138178 http://dx.doi.org/10.3390/cancers12030580 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Białopiotrowicz, Emilia Noyszewska-Kania, Monika Kachamakova-Trojanowska, Neli Łoboda, Agnieszka Cybulska, Magdalena Grochowska, Aleksandra Kopczyński, Michał Mikula, Michał Prochorec-Sobieszek, Monika Firczuk, Małgorzata Graczyk-Jarzynka, Agnieszka Zagożdżon, Radosław Ząbek, Adam Młynarz, Piotr Dulak, Józef Górniak, Patryk Szydłowski, Maciej Pyziak, Karolina Martyka, Justyna Sroka-Porada, Agnieszka Jabłońska, Ewa Polak, Anna Kowalczyk, Piotr Szumera-Ciećkiewicz, Anna Chapuy, Bjoern Rzymski, Tomasz Brzózka, Krzysztof Juszczyński, Przemysław Serine Biosynthesis Pathway Supports MYC–miR-494–EZH2 Feed-Forward Circuit Necessary to Maintain Metabolic and Epigenetic Reprogramming of Burkitt Lymphoma Cells |
title | Serine Biosynthesis Pathway Supports MYC–miR-494–EZH2 Feed-Forward Circuit Necessary to Maintain Metabolic and Epigenetic Reprogramming of Burkitt Lymphoma Cells |
title_full | Serine Biosynthesis Pathway Supports MYC–miR-494–EZH2 Feed-Forward Circuit Necessary to Maintain Metabolic and Epigenetic Reprogramming of Burkitt Lymphoma Cells |
title_fullStr | Serine Biosynthesis Pathway Supports MYC–miR-494–EZH2 Feed-Forward Circuit Necessary to Maintain Metabolic and Epigenetic Reprogramming of Burkitt Lymphoma Cells |
title_full_unstemmed | Serine Biosynthesis Pathway Supports MYC–miR-494–EZH2 Feed-Forward Circuit Necessary to Maintain Metabolic and Epigenetic Reprogramming of Burkitt Lymphoma Cells |
title_short | Serine Biosynthesis Pathway Supports MYC–miR-494–EZH2 Feed-Forward Circuit Necessary to Maintain Metabolic and Epigenetic Reprogramming of Burkitt Lymphoma Cells |
title_sort | serine biosynthesis pathway supports myc–mir-494–ezh2 feed-forward circuit necessary to maintain metabolic and epigenetic reprogramming of burkitt lymphoma cells |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7139810/ https://www.ncbi.nlm.nih.gov/pubmed/32138178 http://dx.doi.org/10.3390/cancers12030580 |
work_keys_str_mv | AT białopiotrowiczemilia serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT noyszewskakaniamonika serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT kachamakovatrojanowskaneli serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT łobodaagnieszka serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT cybulskamagdalena serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT grochowskaaleksandra serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT kopczynskimichał serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT mikulamichał serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT prochorecsobieszekmonika serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT firczukmałgorzata serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT graczykjarzynkaagnieszka serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT zagozdzonradosław serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT zabekadam serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT młynarzpiotr serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT dulakjozef serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT gorniakpatryk serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT szydłowskimaciej serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT pyziakkarolina serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT martykajustyna serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT srokaporadaagnieszka serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT jabłonskaewa serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT polakanna serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT kowalczykpiotr serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT szumeracieckiewiczanna serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT chapuybjoern serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT rzymskitomasz serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT brzozkakrzysztof serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells AT juszczynskiprzemysław serinebiosynthesispathwaysupportsmycmir494ezh2feedforwardcircuitnecessarytomaintainmetabolicandepigeneticreprogrammingofburkittlymphomacells |