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Identification of the HECT E3 ligase UBR5 as a regulator of MYC degradation using a CRISPR/Cas9 screen

MYC oncoprotein is a multifunctional transcription factor that regulates the expression of a large number of genes involved in cellular growth, proliferation and metabolism. Altered MYC protein level lead to cellular transformation and tumorigenesis. MYC is deregulated in > 50% of human cancers,...

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Autores principales: Schukur, Lina, Zimmermann, Tamara, Niewoehner, Ole, Kerr, Grainne, Gleim, Scott, Bauer-Probst, Beatrice, Knapp, Britta, Galli, Giorgio G., Liang, Xiaoyou, Mendiola, Angelica, Reece-Hoyes, John, Rapti, Melivoia, Barbosa, Ines, Reschke, Markus, Radimerski, Thomas, Thoma, Claudio R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7676242/
https://www.ncbi.nlm.nih.gov/pubmed/33208877
http://dx.doi.org/10.1038/s41598-020-76960-z
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author Schukur, Lina
Zimmermann, Tamara
Niewoehner, Ole
Kerr, Grainne
Gleim, Scott
Bauer-Probst, Beatrice
Knapp, Britta
Galli, Giorgio G.
Liang, Xiaoyou
Mendiola, Angelica
Reece-Hoyes, John
Rapti, Melivoia
Barbosa, Ines
Reschke, Markus
Radimerski, Thomas
Thoma, Claudio R.
author_facet Schukur, Lina
Zimmermann, Tamara
Niewoehner, Ole
Kerr, Grainne
Gleim, Scott
Bauer-Probst, Beatrice
Knapp, Britta
Galli, Giorgio G.
Liang, Xiaoyou
Mendiola, Angelica
Reece-Hoyes, John
Rapti, Melivoia
Barbosa, Ines
Reschke, Markus
Radimerski, Thomas
Thoma, Claudio R.
author_sort Schukur, Lina
collection PubMed
description MYC oncoprotein is a multifunctional transcription factor that regulates the expression of a large number of genes involved in cellular growth, proliferation and metabolism. Altered MYC protein level lead to cellular transformation and tumorigenesis. MYC is deregulated in > 50% of human cancers, rendering it an attractive drug target. However, direct inhibition of this class of proteins using conventional small molecules is challenging due to their intrinsically disordered state. To discover novel posttranslational regulators of MYC protein stability and turnover, we established a genetic screen in mammalian cells by combining a fluorescent protein-based MYC abundance sensor, CRISPR/Cas9-based gene knockouts and next-generation sequencing. Our screen identifies UBR5, an E3 ligase of the HECT-type family, as a novel regulator of MYC degradation. Even in the presence of the well-described and functional MYC ligase, FBXW7, UBR5 depletion leads to accumulation of MYC in cells. We demonstrate interaction of UBR5 with MYC and reduced K48-linked ubiquitination of MYC upon loss of UBR5 in cells. Interestingly, in cancer cell lines with amplified MYC expression, depletion of UBR5 resulted in reduced cell survival, as a consequence of MYC stabilization. Finally, we show that MYC and UBR5 are co-amplified in more than 40% of cancer cells and that MYC copy number amplification correlates with enhanced transcriptional output of UBR5. This suggests that UBR5 acts as a buffer in MYC amplified settings and protects these cells from apoptosis.
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spelling pubmed-76762422020-11-23 Identification of the HECT E3 ligase UBR5 as a regulator of MYC degradation using a CRISPR/Cas9 screen Schukur, Lina Zimmermann, Tamara Niewoehner, Ole Kerr, Grainne Gleim, Scott Bauer-Probst, Beatrice Knapp, Britta Galli, Giorgio G. Liang, Xiaoyou Mendiola, Angelica Reece-Hoyes, John Rapti, Melivoia Barbosa, Ines Reschke, Markus Radimerski, Thomas Thoma, Claudio R. Sci Rep Article MYC oncoprotein is a multifunctional transcription factor that regulates the expression of a large number of genes involved in cellular growth, proliferation and metabolism. Altered MYC protein level lead to cellular transformation and tumorigenesis. MYC is deregulated in > 50% of human cancers, rendering it an attractive drug target. However, direct inhibition of this class of proteins using conventional small molecules is challenging due to their intrinsically disordered state. To discover novel posttranslational regulators of MYC protein stability and turnover, we established a genetic screen in mammalian cells by combining a fluorescent protein-based MYC abundance sensor, CRISPR/Cas9-based gene knockouts and next-generation sequencing. Our screen identifies UBR5, an E3 ligase of the HECT-type family, as a novel regulator of MYC degradation. Even in the presence of the well-described and functional MYC ligase, FBXW7, UBR5 depletion leads to accumulation of MYC in cells. We demonstrate interaction of UBR5 with MYC and reduced K48-linked ubiquitination of MYC upon loss of UBR5 in cells. Interestingly, in cancer cell lines with amplified MYC expression, depletion of UBR5 resulted in reduced cell survival, as a consequence of MYC stabilization. Finally, we show that MYC and UBR5 are co-amplified in more than 40% of cancer cells and that MYC copy number amplification correlates with enhanced transcriptional output of UBR5. This suggests that UBR5 acts as a buffer in MYC amplified settings and protects these cells from apoptosis. Nature Publishing Group UK 2020-11-18 /pmc/articles/PMC7676242/ /pubmed/33208877 http://dx.doi.org/10.1038/s41598-020-76960-z Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article's Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article's Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Schukur, Lina
Zimmermann, Tamara
Niewoehner, Ole
Kerr, Grainne
Gleim, Scott
Bauer-Probst, Beatrice
Knapp, Britta
Galli, Giorgio G.
Liang, Xiaoyou
Mendiola, Angelica
Reece-Hoyes, John
Rapti, Melivoia
Barbosa, Ines
Reschke, Markus
Radimerski, Thomas
Thoma, Claudio R.
Identification of the HECT E3 ligase UBR5 as a regulator of MYC degradation using a CRISPR/Cas9 screen
title Identification of the HECT E3 ligase UBR5 as a regulator of MYC degradation using a CRISPR/Cas9 screen
title_full Identification of the HECT E3 ligase UBR5 as a regulator of MYC degradation using a CRISPR/Cas9 screen
title_fullStr Identification of the HECT E3 ligase UBR5 as a regulator of MYC degradation using a CRISPR/Cas9 screen
title_full_unstemmed Identification of the HECT E3 ligase UBR5 as a regulator of MYC degradation using a CRISPR/Cas9 screen
title_short Identification of the HECT E3 ligase UBR5 as a regulator of MYC degradation using a CRISPR/Cas9 screen
title_sort identification of the hect e3 ligase ubr5 as a regulator of myc degradation using a crispr/cas9 screen
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7676242/
https://www.ncbi.nlm.nih.gov/pubmed/33208877
http://dx.doi.org/10.1038/s41598-020-76960-z
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