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Detection of a MicroRNA Signal in an In Vivo Expression Set of mRNAs

BACKGROUND: microRNAs (miRNAs) are approximately 21 nucleotide non-coding transcripts capable of regulating gene expression. The most widely studied mechanism of regulation involves binding of a miRNA to the target mRNA. As a result, translation of the target mRNA is inhibited and the mRNA may be de...

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Autores principales: Liu, Tsunglin, Papagiannakopoulos, Thales, Puskar, Kathy, Qi, Shuping, Santiago, Fernando, Clay, William, Lao, Kaiqin, Lee, Yohan, Nelson, Stanley F., Kornblum, Harley I., Doyle, Frank, Petzold, Linda, Shraiman, Boris, Kosik, Kenneth S.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1950084/
https://www.ncbi.nlm.nih.gov/pubmed/17726534
http://dx.doi.org/10.1371/journal.pone.0000804
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author Liu, Tsunglin
Papagiannakopoulos, Thales
Puskar, Kathy
Qi, Shuping
Santiago, Fernando
Clay, William
Lao, Kaiqin
Lee, Yohan
Nelson, Stanley F.
Kornblum, Harley I.
Doyle, Frank
Petzold, Linda
Shraiman, Boris
Kosik, Kenneth S.
author_facet Liu, Tsunglin
Papagiannakopoulos, Thales
Puskar, Kathy
Qi, Shuping
Santiago, Fernando
Clay, William
Lao, Kaiqin
Lee, Yohan
Nelson, Stanley F.
Kornblum, Harley I.
Doyle, Frank
Petzold, Linda
Shraiman, Boris
Kosik, Kenneth S.
author_sort Liu, Tsunglin
collection PubMed
description BACKGROUND: microRNAs (miRNAs) are approximately 21 nucleotide non-coding transcripts capable of regulating gene expression. The most widely studied mechanism of regulation involves binding of a miRNA to the target mRNA. As a result, translation of the target mRNA is inhibited and the mRNA may be destabilized. The inhibitory effects of miRNAs have been linked to diverse cellular processes including malignant proliferation, apoptosis, development, differentiation, and metabolic processes. We asked whether endogenous fluctuations in a set of mRNA and miRNA profiles contain correlated changes that are statistically distinguishable from the many other fluctuations in the data set. METHODOLOGY/PRINCIPAL FINDINGS: RNA was extracted from 12 human primary brain tumor biopsies. These samples were used to determine genome-wide mRNA expression levels by microarray analysis and a miRNA profile by real-time reverse transcription PCR. Correlation coefficients were determined for all possible mRNA-miRNA pairs and the distribution of these correlations compared to the random distribution. An excess of high positive and negative correlation pairs were observed at the tails of these distributions. Most of these highest correlation pairs do not contain sufficiently complementary sequences to predict a target relationship; nor do they lie in physical proximity to each other. However, by examining pairs in which the significance of the correlation coefficients is modestly relaxed, negative correlations do tend to predict targets and positive correlations tend to predict physically proximate pairs. A subset of high correlation pairs were experimentally validated by over-expressing or suppressing a miRNA and measuring the correlated mRNAs. CONCLUSIONS/SIGNIFICANCE: Sufficient information exists within a set of tumor samples to detect endogenous correlations between miRNA and mRNA levels. Based on the validations the causal arrow for these correlations is likely to be directed from the miRNAs to the mRNAs. From these data sets, we inferred and validated a tumor suppression pathway linked to miR-181c.
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spelling pubmed-19500842007-08-29 Detection of a MicroRNA Signal in an In Vivo Expression Set of mRNAs Liu, Tsunglin Papagiannakopoulos, Thales Puskar, Kathy Qi, Shuping Santiago, Fernando Clay, William Lao, Kaiqin Lee, Yohan Nelson, Stanley F. Kornblum, Harley I. Doyle, Frank Petzold, Linda Shraiman, Boris Kosik, Kenneth S. PLoS One Research Article BACKGROUND: microRNAs (miRNAs) are approximately 21 nucleotide non-coding transcripts capable of regulating gene expression. The most widely studied mechanism of regulation involves binding of a miRNA to the target mRNA. As a result, translation of the target mRNA is inhibited and the mRNA may be destabilized. The inhibitory effects of miRNAs have been linked to diverse cellular processes including malignant proliferation, apoptosis, development, differentiation, and metabolic processes. We asked whether endogenous fluctuations in a set of mRNA and miRNA profiles contain correlated changes that are statistically distinguishable from the many other fluctuations in the data set. METHODOLOGY/PRINCIPAL FINDINGS: RNA was extracted from 12 human primary brain tumor biopsies. These samples were used to determine genome-wide mRNA expression levels by microarray analysis and a miRNA profile by real-time reverse transcription PCR. Correlation coefficients were determined for all possible mRNA-miRNA pairs and the distribution of these correlations compared to the random distribution. An excess of high positive and negative correlation pairs were observed at the tails of these distributions. Most of these highest correlation pairs do not contain sufficiently complementary sequences to predict a target relationship; nor do they lie in physical proximity to each other. However, by examining pairs in which the significance of the correlation coefficients is modestly relaxed, negative correlations do tend to predict targets and positive correlations tend to predict physically proximate pairs. A subset of high correlation pairs were experimentally validated by over-expressing or suppressing a miRNA and measuring the correlated mRNAs. CONCLUSIONS/SIGNIFICANCE: Sufficient information exists within a set of tumor samples to detect endogenous correlations between miRNA and mRNA levels. Based on the validations the causal arrow for these correlations is likely to be directed from the miRNAs to the mRNAs. From these data sets, we inferred and validated a tumor suppression pathway linked to miR-181c. Public Library of Science 2007-08-29 /pmc/articles/PMC1950084/ /pubmed/17726534 http://dx.doi.org/10.1371/journal.pone.0000804 Text en Liu et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Liu, Tsunglin
Papagiannakopoulos, Thales
Puskar, Kathy
Qi, Shuping
Santiago, Fernando
Clay, William
Lao, Kaiqin
Lee, Yohan
Nelson, Stanley F.
Kornblum, Harley I.
Doyle, Frank
Petzold, Linda
Shraiman, Boris
Kosik, Kenneth S.
Detection of a MicroRNA Signal in an In Vivo Expression Set of mRNAs
title Detection of a MicroRNA Signal in an In Vivo Expression Set of mRNAs
title_full Detection of a MicroRNA Signal in an In Vivo Expression Set of mRNAs
title_fullStr Detection of a MicroRNA Signal in an In Vivo Expression Set of mRNAs
title_full_unstemmed Detection of a MicroRNA Signal in an In Vivo Expression Set of mRNAs
title_short Detection of a MicroRNA Signal in an In Vivo Expression Set of mRNAs
title_sort detection of a microrna signal in an in vivo expression set of mrnas
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1950084/
https://www.ncbi.nlm.nih.gov/pubmed/17726534
http://dx.doi.org/10.1371/journal.pone.0000804
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