Nanoscopic investigation of C9orf72 poly-GA oligomers on nuclear membrane disruption by a photoinducible platform

Glycine-alanine dipeptide repeats produced by the C9orf72 gene are proposed to cause neurotoxicity in related diseases, but is challenging to study experimentally. Here a photolabile cell-penetrating peptide allows superresolution imaging of the distribution and aggregation of a simple dipeptide whi...

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Autores principales: Hung-Ming Chien, Ruei-Yu He, Chi-Chang Lee, Yung-An Huang, I-Ju Hung, Kai-Ting Hou, Jye-Chian Hsiao, Po-Chao Lu, Diksha Agnihotri, Eric Hwang, Joseph Jen-Tse Huang
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/d0d8eaa2f8954cce873fb107a77d365a
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spelling oai:doaj.org-article:d0d8eaa2f8954cce873fb107a77d365a2021-12-02T17:03:47ZNanoscopic investigation of C9orf72 poly-GA oligomers on nuclear membrane disruption by a photoinducible platform10.1038/s42004-021-00547-62399-3669https://doaj.org/article/d0d8eaa2f8954cce873fb107a77d365a2021-07-01T00:00:00Zhttps://doi.org/10.1038/s42004-021-00547-6https://doaj.org/toc/2399-3669Glycine-alanine dipeptide repeats produced by the C9orf72 gene are proposed to cause neurotoxicity in related diseases, but is challenging to study experimentally. Here a photolabile cell-penetrating peptide allows superresolution imaging of the distribution and aggregation of a simple dipeptide which recapitulates neurotoxicity associated with endogenous analogues.Hung-Ming ChienRuei-Yu HeChi-Chang LeeYung-An HuangI-Ju HungKai-Ting HouJye-Chian HsiaoPo-Chao LuDiksha AgnihotriEric HwangJoseph Jen-Tse HuangNature PortfolioarticleChemistryQD1-999ENCommunications Chemistry, Vol 4, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Chemistry
QD1-999
spellingShingle Chemistry
QD1-999
Hung-Ming Chien
Ruei-Yu He
Chi-Chang Lee
Yung-An Huang
I-Ju Hung
Kai-Ting Hou
Jye-Chian Hsiao
Po-Chao Lu
Diksha Agnihotri
Eric Hwang
Joseph Jen-Tse Huang
Nanoscopic investigation of C9orf72 poly-GA oligomers on nuclear membrane disruption by a photoinducible platform
description Glycine-alanine dipeptide repeats produced by the C9orf72 gene are proposed to cause neurotoxicity in related diseases, but is challenging to study experimentally. Here a photolabile cell-penetrating peptide allows superresolution imaging of the distribution and aggregation of a simple dipeptide which recapitulates neurotoxicity associated with endogenous analogues.
format article
author Hung-Ming Chien
Ruei-Yu He
Chi-Chang Lee
Yung-An Huang
I-Ju Hung
Kai-Ting Hou
Jye-Chian Hsiao
Po-Chao Lu
Diksha Agnihotri
Eric Hwang
Joseph Jen-Tse Huang
author_facet Hung-Ming Chien
Ruei-Yu He
Chi-Chang Lee
Yung-An Huang
I-Ju Hung
Kai-Ting Hou
Jye-Chian Hsiao
Po-Chao Lu
Diksha Agnihotri
Eric Hwang
Joseph Jen-Tse Huang
author_sort Hung-Ming Chien
title Nanoscopic investigation of C9orf72 poly-GA oligomers on nuclear membrane disruption by a photoinducible platform
title_short Nanoscopic investigation of C9orf72 poly-GA oligomers on nuclear membrane disruption by a photoinducible platform
title_full Nanoscopic investigation of C9orf72 poly-GA oligomers on nuclear membrane disruption by a photoinducible platform
title_fullStr Nanoscopic investigation of C9orf72 poly-GA oligomers on nuclear membrane disruption by a photoinducible platform
title_full_unstemmed Nanoscopic investigation of C9orf72 poly-GA oligomers on nuclear membrane disruption by a photoinducible platform
title_sort nanoscopic investigation of c9orf72 poly-ga oligomers on nuclear membrane disruption by a photoinducible platform
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/d0d8eaa2f8954cce873fb107a77d365a
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