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The PUF binding landscape in metazoan germ cells

PUF (Pumilio/FBF) proteins are RNA-binding proteins and conserved stem cell regulators. The Caenorhabditis elegans PUF proteins FBF-1 and FBF-2 (collectively FBF) regulate mRNAs in germ cells. Without FBF, adult germlines lose all stem cells. A major gap in our understanding of PUF proteins, includi...

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Autores principales: Prasad, Aman, Porter, Douglas F., Kroll-Conner, Peggy L., Mohanty, Ipsita, Ryan, Anne R., Crittenden, Sarah L., Wickens, Marvin, Kimble, Judith
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4911911/
https://www.ncbi.nlm.nih.gov/pubmed/27165521
http://dx.doi.org/10.1261/rna.055871.116
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author Prasad, Aman
Porter, Douglas F.
Kroll-Conner, Peggy L.
Mohanty, Ipsita
Ryan, Anne R.
Crittenden, Sarah L.
Wickens, Marvin
Kimble, Judith
author_facet Prasad, Aman
Porter, Douglas F.
Kroll-Conner, Peggy L.
Mohanty, Ipsita
Ryan, Anne R.
Crittenden, Sarah L.
Wickens, Marvin
Kimble, Judith
author_sort Prasad, Aman
collection PubMed
description PUF (Pumilio/FBF) proteins are RNA-binding proteins and conserved stem cell regulators. The Caenorhabditis elegans PUF proteins FBF-1 and FBF-2 (collectively FBF) regulate mRNAs in germ cells. Without FBF, adult germlines lose all stem cells. A major gap in our understanding of PUF proteins, including FBF, is a global view of their binding sites in their native context (i.e., their “binding landscape”). To understand the interactions underlying FBF function, we used iCLIP (individual-nucleotide resolution UV crosslinking and immunoprecipitation) to determine binding landscapes of C. elegans FBF-1 and FBF-2 in the germline tissue of intact animals. Multiple iCLIP peak-calling methods were compared to maximize identification of both established FBF binding sites and positive control target mRNAs in our iCLIP data. We discovered that FBF-1 and FBF-2 bind to RNAs through canonical as well as alternate motifs. We also analyzed crosslinking-induced mutations to map binding sites precisely and to identify key nucleotides that may be critical for FBF–RNA interactions. FBF-1 and FBF-2 can bind sites in the 5′UTR, coding region, or 3′UTR, but have a strong bias for the 3′ end of transcripts. FBF-1 and FBF-2 have strongly overlapping target profiles, including mRNAs and noncoding RNAs. From a statistically robust list of 1404 common FBF targets, 847 were previously unknown, 154 were related to cell cycle regulation, three were lincRNAs, and 335 were shared with the human PUF protein PUM2.
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spelling pubmed-49119112016-07-07 The PUF binding landscape in metazoan germ cells Prasad, Aman Porter, Douglas F. Kroll-Conner, Peggy L. Mohanty, Ipsita Ryan, Anne R. Crittenden, Sarah L. Wickens, Marvin Kimble, Judith RNA Article PUF (Pumilio/FBF) proteins are RNA-binding proteins and conserved stem cell regulators. The Caenorhabditis elegans PUF proteins FBF-1 and FBF-2 (collectively FBF) regulate mRNAs in germ cells. Without FBF, adult germlines lose all stem cells. A major gap in our understanding of PUF proteins, including FBF, is a global view of their binding sites in their native context (i.e., their “binding landscape”). To understand the interactions underlying FBF function, we used iCLIP (individual-nucleotide resolution UV crosslinking and immunoprecipitation) to determine binding landscapes of C. elegans FBF-1 and FBF-2 in the germline tissue of intact animals. Multiple iCLIP peak-calling methods were compared to maximize identification of both established FBF binding sites and positive control target mRNAs in our iCLIP data. We discovered that FBF-1 and FBF-2 bind to RNAs through canonical as well as alternate motifs. We also analyzed crosslinking-induced mutations to map binding sites precisely and to identify key nucleotides that may be critical for FBF–RNA interactions. FBF-1 and FBF-2 can bind sites in the 5′UTR, coding region, or 3′UTR, but have a strong bias for the 3′ end of transcripts. FBF-1 and FBF-2 have strongly overlapping target profiles, including mRNAs and noncoding RNAs. From a statistically robust list of 1404 common FBF targets, 847 were previously unknown, 154 were related to cell cycle regulation, three were lincRNAs, and 335 were shared with the human PUF protein PUM2. Cold Spring Harbor Laboratory Press 2016-07 /pmc/articles/PMC4911911/ /pubmed/27165521 http://dx.doi.org/10.1261/rna.055871.116 Text en © 2016 Prasad et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society http://creativecommons.org/licenses/by/4.0/ This article, published in RNA, is available under a Creative Commons License (Attribution 4.0 International), as described at http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Prasad, Aman
Porter, Douglas F.
Kroll-Conner, Peggy L.
Mohanty, Ipsita
Ryan, Anne R.
Crittenden, Sarah L.
Wickens, Marvin
Kimble, Judith
The PUF binding landscape in metazoan germ cells
title The PUF binding landscape in metazoan germ cells
title_full The PUF binding landscape in metazoan germ cells
title_fullStr The PUF binding landscape in metazoan germ cells
title_full_unstemmed The PUF binding landscape in metazoan germ cells
title_short The PUF binding landscape in metazoan germ cells
title_sort puf binding landscape in metazoan germ cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4911911/
https://www.ncbi.nlm.nih.gov/pubmed/27165521
http://dx.doi.org/10.1261/rna.055871.116
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