RNAa is conserved in mammalian cells.
RNA activation (RNAa) is a newly discovered mechanism of gene activation triggered by small double-stranded RNAs termed 'small activating RNAs' (saRNAs). Thus far, RNAa has only been demonstrated in human cells and is unclear whether it is conserved in other mammals.In the present study, w...
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doaj-3bb31599c3d7486bb9198bd38d5dfc462020-11-25T01:55:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-0151e884810.1371/journal.pone.0008848RNAa is conserved in mammalian cells.Vera HuangYi QinJi WangXiaoling WangRobert F PlaceGuiting LinTom F LueLong-Cheng LiRNA activation (RNAa) is a newly discovered mechanism of gene activation triggered by small double-stranded RNAs termed 'small activating RNAs' (saRNAs). Thus far, RNAa has only been demonstrated in human cells and is unclear whether it is conserved in other mammals.In the present study, we evaluated RNAa in cells derived from four mammalian species including nonhuman primates (African green monkey and chimpanzee), mouse, and rat. Previously, we identified saRNAs leading to the activation of E-cadherin, p21, and VEGF in human cells. As the targeted sequences are highly conserved in primates, transfection of each human saRNA into African green monkey (COS1) and chimpanzee (WES) cells also resulted in induction of the intended gene. Additional saRNAs targeting clinically relevant genes including p53, PAR4, WT1, RB1, p27, NKX3-1, VDR, IL2, and pS2 were also designed and transfected into COS1 and WES cells. Of the nine genes, p53, PAR4, WT1, and NKX3-1 were induced by their corresponding saRNAs. We further extended our analysis of RNAa into rodent cell types. We identified two saRNAs that induced the expression of mouse Cyclin B1 in NIH/3T3 and TRAMP C1 cells, which led to increased phosphorylation of histone H3, a downstream marker for chromosome condensation and entry into mitosis. We also identified two saRNAs that activated the expression of CXCR4 in primary rat adipose-derived stem cells.This study demonstrates that RNAa exists in mammalian species other than human. Our findings also suggest that nonhuman primate disease models may have clinical applicability for validating RNAa-based drugs.http://europepmc.org/articles/PMC2809750?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vera Huang Yi Qin Ji Wang Xiaoling Wang Robert F Place Guiting Lin Tom F Lue Long-Cheng Li |
spellingShingle |
Vera Huang Yi Qin Ji Wang Xiaoling Wang Robert F Place Guiting Lin Tom F Lue Long-Cheng Li RNAa is conserved in mammalian cells. PLoS ONE |
author_facet |
Vera Huang Yi Qin Ji Wang Xiaoling Wang Robert F Place Guiting Lin Tom F Lue Long-Cheng Li |
author_sort |
Vera Huang |
title |
RNAa is conserved in mammalian cells. |
title_short |
RNAa is conserved in mammalian cells. |
title_full |
RNAa is conserved in mammalian cells. |
title_fullStr |
RNAa is conserved in mammalian cells. |
title_full_unstemmed |
RNAa is conserved in mammalian cells. |
title_sort |
rnaa is conserved in mammalian cells. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2010-01-01 |
description |
RNA activation (RNAa) is a newly discovered mechanism of gene activation triggered by small double-stranded RNAs termed 'small activating RNAs' (saRNAs). Thus far, RNAa has only been demonstrated in human cells and is unclear whether it is conserved in other mammals.In the present study, we evaluated RNAa in cells derived from four mammalian species including nonhuman primates (African green monkey and chimpanzee), mouse, and rat. Previously, we identified saRNAs leading to the activation of E-cadherin, p21, and VEGF in human cells. As the targeted sequences are highly conserved in primates, transfection of each human saRNA into African green monkey (COS1) and chimpanzee (WES) cells also resulted in induction of the intended gene. Additional saRNAs targeting clinically relevant genes including p53, PAR4, WT1, RB1, p27, NKX3-1, VDR, IL2, and pS2 were also designed and transfected into COS1 and WES cells. Of the nine genes, p53, PAR4, WT1, and NKX3-1 were induced by their corresponding saRNAs. We further extended our analysis of RNAa into rodent cell types. We identified two saRNAs that induced the expression of mouse Cyclin B1 in NIH/3T3 and TRAMP C1 cells, which led to increased phosphorylation of histone H3, a downstream marker for chromosome condensation and entry into mitosis. We also identified two saRNAs that activated the expression of CXCR4 in primary rat adipose-derived stem cells.This study demonstrates that RNAa exists in mammalian species other than human. Our findings also suggest that nonhuman primate disease models may have clinical applicability for validating RNAa-based drugs. |
url |
http://europepmc.org/articles/PMC2809750?pdf=render |
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