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Locked Nucleic Acid Gapmers and Conjugates Potently Silence ADAM33, an Asthma-Associated Metalloprotease with Nuclear-Localized mRNA

Two mechanisms dominate the clinical pipeline for oligonucleotide-based gene silencing, namely, the antisense approach that recruits RNase H to cleave target RNA and the RNAi approach that recruits the RISC complex to cleave target RNA. Multiple chemical designs can be used to elicit each pathway. W...

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Autores principales: Pendergraff, Hannah M., Krishnamurthy, Pranathi Meda, Debacker, Alexandre J., Moazami, Michael P., Sharma, Vivek K., Niitsoo, Liisa, Yu, Yong, Tan, Yen Nee, Haitchi, Hans Michael, Watts, Jonathan K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5498289/
https://www.ncbi.nlm.nih.gov/pubmed/28918018
http://dx.doi.org/10.1016/j.omtn.2017.06.012
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author Pendergraff, Hannah M.
Krishnamurthy, Pranathi Meda
Debacker, Alexandre J.
Moazami, Michael P.
Sharma, Vivek K.
Niitsoo, Liisa
Yu, Yong
Tan, Yen Nee
Haitchi, Hans Michael
Watts, Jonathan K.
author_facet Pendergraff, Hannah M.
Krishnamurthy, Pranathi Meda
Debacker, Alexandre J.
Moazami, Michael P.
Sharma, Vivek K.
Niitsoo, Liisa
Yu, Yong
Tan, Yen Nee
Haitchi, Hans Michael
Watts, Jonathan K.
author_sort Pendergraff, Hannah M.
collection PubMed
description Two mechanisms dominate the clinical pipeline for oligonucleotide-based gene silencing, namely, the antisense approach that recruits RNase H to cleave target RNA and the RNAi approach that recruits the RISC complex to cleave target RNA. Multiple chemical designs can be used to elicit each pathway. We compare the silencing of the asthma susceptibility gene ADAM33 in MRC-5 lung fibroblasts using four classes of gene silencing agents, two that use each mechanism: traditional duplex small interfering RNAs (siRNAs), single-stranded small interfering RNAs (ss-siRNAs), locked nucleic acid (LNA) gapmer antisense oligonucleotides (ASOs), and novel hexadecyloxypropyl conjugates of the ASOs. Of these designs, the gapmer ASOs emerged as lead compounds for silencing ADAM33 expression: several gapmer ASOs showed subnanomolar potency when transfected with cationic lipid and low micromolar potency with no toxicity when delivered gymnotically. The preferential susceptibility of ADAM33 mRNA to silencing by RNase H may be related to the high degree of nuclear retention observed for this mRNA. Dynamic light scattering data showed that the hexadecyloxypropyl ASO conjugates self-assemble into clusters. These conjugates showed reduced potency relative to unconjugated ASOs unless the lipophilic tail was conjugated to the ASO using a biocleavable linkage. Finally, based on the lead ASOs from (human) MRC-5 cells, we developed a series of homologous ASOs targeting mouse Adam33 with excellent activity. Our work confirms that ASO-based gene silencing of ADAM33 is a useful tool for asthma research and therapy.
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spelling pubmed-54982892017-07-13 Locked Nucleic Acid Gapmers and Conjugates Potently Silence ADAM33, an Asthma-Associated Metalloprotease with Nuclear-Localized mRNA Pendergraff, Hannah M. Krishnamurthy, Pranathi Meda Debacker, Alexandre J. Moazami, Michael P. Sharma, Vivek K. Niitsoo, Liisa Yu, Yong Tan, Yen Nee Haitchi, Hans Michael Watts, Jonathan K. Mol Ther Nucleic Acids Original Article Two mechanisms dominate the clinical pipeline for oligonucleotide-based gene silencing, namely, the antisense approach that recruits RNase H to cleave target RNA and the RNAi approach that recruits the RISC complex to cleave target RNA. Multiple chemical designs can be used to elicit each pathway. We compare the silencing of the asthma susceptibility gene ADAM33 in MRC-5 lung fibroblasts using four classes of gene silencing agents, two that use each mechanism: traditional duplex small interfering RNAs (siRNAs), single-stranded small interfering RNAs (ss-siRNAs), locked nucleic acid (LNA) gapmer antisense oligonucleotides (ASOs), and novel hexadecyloxypropyl conjugates of the ASOs. Of these designs, the gapmer ASOs emerged as lead compounds for silencing ADAM33 expression: several gapmer ASOs showed subnanomolar potency when transfected with cationic lipid and low micromolar potency with no toxicity when delivered gymnotically. The preferential susceptibility of ADAM33 mRNA to silencing by RNase H may be related to the high degree of nuclear retention observed for this mRNA. Dynamic light scattering data showed that the hexadecyloxypropyl ASO conjugates self-assemble into clusters. These conjugates showed reduced potency relative to unconjugated ASOs unless the lipophilic tail was conjugated to the ASO using a biocleavable linkage. Finally, based on the lead ASOs from (human) MRC-5 cells, we developed a series of homologous ASOs targeting mouse Adam33 with excellent activity. Our work confirms that ASO-based gene silencing of ADAM33 is a useful tool for asthma research and therapy. American Society of Gene & Cell Therapy 2017-06-21 /pmc/articles/PMC5498289/ /pubmed/28918018 http://dx.doi.org/10.1016/j.omtn.2017.06.012 Text en © 2017 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Pendergraff, Hannah M.
Krishnamurthy, Pranathi Meda
Debacker, Alexandre J.
Moazami, Michael P.
Sharma, Vivek K.
Niitsoo, Liisa
Yu, Yong
Tan, Yen Nee
Haitchi, Hans Michael
Watts, Jonathan K.
Locked Nucleic Acid Gapmers and Conjugates Potently Silence ADAM33, an Asthma-Associated Metalloprotease with Nuclear-Localized mRNA
title Locked Nucleic Acid Gapmers and Conjugates Potently Silence ADAM33, an Asthma-Associated Metalloprotease with Nuclear-Localized mRNA
title_full Locked Nucleic Acid Gapmers and Conjugates Potently Silence ADAM33, an Asthma-Associated Metalloprotease with Nuclear-Localized mRNA
title_fullStr Locked Nucleic Acid Gapmers and Conjugates Potently Silence ADAM33, an Asthma-Associated Metalloprotease with Nuclear-Localized mRNA
title_full_unstemmed Locked Nucleic Acid Gapmers and Conjugates Potently Silence ADAM33, an Asthma-Associated Metalloprotease with Nuclear-Localized mRNA
title_short Locked Nucleic Acid Gapmers and Conjugates Potently Silence ADAM33, an Asthma-Associated Metalloprotease with Nuclear-Localized mRNA
title_sort locked nucleic acid gapmers and conjugates potently silence adam33, an asthma-associated metalloprotease with nuclear-localized mrna
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5498289/
https://www.ncbi.nlm.nih.gov/pubmed/28918018
http://dx.doi.org/10.1016/j.omtn.2017.06.012
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