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Predictive Potential of RNA Polymerase B (II) Subunit 1 (RPB1) Cytoplasmic Aggregation for Neoadjuvant Chemotherapy Failure

We aimed to investigate the contribution of co-translational protein aggregation to the chemotherapy resistance of tumor cells. Increased co-translational protein aggregation reflects altered translation regulation that may have the potential to buffer transcription under genotoxic stress. As an ind...

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Autores principales: Nagy-Mikó, Bence, Németh-Szatmári, Orsolya, Faragó-Mészáros, Réka, Csókási, Aliz, Bognár, Bence, Ördög, Nóra, Borsos, Barbara N., Majoros, Hajnalka, Ujfaludi, Zsuzsanna, Oláh-Németh, Orsolya, Nikolényi, Aliz, Dobi, Ágnes, Kószó, Renáta, Sántha, Dóra, Lázár, György, Simonka, Zsolt, Paszt, Attila, Ormándi, Katalin, Pankotai, Tibor, Boros, Imre M., Villányi, Zoltán, Vörös, András
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650411/
https://www.ncbi.nlm.nih.gov/pubmed/37958852
http://dx.doi.org/10.3390/ijms242115869
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author Nagy-Mikó, Bence
Németh-Szatmári, Orsolya
Faragó-Mészáros, Réka
Csókási, Aliz
Bognár, Bence
Ördög, Nóra
Borsos, Barbara N.
Majoros, Hajnalka
Ujfaludi, Zsuzsanna
Oláh-Németh, Orsolya
Nikolényi, Aliz
Dobi, Ágnes
Kószó, Renáta
Sántha, Dóra
Lázár, György
Simonka, Zsolt
Paszt, Attila
Ormándi, Katalin
Pankotai, Tibor
Boros, Imre M.
Villányi, Zoltán
Vörös, András
author_facet Nagy-Mikó, Bence
Németh-Szatmári, Orsolya
Faragó-Mészáros, Réka
Csókási, Aliz
Bognár, Bence
Ördög, Nóra
Borsos, Barbara N.
Majoros, Hajnalka
Ujfaludi, Zsuzsanna
Oláh-Németh, Orsolya
Nikolényi, Aliz
Dobi, Ágnes
Kószó, Renáta
Sántha, Dóra
Lázár, György
Simonka, Zsolt
Paszt, Attila
Ormándi, Katalin
Pankotai, Tibor
Boros, Imre M.
Villányi, Zoltán
Vörös, András
author_sort Nagy-Mikó, Bence
collection PubMed
description We aimed to investigate the contribution of co-translational protein aggregation to the chemotherapy resistance of tumor cells. Increased co-translational protein aggregation reflects altered translation regulation that may have the potential to buffer transcription under genotoxic stress. As an indicator for such an event, we followed the cytoplasmic aggregation of RPB1, the aggregation-prone largest subunit of RNA polymerase II, in biopsy samples taken from patients with invasive carcinoma of no special type. RPB1 frequently aggregates co-translationally in the absence of proper HSP90 chaperone function or in ribosome mutant cells as revealed formerly in yeast. We found that cytoplasmic foci of RPB1 occur in larger sizes in tumors that showed no regression after therapy. Based on these results, we propose that monitoring the cytoplasmic aggregation of RPB1 may be suitable for determining—from biopsy samples taken before treatment—the effectiveness of neoadjuvant chemotherapy.
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spelling pubmed-106504112023-11-01 Predictive Potential of RNA Polymerase B (II) Subunit 1 (RPB1) Cytoplasmic Aggregation for Neoadjuvant Chemotherapy Failure Nagy-Mikó, Bence Németh-Szatmári, Orsolya Faragó-Mészáros, Réka Csókási, Aliz Bognár, Bence Ördög, Nóra Borsos, Barbara N. Majoros, Hajnalka Ujfaludi, Zsuzsanna Oláh-Németh, Orsolya Nikolényi, Aliz Dobi, Ágnes Kószó, Renáta Sántha, Dóra Lázár, György Simonka, Zsolt Paszt, Attila Ormándi, Katalin Pankotai, Tibor Boros, Imre M. Villányi, Zoltán Vörös, András Int J Mol Sci Communication We aimed to investigate the contribution of co-translational protein aggregation to the chemotherapy resistance of tumor cells. Increased co-translational protein aggregation reflects altered translation regulation that may have the potential to buffer transcription under genotoxic stress. As an indicator for such an event, we followed the cytoplasmic aggregation of RPB1, the aggregation-prone largest subunit of RNA polymerase II, in biopsy samples taken from patients with invasive carcinoma of no special type. RPB1 frequently aggregates co-translationally in the absence of proper HSP90 chaperone function or in ribosome mutant cells as revealed formerly in yeast. We found that cytoplasmic foci of RPB1 occur in larger sizes in tumors that showed no regression after therapy. Based on these results, we propose that monitoring the cytoplasmic aggregation of RPB1 may be suitable for determining—from biopsy samples taken before treatment—the effectiveness of neoadjuvant chemotherapy. MDPI 2023-11-01 /pmc/articles/PMC10650411/ /pubmed/37958852 http://dx.doi.org/10.3390/ijms242115869 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Nagy-Mikó, Bence
Németh-Szatmári, Orsolya
Faragó-Mészáros, Réka
Csókási, Aliz
Bognár, Bence
Ördög, Nóra
Borsos, Barbara N.
Majoros, Hajnalka
Ujfaludi, Zsuzsanna
Oláh-Németh, Orsolya
Nikolényi, Aliz
Dobi, Ágnes
Kószó, Renáta
Sántha, Dóra
Lázár, György
Simonka, Zsolt
Paszt, Attila
Ormándi, Katalin
Pankotai, Tibor
Boros, Imre M.
Villányi, Zoltán
Vörös, András
Predictive Potential of RNA Polymerase B (II) Subunit 1 (RPB1) Cytoplasmic Aggregation for Neoadjuvant Chemotherapy Failure
title Predictive Potential of RNA Polymerase B (II) Subunit 1 (RPB1) Cytoplasmic Aggregation for Neoadjuvant Chemotherapy Failure
title_full Predictive Potential of RNA Polymerase B (II) Subunit 1 (RPB1) Cytoplasmic Aggregation for Neoadjuvant Chemotherapy Failure
title_fullStr Predictive Potential of RNA Polymerase B (II) Subunit 1 (RPB1) Cytoplasmic Aggregation for Neoadjuvant Chemotherapy Failure
title_full_unstemmed Predictive Potential of RNA Polymerase B (II) Subunit 1 (RPB1) Cytoplasmic Aggregation for Neoadjuvant Chemotherapy Failure
title_short Predictive Potential of RNA Polymerase B (II) Subunit 1 (RPB1) Cytoplasmic Aggregation for Neoadjuvant Chemotherapy Failure
title_sort predictive potential of rna polymerase b (ii) subunit 1 (rpb1) cytoplasmic aggregation for neoadjuvant chemotherapy failure
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650411/
https://www.ncbi.nlm.nih.gov/pubmed/37958852
http://dx.doi.org/10.3390/ijms242115869
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