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Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU

Nucleic acids rich in guanine are able to fold into unique structures known as G-quadruplexes. G-quadruplexes consist of four tracts of guanylates arranged in parallel or antiparallel strands that are aligned in stacked G-quartet planes. The structure is further stabilized by Hoogsteen hydrogen bond...

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Autores principales: Ariyo, Emmanuel O., Booy, Evan P., Patel, Trushar R., Dzananovic, Edis, McRae, Ewan K., Meier, Markus, McEleney, Kevin, Stetefeld, Jorg, McKenna, Sean A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4674103/
https://www.ncbi.nlm.nih.gov/pubmed/26649896
http://dx.doi.org/10.1371/journal.pone.0144510
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author Ariyo, Emmanuel O.
Booy, Evan P.
Patel, Trushar R.
Dzananovic, Edis
McRae, Ewan K.
Meier, Markus
McEleney, Kevin
Stetefeld, Jorg
McKenna, Sean A.
author_facet Ariyo, Emmanuel O.
Booy, Evan P.
Patel, Trushar R.
Dzananovic, Edis
McRae, Ewan K.
Meier, Markus
McEleney, Kevin
Stetefeld, Jorg
McKenna, Sean A.
author_sort Ariyo, Emmanuel O.
collection PubMed
description Nucleic acids rich in guanine are able to fold into unique structures known as G-quadruplexes. G-quadruplexes consist of four tracts of guanylates arranged in parallel or antiparallel strands that are aligned in stacked G-quartet planes. The structure is further stabilized by Hoogsteen hydrogen bonds and monovalent cations centered between the planes. RHAU (RNA helicase associated with AU-rich element) is a member of the ATP-dependent DExH/D family of RNA helicases and can bind and resolve G-quadruplexes. RHAU contains a core helicase domain with an N-terminal extension that enables recognition and full binding affinity to RNA and DNA G-quadruplexes. PITX1, a member of the bicoid class of homeobox proteins, is a transcriptional activator active during development of vertebrates, chiefly in the anterior pituitary gland and several other organs. We have previously demonstrated that RHAU regulates PITX1 levels through interaction with G-quadruplexes at the 3’-end of the PITX1 mRNA. To understand the structural basis of G-quadruplex recognition by RHAU, we characterize a purified minimal PITX1 G-quadruplex using a variety of biophysical techniques including electrophoretic mobility shift assays, UV-VIS spectroscopy, circular dichroism, dynamic light scattering, small angle X-ray scattering and nuclear magnetic resonance spectroscopy. Our biophysical analysis provides evidence that the RNA G-quadruplex, but not its DNA counterpart, can adopt a parallel orientation, and that only the RNA can interact with N-terminal domain of RHAU via the tetrad face of the G-quadruplex. This work extends our insight into how the N-terminal region of RHAU recognizes parallel G-quadruplexes.
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spelling pubmed-46741032015-12-23 Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU Ariyo, Emmanuel O. Booy, Evan P. Patel, Trushar R. Dzananovic, Edis McRae, Ewan K. Meier, Markus McEleney, Kevin Stetefeld, Jorg McKenna, Sean A. PLoS One Research Article Nucleic acids rich in guanine are able to fold into unique structures known as G-quadruplexes. G-quadruplexes consist of four tracts of guanylates arranged in parallel or antiparallel strands that are aligned in stacked G-quartet planes. The structure is further stabilized by Hoogsteen hydrogen bonds and monovalent cations centered between the planes. RHAU (RNA helicase associated with AU-rich element) is a member of the ATP-dependent DExH/D family of RNA helicases and can bind and resolve G-quadruplexes. RHAU contains a core helicase domain with an N-terminal extension that enables recognition and full binding affinity to RNA and DNA G-quadruplexes. PITX1, a member of the bicoid class of homeobox proteins, is a transcriptional activator active during development of vertebrates, chiefly in the anterior pituitary gland and several other organs. We have previously demonstrated that RHAU regulates PITX1 levels through interaction with G-quadruplexes at the 3’-end of the PITX1 mRNA. To understand the structural basis of G-quadruplex recognition by RHAU, we characterize a purified minimal PITX1 G-quadruplex using a variety of biophysical techniques including electrophoretic mobility shift assays, UV-VIS spectroscopy, circular dichroism, dynamic light scattering, small angle X-ray scattering and nuclear magnetic resonance spectroscopy. Our biophysical analysis provides evidence that the RNA G-quadruplex, but not its DNA counterpart, can adopt a parallel orientation, and that only the RNA can interact with N-terminal domain of RHAU via the tetrad face of the G-quadruplex. This work extends our insight into how the N-terminal region of RHAU recognizes parallel G-quadruplexes. Public Library of Science 2015-12-09 /pmc/articles/PMC4674103/ /pubmed/26649896 http://dx.doi.org/10.1371/journal.pone.0144510 Text en © 2015 Ariyo 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
Ariyo, Emmanuel O.
Booy, Evan P.
Patel, Trushar R.
Dzananovic, Edis
McRae, Ewan K.
Meier, Markus
McEleney, Kevin
Stetefeld, Jorg
McKenna, Sean A.
Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU
title Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU
title_full Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU
title_fullStr Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU
title_full_unstemmed Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU
title_short Biophysical Characterization of G-Quadruplex Recognition in the PITX1 mRNA by the Specificity Domain of the Helicase RHAU
title_sort biophysical characterization of g-quadruplex recognition in the pitx1 mrna by the specificity domain of the helicase rhau
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4674103/
https://www.ncbi.nlm.nih.gov/pubmed/26649896
http://dx.doi.org/10.1371/journal.pone.0144510
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