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CMT2N-causing aminoacylation domain mutants enable Nrp1 interaction with AlaRS

Through dominant mutations, aminoacyl-tRNA synthetases constitute the largest protein family linked to Charcot-Marie-Tooth disease (CMT). An example is CMT subtype 2N (CMT2N), caused by individual mutations spread out in AlaRS, including three in the aminoacylation domain, thereby suggesting a role...

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Autores principales: Sun, Litao, Wei, Na, Kuhle, Bernhard, Blocquel, David, Novick, Scott, Matuszek, Zaneta, Zhou, Huihao, He, Weiwei, Zhang, Jingjing, Weber, Thomas, Horvath, Rita, Latour, Philippe, Pan, Tao, Schimmel, Paul, Griffin, Patrick R., Yang, Xiang-Lei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8020758/
https://www.ncbi.nlm.nih.gov/pubmed/33753480
http://dx.doi.org/10.1073/pnas.2012898118
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author Sun, Litao
Wei, Na
Kuhle, Bernhard
Blocquel, David
Novick, Scott
Matuszek, Zaneta
Zhou, Huihao
He, Weiwei
Zhang, Jingjing
Weber, Thomas
Horvath, Rita
Latour, Philippe
Pan, Tao
Schimmel, Paul
Griffin, Patrick R.
Yang, Xiang-Lei
author_facet Sun, Litao
Wei, Na
Kuhle, Bernhard
Blocquel, David
Novick, Scott
Matuszek, Zaneta
Zhou, Huihao
He, Weiwei
Zhang, Jingjing
Weber, Thomas
Horvath, Rita
Latour, Philippe
Pan, Tao
Schimmel, Paul
Griffin, Patrick R.
Yang, Xiang-Lei
author_sort Sun, Litao
collection PubMed
description Through dominant mutations, aminoacyl-tRNA synthetases constitute the largest protein family linked to Charcot-Marie-Tooth disease (CMT). An example is CMT subtype 2N (CMT2N), caused by individual mutations spread out in AlaRS, including three in the aminoacylation domain, thereby suggesting a role for a tRNA-charging defect. However, here we found that two are aminoacylation defective but that the most widely distributed R329H is normal as a purified protein in vitro and in unfractionated patient cell samples. Remarkably, in contrast to wild-type (WT) AlaRS, all three mutant proteins gained the ability to interact with neuropilin 1 (Nrp1), the receptor previously linked to CMT pathogenesis in GlyRS. The aberrant AlaRS-Nrp1 interaction is further confirmed in patient samples carrying the R329H mutation. However, CMT2N mutations outside the aminoacylation domain do not induce the Nrp1 interaction. Detailed biochemical and biophysical investigations, including X-ray crystallography, small-angle X-ray scattering, hydrogen-deuterium exchange (HDX), switchSENSE hydrodynamic diameter determinations, and protease digestions reveal a mutation-induced structural loosening of the aminoacylation domain that correlates with the Nrp1 interaction. The b1b2 domains of Nrp1 are responsible for the interaction with R329H AlaRS. The results suggest Nrp1 is more broadly associated with CMT-associated members of the tRNA synthetase family. Moreover, we revealed a distinct structural loosening effect induced by a mutation in the editing domain and a lack of conformational impact with C-Ala domain mutations, indicating mutations in the same protein may cause neuropathy through different mechanisms. Our results show that, as with other CMT-associated tRNA synthetases, aminoacylation per se is not relevant to the pathology.
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spelling pubmed-80207582021-04-13 CMT2N-causing aminoacylation domain mutants enable Nrp1 interaction with AlaRS Sun, Litao Wei, Na Kuhle, Bernhard Blocquel, David Novick, Scott Matuszek, Zaneta Zhou, Huihao He, Weiwei Zhang, Jingjing Weber, Thomas Horvath, Rita Latour, Philippe Pan, Tao Schimmel, Paul Griffin, Patrick R. Yang, Xiang-Lei Proc Natl Acad Sci U S A Biological Sciences Through dominant mutations, aminoacyl-tRNA synthetases constitute the largest protein family linked to Charcot-Marie-Tooth disease (CMT). An example is CMT subtype 2N (CMT2N), caused by individual mutations spread out in AlaRS, including three in the aminoacylation domain, thereby suggesting a role for a tRNA-charging defect. However, here we found that two are aminoacylation defective but that the most widely distributed R329H is normal as a purified protein in vitro and in unfractionated patient cell samples. Remarkably, in contrast to wild-type (WT) AlaRS, all three mutant proteins gained the ability to interact with neuropilin 1 (Nrp1), the receptor previously linked to CMT pathogenesis in GlyRS. The aberrant AlaRS-Nrp1 interaction is further confirmed in patient samples carrying the R329H mutation. However, CMT2N mutations outside the aminoacylation domain do not induce the Nrp1 interaction. Detailed biochemical and biophysical investigations, including X-ray crystallography, small-angle X-ray scattering, hydrogen-deuterium exchange (HDX), switchSENSE hydrodynamic diameter determinations, and protease digestions reveal a mutation-induced structural loosening of the aminoacylation domain that correlates with the Nrp1 interaction. The b1b2 domains of Nrp1 are responsible for the interaction with R329H AlaRS. The results suggest Nrp1 is more broadly associated with CMT-associated members of the tRNA synthetase family. Moreover, we revealed a distinct structural loosening effect induced by a mutation in the editing domain and a lack of conformational impact with C-Ala domain mutations, indicating mutations in the same protein may cause neuropathy through different mechanisms. Our results show that, as with other CMT-associated tRNA synthetases, aminoacylation per se is not relevant to the pathology. National Academy of Sciences 2021-03-30 2021-03-22 /pmc/articles/PMC8020758/ /pubmed/33753480 http://dx.doi.org/10.1073/pnas.2012898118 Text en Copyright © 2021 the Author(s). Published by PNAS. http://creativecommons.org/licenses/by/4.0/ https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Sun, Litao
Wei, Na
Kuhle, Bernhard
Blocquel, David
Novick, Scott
Matuszek, Zaneta
Zhou, Huihao
He, Weiwei
Zhang, Jingjing
Weber, Thomas
Horvath, Rita
Latour, Philippe
Pan, Tao
Schimmel, Paul
Griffin, Patrick R.
Yang, Xiang-Lei
CMT2N-causing aminoacylation domain mutants enable Nrp1 interaction with AlaRS
title CMT2N-causing aminoacylation domain mutants enable Nrp1 interaction with AlaRS
title_full CMT2N-causing aminoacylation domain mutants enable Nrp1 interaction with AlaRS
title_fullStr CMT2N-causing aminoacylation domain mutants enable Nrp1 interaction with AlaRS
title_full_unstemmed CMT2N-causing aminoacylation domain mutants enable Nrp1 interaction with AlaRS
title_short CMT2N-causing aminoacylation domain mutants enable Nrp1 interaction with AlaRS
title_sort cmt2n-causing aminoacylation domain mutants enable nrp1 interaction with alars
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8020758/
https://www.ncbi.nlm.nih.gov/pubmed/33753480
http://dx.doi.org/10.1073/pnas.2012898118
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