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Paip2A inhibits translation by competitively binding to the RNA recognition motifs of PABPC1 and promoting its dissociation from the poly(A) tail

Eukaryotic mRNAs possess a poly(A) tail at their 3′-end, to which poly(A)-binding protein C1 (PABPC1) binds and recruits other proteins that regulate translation. Enhanced poly(A)-dependent translation, which is also PABPC1 dependent, promotes cellular and viral proliferation. PABP-interacting prote...

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Autores principales: Sagae, Takeru, Yokogawa, Mariko, Sawazaki, Ryoichi, Ishii, Yuichiro, Hosoda, Nao, Hoshino, Shin-ichi, Imai, Shunsuke, Shimada, Ichio, Osawa, Masanori
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9019252/
https://www.ncbi.nlm.nih.gov/pubmed/35307347
http://dx.doi.org/10.1016/j.jbc.2022.101844
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author Sagae, Takeru
Yokogawa, Mariko
Sawazaki, Ryoichi
Ishii, Yuichiro
Hosoda, Nao
Hoshino, Shin-ichi
Imai, Shunsuke
Shimada, Ichio
Osawa, Masanori
author_facet Sagae, Takeru
Yokogawa, Mariko
Sawazaki, Ryoichi
Ishii, Yuichiro
Hosoda, Nao
Hoshino, Shin-ichi
Imai, Shunsuke
Shimada, Ichio
Osawa, Masanori
author_sort Sagae, Takeru
collection PubMed
description Eukaryotic mRNAs possess a poly(A) tail at their 3′-end, to which poly(A)-binding protein C1 (PABPC1) binds and recruits other proteins that regulate translation. Enhanced poly(A)-dependent translation, which is also PABPC1 dependent, promotes cellular and viral proliferation. PABP-interacting protein 2A (Paip2A) effectively represses poly(A)-dependent translation by causing the dissociation of PABPC1 from the poly(A) tail; however, the underlying mechanism remains unknown. This study was conducted to investigate the functional mechanisms of Paip2A action by characterizing the PABPC1–poly(A) and PABPC1–Paip2A interactions. Isothermal titration calorimetry and NMR analyses indicated that both interactions predominantly occurred at the RNA recognition motif (RRM)2–RRM3 regions of PABPC1, which have comparable affinities for poly(A) and Paip2A (dissociation constant, K(d) = 1 nM). However, the K(d) values of isolated RRM2 were 200 and 4 μM in their interactions with poly(A) and Paip2A, respectively; K(d) values of 5 and 1 μM were observed for the interactions of isolated RRM3 with poly(A) and Paip2A, respectively. NMR analyses also revealed that Paip2A can bind to the poly(A)-binding interfaces of the RRM2 and RRM3 regions of PABPC1. Based on these results, we propose the following functional mechanism for Paip2A: Paip2A initially binds to the RRM2 region of poly(A)-bound PABPC1, and RRM2-anchored Paip2A effectively displaces the RRM3 region from poly(A), resulting in dissociation of the whole PABPC1 molecule. Together, our findings provide insight into the translation repression effect of Paip2A and may aid in the development of novel anticancer and/or antiviral drugs.
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spelling pubmed-90192522022-04-22 Paip2A inhibits translation by competitively binding to the RNA recognition motifs of PABPC1 and promoting its dissociation from the poly(A) tail Sagae, Takeru Yokogawa, Mariko Sawazaki, Ryoichi Ishii, Yuichiro Hosoda, Nao Hoshino, Shin-ichi Imai, Shunsuke Shimada, Ichio Osawa, Masanori J Biol Chem Research Article Eukaryotic mRNAs possess a poly(A) tail at their 3′-end, to which poly(A)-binding protein C1 (PABPC1) binds and recruits other proteins that regulate translation. Enhanced poly(A)-dependent translation, which is also PABPC1 dependent, promotes cellular and viral proliferation. PABP-interacting protein 2A (Paip2A) effectively represses poly(A)-dependent translation by causing the dissociation of PABPC1 from the poly(A) tail; however, the underlying mechanism remains unknown. This study was conducted to investigate the functional mechanisms of Paip2A action by characterizing the PABPC1–poly(A) and PABPC1–Paip2A interactions. Isothermal titration calorimetry and NMR analyses indicated that both interactions predominantly occurred at the RNA recognition motif (RRM)2–RRM3 regions of PABPC1, which have comparable affinities for poly(A) and Paip2A (dissociation constant, K(d) = 1 nM). However, the K(d) values of isolated RRM2 were 200 and 4 μM in their interactions with poly(A) and Paip2A, respectively; K(d) values of 5 and 1 μM were observed for the interactions of isolated RRM3 with poly(A) and Paip2A, respectively. NMR analyses also revealed that Paip2A can bind to the poly(A)-binding interfaces of the RRM2 and RRM3 regions of PABPC1. Based on these results, we propose the following functional mechanism for Paip2A: Paip2A initially binds to the RRM2 region of poly(A)-bound PABPC1, and RRM2-anchored Paip2A effectively displaces the RRM3 region from poly(A), resulting in dissociation of the whole PABPC1 molecule. Together, our findings provide insight into the translation repression effect of Paip2A and may aid in the development of novel anticancer and/or antiviral drugs. American Society for Biochemistry and Molecular Biology 2022-03-18 /pmc/articles/PMC9019252/ /pubmed/35307347 http://dx.doi.org/10.1016/j.jbc.2022.101844 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Sagae, Takeru
Yokogawa, Mariko
Sawazaki, Ryoichi
Ishii, Yuichiro
Hosoda, Nao
Hoshino, Shin-ichi
Imai, Shunsuke
Shimada, Ichio
Osawa, Masanori
Paip2A inhibits translation by competitively binding to the RNA recognition motifs of PABPC1 and promoting its dissociation from the poly(A) tail
title Paip2A inhibits translation by competitively binding to the RNA recognition motifs of PABPC1 and promoting its dissociation from the poly(A) tail
title_full Paip2A inhibits translation by competitively binding to the RNA recognition motifs of PABPC1 and promoting its dissociation from the poly(A) tail
title_fullStr Paip2A inhibits translation by competitively binding to the RNA recognition motifs of PABPC1 and promoting its dissociation from the poly(A) tail
title_full_unstemmed Paip2A inhibits translation by competitively binding to the RNA recognition motifs of PABPC1 and promoting its dissociation from the poly(A) tail
title_short Paip2A inhibits translation by competitively binding to the RNA recognition motifs of PABPC1 and promoting its dissociation from the poly(A) tail
title_sort paip2a inhibits translation by competitively binding to the rna recognition motifs of pabpc1 and promoting its dissociation from the poly(a) tail
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9019252/
https://www.ncbi.nlm.nih.gov/pubmed/35307347
http://dx.doi.org/10.1016/j.jbc.2022.101844
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