Cargando…

Interaction of Yna1 and Yna2 Is Required for Nuclear Accumulation and Transcriptional Activation of the Nitrate Assimilation Pathway in the Yeast Hansenula polymorpha

A few yeasts, including Hansenula polymorpha are able to assimilate nitrate and use it as nitrogen source. The genes necessary for nitrate assimilation are organised in this organism as a cluster comprising those encoding nitrate reductase (YNR1), nitrite reductase (YNI1), a high affinity transporte...

Descripción completa

Detalles Bibliográficos
Autores principales: Silvestrini, Lucia, Rossi, Beatrice, Gallmetzer, Andreas, Mathieu, Martine, Scazzocchio, Claudio, Berardi, Enrico, Strauss, Joseph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4559421/
https://www.ncbi.nlm.nih.gov/pubmed/26335797
http://dx.doi.org/10.1371/journal.pone.0135416
_version_ 1782388774242615296
author Silvestrini, Lucia
Rossi, Beatrice
Gallmetzer, Andreas
Mathieu, Martine
Scazzocchio, Claudio
Berardi, Enrico
Strauss, Joseph
author_facet Silvestrini, Lucia
Rossi, Beatrice
Gallmetzer, Andreas
Mathieu, Martine
Scazzocchio, Claudio
Berardi, Enrico
Strauss, Joseph
author_sort Silvestrini, Lucia
collection PubMed
description A few yeasts, including Hansenula polymorpha are able to assimilate nitrate and use it as nitrogen source. The genes necessary for nitrate assimilation are organised in this organism as a cluster comprising those encoding nitrate reductase (YNR1), nitrite reductase (YNI1), a high affinity transporter (YNT1), as well as the two pathway specific Zn(II)(2)Cys(2) transcriptional activators (YNA1, YNA2). Yna1p and Yna2p mediate induction of the system and here we show that their functions are interdependent. Yna1p activates YNA2 as well as its own (YNA1) transcription thus forming a nitrate-dependent autoactivation loop. Using a split-YFP approach we demonstrate here that Yna1p and Yna2p form a heterodimer independently of the inducer and despite both Yna1p and Yna2p can occupy the target promoter as mono- or homodimer individually, these proteins are transcriptionally incompetent. Subsequently, the transcription factors target genes containing a conserved DNA motif (termed nitrate-UAS) determined in this work by in vitro and in vivo protein-DNA interaction studies. These events lead to a rearrangement of the chromatin landscape on the target promoters and are associated with the onset of transcription of these target genes. In contrast to other fungi and plants, in which nuclear accumulation of the pathway-specific transcription factors only occur in the presence of nitrate, Yna1p and Yna2p are constitutively nuclear in H. polymorpha. Yna2p is needed for this nuclear accumulation and Yna1p is incapable of strictly positioning in the nucleus without Yna2p. In vivo DNA footprinting and ChIP analyses revealed that the permanently nuclear Yna1p/Yna2p heterodimer only binds to the nitrate-UAS when the inducer is present. The nitrate-dependent up-regulation of one partner protein in the heterodimeric complex is functionally similar to the nitrate-dependent activation of nuclear accumulation in other systems.
format Online
Article
Text
id pubmed-4559421
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-45594212015-09-10 Interaction of Yna1 and Yna2 Is Required for Nuclear Accumulation and Transcriptional Activation of the Nitrate Assimilation Pathway in the Yeast Hansenula polymorpha Silvestrini, Lucia Rossi, Beatrice Gallmetzer, Andreas Mathieu, Martine Scazzocchio, Claudio Berardi, Enrico Strauss, Joseph PLoS One Research Article A few yeasts, including Hansenula polymorpha are able to assimilate nitrate and use it as nitrogen source. The genes necessary for nitrate assimilation are organised in this organism as a cluster comprising those encoding nitrate reductase (YNR1), nitrite reductase (YNI1), a high affinity transporter (YNT1), as well as the two pathway specific Zn(II)(2)Cys(2) transcriptional activators (YNA1, YNA2). Yna1p and Yna2p mediate induction of the system and here we show that their functions are interdependent. Yna1p activates YNA2 as well as its own (YNA1) transcription thus forming a nitrate-dependent autoactivation loop. Using a