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RPL24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth

Partial loss of large ribosomal subunit protein 24 (RPL24) function is known to protect mice against Akt or Myc-driven cancers, in part via translational inhibition of a subset of cap(eIF4E)-dependently translated mRNAs. The role of RPL24 in human malignancies is unknown. By analyzing a public datas...

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Autores principales: Wilson-Edell, Kathleen A., Kehasse, Amanuel, Scott, Gary K., Yau, Christina, Rothschild, Daniel E., Schilling, Birgit, Gabriel, Bianca S., Yevtushenko, Mariya A., Hanson, Ingrid M., Held, Jason M., Gibson, Bradford W., Benz, Christopher C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4148130/
https://www.ncbi.nlm.nih.gov/pubmed/24970821
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author Wilson-Edell, Kathleen A.
Kehasse, Amanuel
Scott, Gary K.
Yau, Christina
Rothschild, Daniel E.
Schilling, Birgit
Gabriel, Bianca S.
Yevtushenko, Mariya A.
Hanson, Ingrid M.
Held, Jason M.
Gibson, Bradford W.
Benz, Christopher C.
author_facet Wilson-Edell, Kathleen A.
Kehasse, Amanuel
Scott, Gary K.
Yau, Christina
Rothschild, Daniel E.
Schilling, Birgit
Gabriel, Bianca S.
Yevtushenko, Mariya A.
Hanson, Ingrid M.
Held, Jason M.
Gibson, Bradford W.
Benz, Christopher C.
author_sort Wilson-Edell, Kathleen A.
collection PubMed
description Partial loss of large ribosomal subunit protein 24 (RPL24) function is known to protect mice against Akt or Myc-driven cancers, in part via translational inhibition of a subset of cap(eIF4E)-dependently translated mRNAs. The role of RPL24 in human malignancies is unknown. By analyzing a public dataset of matched human breast cancers and normal mammary tissue, we found that breast cancers express significantly more RPL24 than matched normal breast samples. Depletion of RPL24 in breast cancer cells by >70% reduced cell viability by 80% and decreased protein expression of the eIF4E-dependently translated proteins cyclin D1 (75%), survivin (46%) and NBS1 (30%) without altering GAPDH or beta-tubulin levels. RPL24 knockdown also reduced 80S subunit levels relative to 40S and 60S levels. These effects on expression of eIF4E-dependent proteins and ribosome assembly were mimicked by 2-24 h treatment with the pan-HDACi, trichostatin A (TSA), which induced acetylation of 15 different polysome-associated proteins including RPL24. Furthermore, HDAC6-selective inhibition or HDAC6 knockdown induced ribosomal protein acetylation. Via mass spectrometry, we found that 60S-associated, but not, polysome-associated, RPL24 undergoes HDACi-induced acetylation on K27. Thus, RPL24 K27 acetylation may play a role in ribosome assembly. These findings point toward a novel acetylation-dependent polysome assembly mechanism regulating tumorigenesis.
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spelling pubmed-41481302014-08-29 RPL24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth Wilson-Edell, Kathleen A. Kehasse, Amanuel Scott, Gary K. Yau, Christina Rothschild, Daniel E. Schilling, Birgit Gabriel, Bianca S. Yevtushenko, Mariya A. Hanson, Ingrid M. Held, Jason M. Gibson, Bradford W. Benz, Christopher C. Oncotarget Research Paper Partial loss of large ribosomal subunit protein 24 (RPL24) function is known to protect mice against Akt or Myc-driven cancers, in part via translational inhibition of a subset of cap(eIF4E)-dependently translated mRNAs. The role of RPL24 in human malignancies is unknown. By analyzing a public dataset of matched human breast cancers and normal mammary tissue, we found that breast cancers express significantly more RPL24 than matched normal breast samples. Depletion of RPL24 in breast cancer cells by >70% reduced cell viability by 80% and decreased protein expression of the eIF4E-dependently translated proteins cyclin D1 (75%), survivin (46%) and NBS1 (30%) without altering GAPDH or beta-tubulin levels. RPL24 knockdown also reduced 80S subunit levels relative to 40S and 60S levels. These effects on expression of eIF4E-dependent proteins and ribosome assembly were mimicked by 2-24 h treatment with the pan-HDACi, trichostatin A (TSA), which induced acetylation of 15 different polysome-associated proteins including RPL24. Furthermore, HDAC6-selective inhibition or HDAC6 knockdown induced ribosomal protein acetylation. Via mass spectrometry, we found that 60S-associated, but not, polysome-associated, RPL24 undergoes HDACi-induced acetylation on K27. Thus, RPL24 K27 acetylation may play a role in ribosome assembly. These findings point toward a novel acetylation-dependent polysome assembly mechanism regulating tumorigenesis. Impact Journals LLC 2014-06-12 /pmc/articles/PMC4148130/ /pubmed/24970821 Text en Copyright: © 2014 Wilson-Edell et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Wilson-Edell, Kathleen A.
Kehasse, Amanuel
Scott, Gary K.
Yau, Christina
Rothschild, Daniel E.
Schilling, Birgit
Gabriel, Bianca S.
Yevtushenko, Mariya A.
Hanson, Ingrid M.
Held, Jason M.
Gibson, Bradford W.
Benz, Christopher C.
RPL24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth
title RPL24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth
title_full RPL24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth
title_fullStr RPL24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth
title_full_unstemmed RPL24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth
title_short RPL24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth
title_sort rpl24: a potential therapeutic target whose depletion or acetylation inhibits polysome assembly and cancer cell growth
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4148130/
https://www.ncbi.nlm.nih.gov/pubmed/24970821
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