Coordinated Post-transcriptional Regulation by MicroRNAs and RNA- binding Proteins

Both microRNAs (miRNAs) and RNA-binding proteins (RBPs) regulate post- transcriptional events, but the post-transcriptional contribution to the global mammalian transcriptomes is still not well understood. In this study we study the synergistic interaction between microRNAs that inhibit gene product...

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Main Author: Sekikawa, Akiko
Other Authors: Zhang, Zhaolei
Language:en_ca
Published: 2013
Subjects:
HuR
Online Access:http://hdl.handle.net/1807/42912
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OTU.1807-429122013-12-18T03:39:23ZCoordinated Post-transcriptional Regulation by MicroRNAs and RNA- binding ProteinsSekikawa, AkikomicroRNAHuRRNA-binding proteinevolutionpost-transcriptional regulationRNA-seqnormalization03690715Both microRNAs (miRNAs) and RNA-binding proteins (RBPs) regulate post- transcriptional events, but the post-transcriptional contribution to the global mammalian transcriptomes is still not well understood. In this study we study the synergistic interaction between microRNAs that inhibit gene production, and a special RBP, HuR, that positively regulates mRNA stability. We examined their relationship in terms of spatial, conservational and expressional perspective. We show comprehensive mapping of HuR binding sites by combination of its structural and sequential preferences; and cross-platform normalization method within a process of refining miRNA and HuR binding site mapping. Finally, we observed co-evolution of miRNA and HuR binding sites by looking at their proximity and conservation levels. Collectively, our data suggest that mammalian microRNAs and HuR, with seemingly opposing regulatory effects, cooperatively regulate their mutual targets.Zhang, ZhaoleiWrana, Jeffrey2013-112013-11-27T21:31:52ZNO_RESTRICTION2013-11-27T21:31:52Z2013-11-27Thesishttp://hdl.handle.net/1807/42912en_ca
collection NDLTD
language en_ca
sources NDLTD
topic microRNA
HuR
RNA-binding protein
evolution
post-transcriptional regulation
RNA-seq
normalization
0369
0715
spellingShingle microRNA
HuR
RNA-binding protein
evolution
post-transcriptional regulation
RNA-seq
normalization
0369
0715
Sekikawa, Akiko
Coordinated Post-transcriptional Regulation by MicroRNAs and RNA- binding Proteins
description Both microRNAs (miRNAs) and RNA-binding proteins (RBPs) regulate post- transcriptional events, but the post-transcriptional contribution to the global mammalian transcriptomes is still not well understood. In this study we study the synergistic interaction between microRNAs that inhibit gene production, and a special RBP, HuR, that positively regulates mRNA stability. We examined their relationship in terms of spatial, conservational and expressional perspective. We show comprehensive mapping of HuR binding sites by combination of its structural and sequential preferences; and cross-platform normalization method within a process of refining miRNA and HuR binding site mapping. Finally, we observed co-evolution of miRNA and HuR binding sites by looking at their proximity and conservation levels. Collectively, our data suggest that mammalian microRNAs and HuR, with seemingly opposing regulatory effects, cooperatively regulate their mutual targets.
author2 Zhang, Zhaolei
author_facet Zhang, Zhaolei
Sekikawa, Akiko
author Sekikawa, Akiko
author_sort Sekikawa, Akiko
title Coordinated Post-transcriptional Regulation by MicroRNAs and RNA- binding Proteins
title_short Coordinated Post-transcriptional Regulation by MicroRNAs and RNA- binding Proteins
title_full Coordinated Post-transcriptional Regulation by MicroRNAs and RNA- binding Proteins
title_fullStr Coordinated Post-transcriptional Regulation by MicroRNAs and RNA- binding Proteins
title_full_unstemmed Coordinated Post-transcriptional Regulation by MicroRNAs and RNA- binding Proteins
title_sort coordinated post-transcriptional regulation by micrornas and rna- binding proteins
publishDate 2013
url http://hdl.handle.net/1807/42912
work_keys_str_mv AT sekikawaakiko coordinatedposttranscriptionalregulationbymicrornasandrnabindingproteins
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