split-YFP approach we demonstrate here that Yna1p and Yna2p form a heterodimer independently of the inducer and despite both Yna1p and Yna2p can occupy the target promoter as mono- or homodimer individually, these proteins are transcriptionally incompetent. Subsequently, the transcription factors target genes containing a conserved DNA motif (termed nitrate-UAS) determined in this work by in vitro and in vivo protein-DNA interaction studies. These events lead to a rearrangement of the chromatin landscape on the target promoters and are associated with the onset of transcription of these target genes. In contrast to other fungi and plants, in which nuclear accumulation of the pathway-specific transcription factors only occur in the presence of nitrate, Yna1p and Yna2p are constitutively nuclear in H. polymorpha. Yna2p is needed for this nuclear accumulation and Yna1p is incapable of strictly positioning in the nucleus without Yna2p. In vivo DNA footprinting and ChIP analyses revealed that the permanently nuclear Yna1p/Yna2p heterodimer only binds to the nitrate-UAS when the inducer is present. The nitrate-dependent up-regulation of one partner protein in the heterodimeric complex is functionally similar to the nitrate-dependent activation of nuclear accumulation in other systems. Public Library of Science 2015-09-03 /pmc/articles/PMC4559421/ /pubmed/26335797 http://dx.doi.org/10.1371/journal.pone.0135416 Text en © 2015 Silvestrini 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
Silvestrini, Lucia
Rossi, Beatrice
Gallmetzer, Andreas
Mathieu, Martine
Scazzocchio, Claudio
Berardi, Enrico
Strauss, Joseph
Interaction of Yna1 and Yna2 Is Required for Nuclear Accumulation and Transcriptional Activation of the Nitrate Assimilation Pathway in the Yeast Hansenula polymorpha
title Interaction of Yna1 and Yna2 Is Required for Nuclear Accumulation and Transcriptional Activation of the Nitrate Assimilation Pathway in the Yeast Hansenula polymorpha
title_full Interaction of Yna1 and Yna2 Is Required for Nuclear Accumulation and Transcriptional Activation of the Nitrate Assimilation Pathway in the Yeast Hansenula polymorpha
title_fullStr Interaction of Yna1 and Yna2 Is Required for Nuclear Accumulation and Transcriptional Activation of the Nitrate Assimilation Pathway in the Yeast Hansenula polymorpha
title_full_unstemmed Interaction of Yna1 and Yna2 Is Required for Nuclear Accumulation and Transcriptional Activation of the Nitrate Assimilation Pathway in the Yeast Hansenula polymorpha
title_short Interaction of Yna1 and Yna2 Is Required for Nuclear Accumulation and Transcriptional Activation of the Nitrate Assimilation Pathway in the Yeast Hansenula polymorpha
title_sort interaction of yna1 and yna2 is required for nuclear accumulation and transcriptional activation of the nitrate assimilation pathway in the yeast hansenula polymorpha
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4559421/
https://www.ncbi.nlm.nih.gov/pubmed/26335797
http://dx.doi.org/10.1371/journal.pone.0135416
work_keys_str_mv AT silvestrinilucia interactionofyna1andyna2isrequiredfornuclearaccumulationandtranscriptionalactivationofthenitrateassimilationpathwayintheyeasthansenulapolymorpha
AT rossibeatrice interactionofyna1andyna2isrequiredfornuclearaccumulationandtranscriptionalactivationofthenitrateassimilationpathwayintheyeasthansenulapolymorpha
AT gallmetzerandreas interactionofyna1andyna2isrequiredfornuclearaccumulationandtranscriptionalactivationofthenitrateassimilationpathwayintheyeasthansenulapolymorpha
AT mathieumartine interactionofyna1andyna2isrequiredfornuclearaccumulationandtranscriptionalactivationofthenitrateassimilationpathwayintheyeasthansenulapolymorpha
AT scazzocchioclaudio interactionofyna1andyna2isrequiredfornuclearaccumulationandtranscriptionalactivationofthenitrateassimilationpathwayintheyeasthansenulapolymorpha
AT berardienrico interactionofyna1andyna2isrequiredfornuclearaccumulationandtranscriptionalactivationofthenitrateassimilationpathwayintheyeasthansenulapolymorpha
AT straussjoseph interactionofyna1andyna2isrequiredfornuclearaccumulationandtranscriptionalactivationofthenitrateassimilationpathwayintheyeasthansenulapolymorpha