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The Neurospora crassa PCL-1 cyclin is a PHO85-1 (PGOV) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation

Cyclins are a family of proteins characterized by possessing a cyclin box domain that mediates binding to cyclin dependent kinases (CDKs) partners. In this study, the search for a partner cyclin of the PHO85-1 CDK retrieved PCL-1 an ortholog of yeast Pcls (for Pho85 cyclins) that performs functions...

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Autores principales: Campanella, Jonatas Erick Maimoni, Candido, Thiago de Souza, Barbosa, Luiz Carlos Bertucci, Gomes, Antoniel Augusto Severo, Leite, Carla Andréa, Higashi, Erika Silva, Barbugli, Paula Aboud, Fontes, Marcos Roberto de Matos, Bertolini, Maria Célia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9815767/
https://www.ncbi.nlm.nih.gov/pubmed/36620034
http://dx.doi.org/10.3389/fmicb.2022.1078972
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author Campanella, Jonatas Erick Maimoni
Candido, Thiago de Souza
Barbosa, Luiz Carlos Bertucci
Gomes, Antoniel Augusto Severo
Leite, Carla Andréa
Higashi, Erika Silva
Barbugli, Paula Aboud
Fontes, Marcos Roberto de Matos
Bertolini, Maria Célia
author_facet Campanella, Jonatas Erick Maimoni
Candido, Thiago de Souza
Barbosa, Luiz Carlos Bertucci
Gomes, Antoniel Augusto Severo
Leite, Carla Andréa
Higashi, Erika Silva
Barbugli, Paula Aboud
Fontes, Marcos Roberto de Matos
Bertolini, Maria Célia
author_sort Campanella, Jonatas Erick Maimoni
collection PubMed
description Cyclins are a family of proteins characterized by possessing a cyclin box domain that mediates binding to cyclin dependent kinases (CDKs) partners. In this study, the search for a partner cyclin of the PHO85-1 CDK retrieved PCL-1 an ortholog of yeast Pcls (for Pho85 cyclins) that performs functions common to Pcls belonging to different cyclin families. We show here that PCL-1, as a typical cyclin, is involved in cell cycle control and cell progression. In addition, PCL-1 regulates glycogen metabolism; Δpcl-1 cells accumulate higher glycogen levels than wild-type cells and the glycogen synthase (GSN) enzyme is less phosphorylated and, therefore, more active in the mutant cells. Together with PHO85-1, PCL-1 phosphorylates in vitro GSN at the Ser636 amino acid residue. Modeling studies identified PHO85-1 and PCL-1 as a CDK/cyclin complex, with a conserved intermolecular region stabilized by hydrophobic and polar interactions. PCL-1 is also involved in calcium and NaCl stress response. Δpcl-1 cells are sensitive to high NaCl concentration; on the contrary, they grow better and overexpress calcium responsive genes under high calcium chloride concentration compared to the wild-type strain. The expression of the calcium-responsive CRZ-1 transcription factor is modulated by PCL-1, and this transcription factor seems to be less phosphorylated in Δpcl-1 cells since exhibits nuclear location in these cells in the absence of calcium. Our results show that PCL-1 locates at different cell regions suggesting that it may determine its activity by controlling its intracellular location and reveal an interesting functional divergence between yeast and filamentous fungus cyclins.
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spelling pubmed-98157672023-01-06 The Neurospora crassa PCL-1 cyclin is a PHO85-1 (PGOV) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation Campanella, Jonatas Erick Maimoni Candido, Thiago de Souza Barbosa, Luiz Carlos Bertucci Gomes, Antoniel Augusto Severo Leite, Carla Andréa Higashi, Erika Silva Barbugli, Paula Aboud Fontes, Marcos Roberto de Matos Bertolini, Maria Célia Front Microbiol Microbiology Cyclins are a family of proteins characterized by possessing a cyclin box domain that mediates binding to cyclin dependent kinases (CDKs) partners. In this study, the search for a partner cyclin of the PHO85-1 CDK retrieved PCL-1 an ortholog of yeast Pcls (for Pho85 cyclins) that performs functions common to Pcls belonging to different cyclin families. We show here that PCL-1, as a typical cyclin, is involved in cell cycle control and cell progression. In addition, PCL-1 regulates glycogen metabolism; Δpcl-1 cells accumulate higher glycogen levels than wild-type cells and the glycogen synthase (GSN) enzyme is less phosphorylated and, therefore, more active in the mutant cells. Together with PHO85-1, PCL-1 phosphorylates in vitro GSN at the Ser636 amino acid residue. Modeling studies identified PHO85-1 and PCL-1 as a CDK/cyclin complex, with a conserved intermolecular region stabilized by hydrophobic and polar interactions. PCL-1 is also involved in calcium and NaCl stress response. Δpcl-1 cells are sensitive to high NaCl concentration; on the contrary, they grow better and overexpress calcium responsive genes under high calcium chloride concentration compared to the wild-type strain. The expression of the calcium-responsive CRZ-1 transcription factor is modulated by PCL-1, and this transcription factor seems to be less phosphorylated in Δpcl-1 cells since exhibits nuclear location in these cells in the absence of calcium. Our results show that PCL-1 locates at different cell regions suggesting that it may determine its activity by controlling its intracellular location and reveal an interesting functional divergence between yeast and filamentous fungus cyclins. Frontiers Media S.A. 2022-12-22 /pmc/articles/PMC9815767/ /pubmed/36620034 http://dx.doi.org/10.3389/fmicb.2022.1078972 Text en Copyright © 2022 Campanella, Candido, Barbosa, Gomes, Leite, Higashi, Barbugli, Fontes and Bertolini. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Campanella, Jonatas Erick Maimoni
Candido, Thiago de Souza
Barbosa, Luiz Carlos Bertucci
Gomes, Antoniel Augusto Severo
Leite, Carla Andréa
Higashi, Erika Silva
Barbugli, Paula Aboud
Fontes, Marcos Roberto de Matos
Bertolini, Maria Célia
The Neurospora crassa PCL-1 cyclin is a PHO85-1 (PGOV) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation
title The Neurospora crassa PCL-1 cyclin is a PHO85-1 (PGOV) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation
title_full The Neurospora crassa PCL-1 cyclin is a PHO85-1 (PGOV) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation
title_fullStr The Neurospora crassa PCL-1 cyclin is a PHO85-1 (PGOV) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation
title_full_unstemmed The Neurospora crassa PCL-1 cyclin is a PHO85-1 (PGOV) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation
title_short The Neurospora crassa PCL-1 cyclin is a PHO85-1 (PGOV) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation
title_sort neurospora crassa pcl-1 cyclin is a pho85-1 (pgov) kinase partner that directs the complex to glycogen metabolism and is involved in calcium metabolism regulation
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9815767/
https://www.ncbi.nlm.nih.gov/pubmed/36620034
http://dx.doi.org/10.3389/fmicb.2022.1078972
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