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Conserved Acidic Amino Acid Residues in a Second RNA Recognition Motif Regulate Assembly and Function of TDP-43

Accumulating evidence suggests that pathogenic TAR DNA-binding protein (TDP)-43 fragments contain a partial RNA-recognition motif domain 2 (RRM2) in amyotrophic lateral sclerosis (ALS)/frontotemporal lobar degeneration. However, the molecular basis for how this domain links to the conformation and f...

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Autores principales: Shodai, Akemi, Ido, Akemi, Fujiwara, Noriko, Ayaki, Takashi, Morimura, Toshifumi, Oono, Miki, Uchida, Tsukasa, Takahashi, Ryosuke, Ito, Hidefumi, Urushitani, Makoto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3530536/
https://www.ncbi.nlm.nih.gov/pubmed/23300771
http://dx.doi.org/10.1371/journal.pone.0052776
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author Shodai, Akemi
Ido, Akemi
Fujiwara, Noriko
Ayaki, Takashi
Morimura, Toshifumi
Oono, Miki
Uchida, Tsukasa
Takahashi, Ryosuke
Ito, Hidefumi
Urushitani, Makoto
author_facet Shodai, Akemi
Ido, Akemi
Fujiwara, Noriko
Ayaki, Takashi
Morimura, Toshifumi
Oono, Miki
Uchida, Tsukasa
Takahashi, Ryosuke
Ito, Hidefumi
Urushitani, Makoto
author_sort Shodai, Akemi
collection PubMed
description Accumulating evidence suggests that pathogenic TAR DNA-binding protein (TDP)-43 fragments contain a partial RNA-recognition motif domain 2 (RRM2) in amyotrophic lateral sclerosis (ALS)/frontotemporal lobar degeneration. However, the molecular basis for how this domain links to the conformation and function of TDP-43 is unclear. Previous crystal analyses have documented that the RRM2-DNA complex dimerizes under acidic and high salt conditions, mediated by the intermolecular hydrogen bonds of Glu246-Ile249 and Asp247-Asp247. The aims of this study were to investigate the roles of Glu246 and Asp247 in the molecular assembly of RRM2 under physiological conditions, and to evaluate their potential use as markers for TDP-43 misfolding due to the aberrantly exposed dimer interface. Unexpectedly, gel filtration analyses showed that, regardless of DNA interaction, the RRM2 domain remained as a stable monomer in phosphate-buffered saline. Studies using substitution mutants revealed that Glu246 and, especially, Asp247 played a crucial role in preserving the functional RRM2 monomers. Substitution to glycine at Glu246 or Asp247 induced the formation of fibrillar oligomers of RRM2 accompanied by the loss of DNA-binding affinity, which also affected the conformation and the RNA splicing function of full-length TDP-43. A novel monoclonal antibody against peptides containing Asp247 was found to react with TDP-43 inclusions of ALS patients and mislocalized cytosolic TDP-43 in cultured cells, but not with nuclear wild-type TDP-43. Our findings indicate that Glu246 and Asp247 play pivotal roles in the proper conformation and function of TDP-43. In particular, Asp247 should be studied as a molecular target with an aberrant conformation related to TDP-43 proteinopathy.
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spelling pubmed-35305362013-01-08 Conserved Acidic Amino Acid Residues in a Second RNA Recognition Motif Regulate Assembly and Function of TDP-43 Shodai, Akemi Ido, Akemi Fujiwara, Noriko Ayaki, Takashi Morimura, Toshifumi Oono, Miki Uchida, Tsukasa Takahashi, Ryosuke Ito, Hidefumi Urushitani, Makoto PLoS One Research Article Accumulating evidence suggests that pathogenic TAR DNA-binding protein (TDP)-43 fragments contain a partial RNA-recognition motif domain 2 (RRM2) in amyotrophic lateral sclerosis (ALS)/frontotemporal lobar degeneration. However, the molecular basis for how this domain links to the conformation and function of TDP-43 is unclear. Previous crystal analyses have documented that the RRM2-DNA complex dimerizes under acidic and high salt conditions, mediated by the intermolecular hydrogen bonds of Glu246-Ile249 and Asp247-Asp247. The aims of this study were to investigate the roles of Glu246 and Asp247 in the molecular assembly of RRM2 under physiological conditions, and to evaluate their potential use as markers for TDP-43 misfolding due to the aberrantly exposed dimer interface. Unexpectedly, gel filtration analyses showed that, regardless of DNA interaction, the RRM2 domain remained as a stable monomer in phosphate-buffered saline. Studies using substitution mutants revealed that Glu246 and, especially, Asp247 played a crucial role in preserving the functional RRM2 monomers. Substitution to glycine at Glu246 or Asp247 induced the formation of fibrillar oligomers of RRM2 accompanied by the loss of DNA-binding affinity, which also affected the conformation and the RNA splicing function of full-length TDP-43. A novel monoclonal antibody against peptides containing Asp247 was found to react with TDP-43 inclusions of ALS patients and mislocalized cytosolic TDP-43 in cultured cells, but not with nuclear wild-type TDP-43. Our findings indicate that Glu246 and Asp247 play pivotal roles in the proper conformation and function of TDP-43. In particular, Asp247 should be studied as a molecular target with an aberrant conformation related to TDP-43 proteinopathy. Public Library of Science 2012-12-26 /pmc/articles/PMC3530536/ /pubmed/23300771 http://dx.doi.org/10.1371/journal.pone.0052776 Text en © 2012 Shodai et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Shodai, Akemi
Ido, Akemi
Fujiwara, Noriko
Ayaki, Takashi
Morimura, Toshifumi
Oono, Miki
Uchida, Tsukasa
Takahashi, Ryosuke
Ito, Hidefumi
Urushitani, Makoto
Conserved Acidic Amino Acid Residues in a Second RNA Recognition Motif Regulate Assembly and Function of TDP-43
title Conserved Acidic Amino Acid Residues in a Second RNA Recognition Motif Regulate Assembly and Function of TDP-43
title_full Conserved Acidic Amino Acid Residues in a Second RNA Recognition Motif Regulate Assembly and Function of TDP-43
title_fullStr Conserved Acidic Amino Acid Residues in a Second RNA Recognition Motif Regulate Assembly and Function of TDP-43
title_full_unstemmed Conserved Acidic Amino Acid Residues in a Second RNA Recognition Motif Regulate Assembly and Function of TDP-43
title_short Conserved Acidic Amino Acid Residues in a Second RNA Recognition Motif Regulate Assembly and Function of TDP-43
title_sort conserved acidic amino acid residues in a second rna recognition motif regulate assembly and function of tdp-43
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3530536/
https://www.ncbi.nlm.nih.gov/pubmed/23300771
http://dx.doi.org/10.1371/journal.pone.0052776
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