Integrative Analysis of the Myc and E2F pathway Reveal the Roles for microRNAs in Cell Fate Control

<p>Cancer is a disease state that arises as a result of multiple alterations in signaling pathways that are critical for making key cell fate decisions in normal cells. Understanding how these pathways operate under normal circumstances, therefore, is crucial for comprehensive understanding of...

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Bibliographic Details
Main Author: Kim, Jong Wook
Other Authors: Nevins, Joseph R
Published: 2011
Subjects:
E2F
Myc
Online Access:http://hdl.handle.net/10161/3813
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spelling ndltd-DUKE-oai-dukespace.lib.duke.edu-10161-38132013-01-07T20:07:45ZIntegrative Analysis of the Myc and E2F pathway Reveal the Roles for microRNAs in Cell Fate ControlKim, Jong WookGeneticsSystematic biologycyclin EE2FintegrativemicroRNAMycPTEN<p>Cancer is a disease state that arises as a result of multiple alterations in signaling pathways that are critical for making key cell fate decisions in normal cells. Understanding how these pathways operate under normal circumstances, therefore, is crucial for comprehensive understanding of tumorigenic process. With Myc and E2F pathways being central components for controlling cell proliferation, an important property that defines a cancer cell, as well as expanding roles for microRNAs(miRNA) in control of gene expression, we asked if we may better understand the underlying regulatory (transcription factor, microRNA) structure that contribute to Myc and E2F pathway activities. Through integrative analysis of mRNA and miRNA expression profile, we observe a distinct regulatory pattern in which, in the case of Myc pathway, Myc-induced miRNAs were contributing to the repression of negative regulators of cell cycle, including PTEN, while in case of E2F pathway, E2F-induced miRs were forming an incoherent Feed-Forward Loop(iFFL) with a number of E2F-induced genes including cyclin E. We further demonstrate through functional studies, as well as through single cell imaging of gene expression dynamics that miRNAs, depending on the context of either Myc or E2F pathway, play distinct roles in ensuring that cell fate decisions relevant to these pathways are properly executed.</p>DissertationNevins, Joseph R2011Dissertationhttp://hdl.handle.net/10161/3813
collection NDLTD
sources NDLTD
topic Genetics
Systematic biology
cyclin E
E2F
integrative
microRNA
Myc
PTEN
spellingShingle Genetics
Systematic biology
cyclin E
E2F
integrative
microRNA
Myc
PTEN
Kim, Jong Wook
Integrative Analysis of the Myc and E2F pathway Reveal the Roles for microRNAs in Cell Fate Control
description <p>Cancer is a disease state that arises as a result of multiple alterations in signaling pathways that are critical for making key cell fate decisions in normal cells. Understanding how these pathways operate under normal circumstances, therefore, is crucial for comprehensive understanding of tumorigenic process. With Myc and E2F pathways being central components for controlling cell proliferation, an important property that defines a cancer cell, as well as expanding roles for microRNAs(miRNA) in control of gene expression, we asked if we may better understand the underlying regulatory (transcription factor, microRNA) structure that contribute to Myc and E2F pathway activities. Through integrative analysis of mRNA and miRNA expression profile, we observe a distinct regulatory pattern in which, in the case of Myc pathway, Myc-induced miRNAs were contributing to the repression of negative regulators of cell cycle, including PTEN, while in case of E2F pathway, E2F-induced miRs were forming an incoherent Feed-Forward Loop(iFFL) with a number of E2F-induced genes including cyclin E. We further demonstrate through functional studies, as well as through single cell imaging of gene expression dynamics that miRNAs, depending on the context of either Myc or E2F pathway, play distinct roles in ensuring that cell fate decisions relevant to these pathways are properly executed.</p> === Dissertation
author2 Nevins, Joseph R
author_facet Nevins, Joseph R
Kim, Jong Wook
author Kim, Jong Wook
author_sort Kim, Jong Wook
title Integrative Analysis of the Myc and E2F pathway Reveal the Roles for microRNAs in Cell Fate Control
title_short Integrative Analysis of the Myc and E2F pathway Reveal the Roles for microRNAs in Cell Fate Control
title_full Integrative Analysis of the Myc and E2F pathway Reveal the Roles for microRNAs in Cell Fate Control
title_fullStr Integrative Analysis of the Myc and E2F pathway Reveal the Roles for microRNAs in Cell Fate Control
title_full_unstemmed Integrative Analysis of the Myc and E2F pathway Reveal the Roles for microRNAs in Cell Fate Control
title_sort integrative analysis of the myc and e2f pathway reveal the roles for micrornas in cell fate control
publishDate 2011
url http://hdl.handle.net/10161/3813
work_keys_str_mv AT kimjongwook integrativeanalysisofthemycande2fpathwayrevealtherolesformicrornasincellfatecontrol
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