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Dynein Heavy Chain, Encoded by Two Genes in Agaricomycetes, Is Required for Nuclear Migration in Schizophyllum commune

The white-rot fungus Schizophyllum commune (Agaricomycetes) was used to study the cell biology of microtubular trafficking during mating interactions, when the two partners exchange nuclei, which are transported along microtubule tracks. For this transport activity, the motor protein dynein is requi...

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Autores principales: Brunsch, Melanie, Schubert, Daniela, Gube, Matthias, Ring, Christiane, Hanisch, Lisa, Linde, Jörg, Krause, Katrin, Kothe, Erika
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4540427/
https://www.ncbi.nlm.nih.gov/pubmed/26284622
http://dx.doi.org/10.1371/journal.pone.0135616
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author Brunsch, Melanie
Schubert, Daniela
Gube, Matthias
Ring, Christiane
Hanisch, Lisa
Linde, Jörg
Krause, Katrin
Kothe, Erika
author_facet Brunsch, Melanie
Schubert, Daniela
Gube, Matthias
Ring, Christiane
Hanisch, Lisa
Linde, Jörg
Krause, Katrin
Kothe, Erika
author_sort Brunsch, Melanie
collection PubMed
description The white-rot fungus Schizophyllum commune (Agaricomycetes) was used to study the cell biology of microtubular trafficking during mating interactions, when the two partners exchange nuclei, which are transported along microtubule tracks. For this transport activity, the motor protein dynein is required. In S. commune, the dynein heavy chain is encoded in two parts by two separate genes, dhc1 and dhc2. The N-terminal protein Dhc1 supplies the dimerization domain, while Dhc2 encodes the motor machinery and the microtubule binding domain. This split motor protein is unique to Basidiomycota, where three different sequence patterns suggest independent split events during evolution. To investigate the function of the dynein heavy chain, the gene dhc1 and the motor domain in dhc2 were deleted. Both resulting mutants were viable, but revealed phenotypes in hyphal growth morphology and mating behavior as well as in sexual development. Viability of strain Δdhc2 is due to the higher expression of kinesin-2 and kinesin-14, which was proven via RNA sequencing.
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spelling pubmed-45404272015-08-24 Dynein Heavy Chain, Encoded by Two Genes in Agaricomycetes, Is Required for Nuclear Migration in Schizophyllum commune Brunsch, Melanie Schubert, Daniela Gube, Matthias Ring, Christiane Hanisch, Lisa Linde, Jörg Krause, Katrin Kothe, Erika PLoS One Research Article The white-rot fungus Schizophyllum commune (Agaricomycetes) was used to study the cell biology of microtubular trafficking during mating interactions, when the two partners exchange nuclei, which are transported along microtubule tracks. For this transport activity, the motor protein dynein is required. In S. commune, the dynein heavy chain is encoded in two parts by two separate genes, dhc1 and dhc2. The N-terminal protein Dhc1 supplies the dimerization domain, while Dhc2 encodes the motor machinery and the microtubule binding domain. This split motor protein is unique to Basidiomycota, where three different sequence patterns suggest independent split events during evolution. To investigate the function of the dynein heavy chain, the gene dhc1 and the motor domain in dhc2 were deleted. Both resulting mutants were viable, but revealed phenotypes in hyphal growth morphology and mating behavior as well as in sexual development. Viability of strain Δdhc2 is due to the higher expression of kinesin-2 and kinesin-14, which was proven via RNA sequencing. Public Library of Science 2015-08-18 /pmc/articles/PMC4540427/ /pubmed/26284622 http://dx.doi.org/10.1371/journal.pone.0135616 Text en © 2015 Brunsch 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
Brunsch, Melanie
Schubert, Daniela
Gube, Matthias
Ring, Christiane
Hanisch, Lisa
Linde, Jörg
Krause, Katrin
Kothe, Erika
Dynein Heavy Chain, Encoded by Two Genes in Agaricomycetes, Is Required for Nuclear Migration in Schizophyllum commune
title Dynein Heavy Chain, Encoded by Two Genes in Agaricomycetes, Is Required for Nuclear Migration in Schizophyllum commune
title_full Dynein Heavy Chain, Encoded by Two Genes in Agaricomycetes, Is Required for Nuclear Migration in Schizophyllum commune
title_fullStr Dynein Heavy Chain, Encoded by Two Genes in Agaricomycetes, Is Required for Nuclear Migration in Schizophyllum commune
title_full_unstemmed Dynein Heavy Chain, Encoded by Two Genes in Agaricomycetes, Is Required for Nuclear Migration in Schizophyllum commune
title_short Dynein Heavy Chain, Encoded by Two Genes in Agaricomycetes, Is Required for Nuclear Migration in Schizophyllum commune
title_sort dynein heavy chain, encoded by two genes in agaricomycetes, is required for nuclear migration in schizophyllum commune
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4540427/
https://www.ncbi.nlm.nih.gov/pubmed/26284622
http://dx.doi.org/10.1371/journal.pone.0135616
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