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Functional annotation of the vlinc class of non-coding RNAs using systems biology approach

Functionality of the non-coding transcripts encoded by the human genome is the coveted goal of the modern genomics research. While commonly relied on the classical methods of forward genetics, integration of different genomics datasets in a global Systems Biology fashion presents a more productive a...

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Autores principales: Laurent, Georges St., Vyatkin, Yuri, Antonets, Denis, Ri, Maxim, Qi, Yao, Saik, Olga, Shtokalo, Dmitry, de Hoon, Michiel J.L., Kawaji, Hideya, Itoh, Masayoshi, Lassmann, Timo, Arner, Erik, Forrest, Alistair R.R., Nicolas, Estelle, McCaffrey, Timothy A., Carninci, Piero, Hayashizaki, Yoshihide, Wahlestedt, Claes, Kapranov, Philipp
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4838384/
https://www.ncbi.nlm.nih.gov/pubmed/27001520
http://dx.doi.org/10.1093/nar/gkw162
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author Laurent, Georges St.
Vyatkin, Yuri
Antonets, Denis
Ri, Maxim
Qi, Yao
Saik, Olga
Shtokalo, Dmitry
de Hoon, Michiel J.L.
Kawaji, Hideya
Itoh, Masayoshi
Lassmann, Timo
Arner, Erik
Forrest, Alistair R.R.
Nicolas, Estelle
McCaffrey, Timothy A.
Carninci, Piero
Hayashizaki, Yoshihide
Wahlestedt, Claes
Kapranov, Philipp
author_facet Laurent, Georges St.
Vyatkin, Yuri
Antonets, Denis
Ri, Maxim
Qi, Yao
Saik, Olga
Shtokalo, Dmitry
de Hoon, Michiel J.L.
Kawaji, Hideya
Itoh, Masayoshi
Lassmann, Timo
Arner, Erik
Forrest, Alistair R.R.
Nicolas, Estelle
McCaffrey, Timothy A.
Carninci, Piero
Hayashizaki, Yoshihide
Wahlestedt, Claes
Kapranov, Philipp
author_sort Laurent, Georges St.
collection PubMed
description Functionality of the non-coding transcripts encoded by the human genome is the coveted goal of the modern genomics research. While commonly relied on the classical methods of forward genetics, integration of different genomics datasets in a global Systems Biology fashion presents a more productive avenue of achieving this very complex aim. Here we report application of a Systems Biology-based approach to dissect functionality of a newly identified vast class of very long intergenic non-coding (vlinc) RNAs. Using highly quantitative FANTOM5 CAGE dataset, we show that these RNAs could be grouped into 1542 novel human genes based on analysis of insulators that we show here indeed function as genomic barrier elements. We show that vlincRNAs genes likely function in cis to activate nearby genes. This effect while most pronounced in closely spaced vlincRNA–gene pairs can be detected over relatively large genomic distances. Furthermore, we identified 101 vlincRNA genes likely involved in early embryogenesis based on patterns of their expression and regulation. We also found another 109 such genes potentially involved in cellular functions also happening at early stages of development such as proliferation, migration and apoptosis. Overall, we show that Systems Biology-based methods have great promise for functional annotation of non-coding RNAs.
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spelling pubmed-48383842016-04-21 Functional annotation of the vlinc class of non-coding RNAs using systems biology approach Laurent, Georges St. Vyatkin, Yuri Antonets, Denis Ri, Maxim Qi, Yao Saik, Olga Shtokalo, Dmitry de Hoon, Michiel J.L. Kawaji, Hideya Itoh, Masayoshi Lassmann, Timo Arner, Erik Forrest, Alistair R.R. Nicolas, Estelle McCaffrey, Timothy A. Carninci, Piero Hayashizaki, Yoshihide Wahlestedt, Claes Kapranov, Philipp Nucleic Acids Res Genomics Functionality of the non-coding transcripts encoded by the human genome is the coveted goal of the modern genomics research. While commonly relied on the classical methods of forward genetics, integration of different genomics datasets in a global Systems Biology fashion presents a more productive avenue of achieving this very complex aim. Here we report application of a Systems Biology-based approach to dissect functionality of a newly identified vast class of very long intergenic non-coding (vlinc) RNAs. Using highly quantitative FANTOM5 CAGE dataset, we show that these RNAs could be grouped into 1542 novel human genes based on analysis of insulators that we show here indeed function as genomic barrier elements. We show that vlincRNAs genes likely function in cis to activate nearby genes. This effect while most pronounced in closely spaced vlincRNA–gene pairs can be detected over relatively large genomic distances. Furthermore, we identified 101 vlincRNA genes likely involved in early embryogenesis based on patterns of their expression and regulation. We also found another 109 such genes potentially involved in cellular functions also happening at early stages of development such as proliferation, migration and apoptosis. Overall, we show that Systems Biology-based methods have great promise for functional annotation of non-coding RNAs. Oxford University Press 2016-04-20 2016-03-21 /pmc/articles/PMC4838384/ /pubmed/27001520 http://dx.doi.org/10.1093/nar/gkw162 Text en © The Author(s) 2016. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Genomics
Laurent, Georges St.
Vyatkin, Yuri
Antonets, Denis
Ri, Maxim
Qi, Yao
Saik, Olga
Shtokalo, Dmitry
de Hoon, Michiel J.L.
Kawaji, Hideya
Itoh, Masayoshi
Lassmann, Timo
Arner, Erik
Forrest, Alistair R.R.
Nicolas, Estelle
McCaffrey, Timothy A.
Carninci, Piero
Hayashizaki, Yoshihide
Wahlestedt, Claes
Kapranov, Philipp
Functional annotation of the vlinc class of non-coding RNAs using systems biology approach
title Functional annotation of the vlinc class of non-coding RNAs using systems biology approach
title_full Functional annotation of the vlinc class of non-coding RNAs using systems biology approach
title_fullStr Functional annotation of the vlinc class of non-coding RNAs using systems biology approach
title_full_unstemmed Functional annotation of the vlinc class of non-coding RNAs using systems biology approach
title_short Functional annotation of the vlinc class of non-coding RNAs using systems biology approach
title_sort functional annotation of the vlinc class of non-coding rnas using systems biology approach
topic Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4838384/
https://www.ncbi.nlm.nih.gov/pubmed/27001520
http://dx.doi.org/10.1093/nar/gkw162
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