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Topologically switchable and gated transcription machinery

Topological barriers control in nature the transcription machinery, thereby perturbing gene expression. Here we introduce synthetically designed DNA templates that include built-in topological barriers for switchable, triggered-controlled transcription of RNA aptamers. This is exemplified with the d...

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Autores principales: Zhang, Pu, Fischer, Amit, Ouyang, Yu, Sohn, Yang Sung, Nechushtai, Rachel, Zhang, Junji, Tian, He, Fan, Chunhai, Willner, Itamar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9473513/
https://www.ncbi.nlm.nih.gov/pubmed/36277654
http://dx.doi.org/10.1039/d2sc01599d
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author Zhang, Pu
Fischer, Amit
Ouyang, Yu
Sohn, Yang Sung
Nechushtai, Rachel
Zhang, Junji
Tian, He
Fan, Chunhai
Willner, Itamar
author_facet Zhang, Pu
Fischer, Amit
Ouyang, Yu
Sohn, Yang Sung
Nechushtai, Rachel
Zhang, Junji
Tian, He
Fan, Chunhai
Willner, Itamar
author_sort Zhang, Pu
collection PubMed
description Topological barriers control in nature the transcription machinery, thereby perturbing gene expression. Here we introduce synthetically designed DNA templates that include built-in topological barriers for switchable, triggered-controlled transcription of RNA aptamers. This is exemplified with the design of transcription templates that include reversible and switchable topological barriers consisting of a Sr(2+)-ion-stabilized G-quadruplex and its separation by kryptofix [2.2.2], KP, for the switchable transcription of the malachite green (MG) RNA aptamer, the T-A·T triplex barrier being separated by a fuel-strand for the cyclic triggered transcription of the 3,5-difluoro-4-hydroxybenzylidene imidazolinone (DFHBI)-binding aptamer, and the use of a photoactivated cis/trans azobenzene-modified nucleic acid barrier for the switchable “ON”/“OFF” transcription of the MG RNA aptamer. By applying a mixture of topologically triggered templates consisting of the photoresponsive barrier and the T-A·T triplex barrier, the gated transcription of the MG aptamer or the DFHBI-binding aptamer is demonstrated. In addition, a Sr(2+)-ion/KP topologically triggered DNA tetrahedra promoter-transcription scaffold, for the replication of the MG RNA aptamer, and T7 RNA polymerase are integrated into DNA-based carboxymethyl cellulose hydrogel microcapsules acting as cell-like assemblies. The switchable, reversible transcription of the MG RNA aptamer in a cell-like containment is introduced.
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spelling pubmed-94735132022-10-20 Topologically switchable and gated transcription machinery Zhang, Pu Fischer, Amit Ouyang, Yu Sohn, Yang Sung Nechushtai, Rachel Zhang, Junji Tian, He Fan, Chunhai Willner, Itamar Chem Sci Chemistry Topological barriers control in nature the transcription machinery, thereby perturbing gene expression. Here we introduce synthetically designed DNA templates that include built-in topological barriers for switchable, triggered-controlled transcription of RNA aptamers. This is exemplified with the design of transcription templates that include reversible and switchable topological barriers consisting of a Sr(2+)-ion-stabilized G-quadruplex and its separation by kryptofix [2.2.2], KP, for the switchable transcription of the malachite green (MG) RNA aptamer, the T-A·T triplex barrier being separated by a fuel-strand for the cyclic triggered transcription of the 3,5-difluoro-4-hydroxybenzylidene imidazolinone (DFHBI)-binding aptamer, and the use of a photoactivated cis/trans azobenzene-modified nucleic acid barrier for the switchable “ON”/“OFF” transcription of the MG RNA aptamer. By applying a mixture of topologically triggered templates consisting of the photoresponsive barrier and the T-A·T triplex barrier, the gated transcription of the MG aptamer or the DFHBI-binding aptamer is demonstrated. In addition, a Sr(2+)-ion/KP topologically triggered DNA tetrahedra promoter-transcription scaffold, for the replication of the MG RNA aptamer, and T7 RNA polymerase are integrated into DNA-based carboxymethyl cellulose hydrogel microcapsules acting as cell-like assemblies. The switchable, reversible transcription of the MG RNA aptamer in a cell-like containment is introduced. The Royal Society of Chemistry 2022-08-18 /pmc/articles/PMC9473513/ /pubmed/36277654 http://dx.doi.org/10.1039/d2sc01599d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Zhang, Pu
Fischer, Amit
Ouyang, Yu
Sohn, Yang Sung
Nechushtai, Rachel
Zhang, Junji
Tian, He
Fan, Chunhai
Willner, Itamar
Topologically switchable and gated transcription machinery
title Topologically switchable and gated transcription machinery
title_full Topologically switchable and gated transcription machinery
title_fullStr Topologically switchable and gated transcription machinery
title_full_unstemmed Topologically switchable and gated transcription machinery
title_short Topologically switchable and gated transcription machinery
title_sort topologically switchable and gated transcription machinery
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9473513/
https://www.ncbi.nlm.nih.gov/pubmed/36277654
http://dx.doi.org/10.1039/d2sc01599d
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