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U1 Adaptor Oligonucleotides Targeting BCL2 and GRM1 Suppress Growth of Human Melanoma Xenografts In Vivo

U1 Adaptor is a recently discovered oligonucleotide-based gene-silencing technology with a unique mechanism of action that targets nuclear pre-mRNA processing. U1 Adaptors have two distinct functional domains, both of which must be present on the same oligonucleotide to exert their gene-silencing fu...

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Autores principales: Goraczniak, Rafal, Wall, Brian A, Behlke, Mark A, Lennox, Kim A, Ho, Eric S, Zaphiros, Nikolas H, Jakubowski, Christopher, Patel, Neil R, Zhao, Steven, Magaway, Carlo, Subbie, Stacey A, Jenny Yu, Lumeng, LaCava, Stephanie, Reuhl, Kenneth R, Chen, Suzie, Gunderson, Samuel I
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817935/
https://www.ncbi.nlm.nih.gov/pubmed/23673539
http://dx.doi.org/10.1038/mtna.2013.24
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author Goraczniak, Rafal
Wall, Brian A
Behlke, Mark A
Lennox, Kim A
Ho, Eric S
Zaphiros, Nikolas H
Jakubowski, Christopher
Patel, Neil R
Zhao, Steven
Magaway, Carlo
Subbie, Stacey A
Jenny Yu, Lumeng
LaCava, Stephanie
Reuhl, Kenneth R
Chen, Suzie
Gunderson, Samuel I
author_facet Goraczniak, Rafal
Wall, Brian A
Behlke, Mark A
Lennox, Kim A
Ho, Eric S
Zaphiros, Nikolas H
Jakubowski, Christopher
Patel, Neil R
Zhao, Steven
Magaway, Carlo
Subbie, Stacey A
Jenny Yu, Lumeng
LaCava, Stephanie
Reuhl, Kenneth R
Chen, Suzie
Gunderson, Samuel I
author_sort Goraczniak, Rafal
collection PubMed
description U1 Adaptor is a recently discovered oligonucleotide-based gene-silencing technology with a unique mechanism of action that targets nuclear pre-mRNA processing. U1 Adaptors have two distinct functional domains, both of which must be present on the same oligonucleotide to exert their gene-silencing function. Here, we present the first in vivo use of U1 Adaptors by targeting two different human genes implicated in melanomagenesis, B-cell lymphoma 2 (BCL2) and metabotropic glutamate receptor 1 (GRM1), in a human melanoma cell xenograft mouse model system. Using a newly developed dendrimer delivery system, anti-BCL2 U1 Adaptors were very potent and suppressed tumor growth at doses as low as 34 µg/kg with twice weekly intravenous (iv) administration. Anti-GRM1 U1 Adaptors suppressed tumor xenograft growth with similar potency. Mechanism of action was demonstrated by showing target gene suppression in tumors and by observing that negative control U1 Adaptors with just one functional domain show no tumor suppression activity. The anti-BCL2 and anti-GRM1 treatments were equally effective against cell lines harboring either wild-type or a mutant V600E B-RAF allele, the most common mutation in melanoma. Treatment of normal immune-competent mice (C57BL6) indicated no organ toxicity or immune stimulation. These proof-of-concept studies represent an in-depth (over 800 mice in ~108 treatment groups) validation that U1 Adaptors are a highly potent gene-silencing therapeutic and open the way for their further development to treat other human diseases.
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spelling pubmed-48179352016-04-17 U1 Adaptor Oligonucleotides Targeting BCL2 and GRM1 Suppress Growth of Human Melanoma Xenografts In Vivo Goraczniak, Rafal Wall, Brian A Behlke, Mark A Lennox, Kim A Ho, Eric S Zaphiros, Nikolas H Jakubowski, Christopher Patel, Neil R Zhao, Steven Magaway, Carlo Subbie, Stacey A Jenny Yu, Lumeng LaCava, Stephanie Reuhl, Kenneth R Chen, Suzie Gunderson, Samuel I Mol Ther Nucleic Acids Original Article U1 Adaptor is a recently discovered oligonucleotide-based gene-silencing technology with a unique mechanism of action that targets nuclear pre-mRNA processing. U1 Adaptors have two distinct functional domains, both of which must be present on the same oligonucleotide to exert their gene-silencing function. Here, we present the first in vivo use of U1 Adaptors by targeting two different human genes implicated in melanomagenesis, B-cell lymphoma 2 (BCL2) and metabotropic glutamate receptor 1 (GRM1), in a human melanoma cell xenograft mouse model system. Using a newly developed dendrimer delivery system, anti-BCL2 U1 Adaptors were very potent and suppressed tumor growth at doses as low as 34 µg/kg with twice weekly intravenous (iv) administration. Anti-GRM1 U1 Adaptors suppressed tumor xenograft growth with similar potency. Mechanism of action was demonstrated by showing target gene suppression in tumors and by observing that negative control U1 Adaptors with just one functional domain show no tumor suppression activity. The anti-BCL2 and anti-GRM1 treatments were equally effective against cell lines harboring either wild-type or a mutant V600E B-RAF allele, the most common mutation in melanoma. Treatment of normal immune-competent mice (C57BL6) indicated no organ toxicity or immune stimulation. These proof-of-concept studies represent an in-depth (over 800 mice in ~108 treatment groups) validation that U1 Adaptors are a highly potent gene-silencing therapeutic and open the way for their further development to treat other human diseases. Nature Publishing Group 2013-05 2013-05-14 /pmc/articles/PMC4817935/ /pubmed/23673539 http://dx.doi.org/10.1038/mtna.2013.24 Text en Copyright © 2013 American Society of Gene & Cell Therapy http://creativecommons.org/licenses/by-nc-nd/3.0/ Molecular Therapy-Nucleic Acids is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Goraczniak, Rafal
Wall, Brian A
Behlke, Mark A
Lennox, Kim A
Ho, Eric S
Zaphiros, Nikolas H
Jakubowski, Christopher
Patel, Neil R
Zhao, Steven
Magaway, Carlo
Subbie, Stacey A
Jenny Yu, Lumeng
LaCava, Stephanie
Reuhl, Kenneth R
Chen, Suzie
Gunderson, Samuel I
U1 Adaptor Oligonucleotides Targeting BCL2 and GRM1 Suppress Growth of Human Melanoma Xenografts In Vivo
title U1 Adaptor Oligonucleotides Targeting BCL2 and GRM1 Suppress Growth of Human Melanoma Xenografts In Vivo
title_full U1 Adaptor Oligonucleotides Targeting BCL2 and GRM1 Suppress Growth of Human Melanoma Xenografts In Vivo
title_fullStr U1 Adaptor Oligonucleotides Targeting BCL2 and GRM1 Suppress Growth of Human Melanoma Xenografts In Vivo
title_full_unstemmed U1 Adaptor Oligonucleotides Targeting BCL2 and GRM1 Suppress Growth of Human Melanoma Xenografts In Vivo
title_short U1 Adaptor Oligonucleotides Targeting BCL2 and GRM1 Suppress Growth of Human Melanoma Xenografts In Vivo
title_sort u1 adaptor oligonucleotides targeting bcl2 and grm1 suppress growth of human melanoma xenografts in vivo
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4817935/
https://www.ncbi.nlm.nih.gov/pubmed/23673539
http://dx.doi.org/10.1038/mtna.2013.24
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