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G-Quadruplexes Formation by the C9orf72 Nucleotide Repeat Expansion d(GGGGCC)(n) and Conformation Regulation by Fangchinoline
The G-quadruplex (GQ)-forming hexanucleotide repeat expansion (HRE) in the C9orf72 (C9) gene has been found to be the most common cause of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) (collectively, C9ALS/FTD), implying the great significance of modulating C9-HRE GQ structur...
Autores principales: | , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10300829/ https://www.ncbi.nlm.nih.gov/pubmed/37375224 http://dx.doi.org/10.3390/molecules28124671 |
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author | Zhang, Yun Huang, Junliu Yu, Kainan Cui, Xiaojie |
author_facet | Zhang, Yun Huang, Junliu Yu, Kainan Cui, Xiaojie |
author_sort | Zhang, Yun |
collection | PubMed |
description | The G-quadruplex (GQ)-forming hexanucleotide repeat expansion (HRE) in the C9orf72 (C9) gene has been found to be the most common cause of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) (collectively, C9ALS/FTD), implying the great significance of modulating C9-HRE GQ structures in C9ALS/FTD therapeutic treatment strategies. In this study, we investigated the GQ structures formed by varied lengths of C9-HRE DNA sequences d(GGGGCC)(4) (C9-24mer) and d(GGGGCC)(8) (C9-48mer), and found that the C9-24mer forms anti-parallel GQ (AP-GQ) in the presence of potassium ions, while the long C9-48mer bearing eight guanine tracts forms unstacked tandem GQ consisting of two C9-24mer unimolecular AP-GQs. Moreover, the natural small molecule Fangchinoline was screened out in order to be able to stabilize and alter the C9-HRE DNA to parallel GQ topology. Further study of the interaction of Fangchinoline with the C9-HRE RNA GQ unit r(GGGGCC)(4) (C9-RNA) revealed that it can also recognize and improve the thermal stability of C9-HRE RNA GQ. Finally, use of AutoDock simulation results indicated that Fangchinoline binds to the groove regions of the parallel C9-HRE GQs. These findings pave the way for further studies of GQ structures formed by pathologically related long C9-HRE sequences, and also provide a natural small-molecule ligand that modulates the structure and stability of C9-HRE GQ, both in DNA and RNA levels. Altogether, this work may contribute to therapeutic approaches of C9ALS/FTD which take the upstream C9-HRE DNA region, as well as the toxic C9-HRE RNA, as targets. |
format | Online Article Text |
id | pubmed-10300829 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-103008292023-06-29 G-Quadruplexes Formation by the C9orf72 Nucleotide Repeat Expansion d(GGGGCC)(n) and Conformation Regulation by Fangchinoline Zhang, Yun Huang, Junliu Yu, Kainan Cui, Xiaojie Molecules Article The G-quadruplex (GQ)-forming hexanucleotide repeat expansion (HRE) in the C9orf72 (C9) gene has been found to be the most common cause of amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) (collectively, C9ALS/FTD), implying the great significance of modulating C9-HRE GQ structures in C9ALS/FTD therapeutic treatment strategies. In this study, we investigated the GQ structures formed by varied lengths of C9-HRE DNA sequences d(GGGGCC)(4) (C9-24mer) and d(GGGGCC)(8) (C9-48mer), and found that the C9-24mer forms anti-parallel GQ (AP-GQ) in the presence of potassium ions, while the long C9-48mer bearing eight guanine tracts forms unstacked tandem GQ consisting of two C9-24mer unimolecular AP-GQs. Moreover, the natural small molecule Fangchinoline was screened out in order to be able to stabilize and alter the C9-HRE DNA to parallel GQ topology. Further study of the interaction of Fangchinoline with the C9-HRE RNA GQ unit r(GGGGCC)(4) (C9-RNA) revealed that it can also recognize and improve the thermal stability of C9-HRE RNA GQ. Finally, use of AutoDock simulation results indicated that Fangchinoline binds to the groove regions of the parallel C9-HRE GQs. These findings pave the way for further studies of GQ structures formed by pathologically related long C9-HRE sequences, and also provide a natural small-molecule ligand that modulates the structure and stability of C9-HRE GQ, both in DNA and RNA levels. Altogether, this work may contribute to therapeutic approaches of C9ALS/FTD which take the upstream C9-HRE DNA region, as well as the toxic C9-HRE RNA, as targets. MDPI 2023-06-09 /pmc/articles/PMC10300829/ /pubmed/37375224 http://dx.doi.org/10.3390/molecules28124671 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 | Article Zhang, Yun Huang, Junliu Yu, Kainan Cui, Xiaojie G-Quadruplexes Formation by the C9orf72 Nucleotide Repeat Expansion d(GGGGCC)(n) and Conformation Regulation by Fangchinoline |
title | G-Quadruplexes Formation by the C9orf72 Nucleotide Repeat Expansion d(GGGGCC)(n) and Conformation Regulation by Fangchinoline |
title_full | G-Quadruplexes Formation by the C9orf72 Nucleotide Repeat Expansion d(GGGGCC)(n) and Conformation Regulation by Fangchinoline |
title_fullStr | G-Quadruplexes Formation by the C9orf72 Nucleotide Repeat Expansion d(GGGGCC)(n) and Conformation Regulation by Fangchinoline |
title_full_unstemmed | G-Quadruplexes Formation by the C9orf72 Nucleotide Repeat Expansion d(GGGGCC)(n) and Conformation Regulation by Fangchinoline |
title_short | G-Quadruplexes Formation by the C9orf72 Nucleotide Repeat Expansion d(GGGGCC)(n) and Conformation Regulation by Fangchinoline |
title_sort | g-quadruplexes formation by the c9orf72 nucleotide repeat expansion d(ggggcc)(n) and conformation regulation by fangchinoline |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10300829/ https://www.ncbi.nlm.nih.gov/pubmed/37375224 http://dx.doi.org/10.3390/molecules28124671 |
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