Evidence of a New MoYpd1p Phosphotransferase Isoform in the Multistep Phosphorelay System of <i>Magnaporthe oryzae</i>
Different external stimuli are perceived by multiple sensor histidine kinases and transmitted by phosphorylation via the phosphotransfer protein Ypd1p in the multistep phosphorelay system of the high osmolarity glycerol signaling pathway of filamentous fungi. How the signal propagation takes place i...
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doaj-4adb342d147e4177b3fe657bb012d8b72021-06-01T00:09:50ZengMDPI AGJournal of Fungi2309-608X2021-05-01738938910.3390/jof7050389Evidence of a New MoYpd1p Phosphotransferase Isoform in the Multistep Phosphorelay System of <i>Magnaporthe oryzae</i>Sri Bühring0Alexander Yemelin1Thomas Michna2Stefan Tenzer3Stefan Jacob4Institute for Biotechnology and Drug Research gGmbH, Hanns-Dieter-Hüsch-Weg 17, 55128 Mainz, GermanyInstitute for Biotechnology and Drug Research gGmbH, Hanns-Dieter-Hüsch-Weg 17, 55128 Mainz, GermanyInstitut für Immunologie, Universitätsmedizin der Johannes-Gutenberg Universität Mainz, Langenbeckstr. 1, 55131 Mainz, GermanyInstitut für Immunologie, Universitätsmedizin der Johannes-Gutenberg Universität Mainz, Langenbeckstr. 1, 55131 Mainz, GermanyInstitute for Biotechnology and Drug Research gGmbH, Hanns-Dieter-Hüsch-Weg 17, 55128 Mainz, GermanyDifferent external stimuli are perceived by multiple sensor histidine kinases and transmitted by phosphorylation via the phosphotransfer protein Ypd1p in the multistep phosphorelay system of the high osmolarity glycerol signaling pathway of filamentous fungi. How the signal propagation takes place is still not known in detail since multiple sensor histidine kinase genes in most filamentous fungi are coded in the genome, whereas only one gene for Ypd1p exists. That raises the hypothesis that various Ypd1p isoforms are produced from a single gene sequence, perhaps by alternative splicing, facilitating a higher variability in signal transduction. We found that the mRNA of <i>MoYPD1</i> in the rice blast fungus <i>Magnaporthe oryzae</i> is subjected to an increased structural variation and amplified putative isoforms on a cDNA level. We then generated mutant strains overexpressing these isoforms, purified the products, and present here one previously unknown MoYpd1p isoform on a proteome level. Alternative splicing was found to be a valid molecular mechanism to increase the signal diversity in eukaryotic multistep phosphorelay systems.https://www.mdpi.com/2309-608X/7/5/389phosphorelayhigh osmolarity glycerol (HOG) pathwayalternative splicingsignalinghistidine kinases<i>Magnaporthe oryzae</i> |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sri Bühring Alexander Yemelin Thomas Michna Stefan Tenzer Stefan Jacob |
spellingShingle |
Sri Bühring Alexander Yemelin Thomas Michna Stefan Tenzer Stefan Jacob Evidence of a New MoYpd1p Phosphotransferase Isoform in the Multistep Phosphorelay System of <i>Magnaporthe oryzae</i> Journal of Fungi phosphorelay high osmolarity glycerol (HOG) pathway alternative splicing signaling histidine kinases <i>Magnaporthe oryzae</i> |
author_facet |
Sri Bühring Alexander Yemelin Thomas Michna Stefan Tenzer Stefan Jacob |
author_sort |
Sri Bühring |
title |
Evidence of a New MoYpd1p Phosphotransferase Isoform in the Multistep Phosphorelay System of <i>Magnaporthe oryzae</i> |
title_short |
Evidence of a New MoYpd1p Phosphotransferase Isoform in the Multistep Phosphorelay System of <i>Magnaporthe oryzae</i> |
title_full |
Evidence of a New MoYpd1p Phosphotransferase Isoform in the Multistep Phosphorelay System of <i>Magnaporthe oryzae</i> |
title_fullStr |
Evidence of a New MoYpd1p Phosphotransferase Isoform in the Multistep Phosphorelay System of <i>Magnaporthe oryzae</i> |
title_full_unstemmed |
Evidence of a New MoYpd1p Phosphotransferase Isoform in the Multistep Phosphorelay System of <i>Magnaporthe oryzae</i> |
title_sort |
evidence of a new moypd1p phosphotransferase isoform in the multistep phosphorelay system of <i>magnaporthe oryzae</i> |
publisher |
MDPI AG |
series |
Journal of Fungi |
issn |
2309-608X |
publishDate |
2021-05-01 |
description |
Different external stimuli are perceived by multiple sensor histidine kinases and transmitted by phosphorylation via the phosphotransfer protein Ypd1p in the multistep phosphorelay system of the high osmolarity glycerol signaling pathway of filamentous fungi. How the signal propagation takes place is still not known in detail since multiple sensor histidine kinase genes in most filamentous fungi are coded in the genome, whereas only one gene for Ypd1p exists. That raises the hypothesis that various Ypd1p isoforms are produced from a single gene sequence, perhaps by alternative splicing, facilitating a higher variability in signal transduction. We found that the mRNA of <i>MoYPD1</i> in the rice blast fungus <i>Magnaporthe oryzae</i> is subjected to an increased structural variation and amplified putative isoforms on a cDNA level. We then generated mutant strains overexpressing these isoforms, purified the products, and present here one previously unknown MoYpd1p isoform on a proteome level. Alternative splicing was found to be a valid molecular mechanism to increase the signal diversity in eukaryotic multistep phosphorelay systems. |
topic |
phosphorelay high osmolarity glycerol (HOG) pathway alternative splicing signaling histidine kinases <i>Magnaporthe oryzae</i> |
url |
https://www.mdpi.com/2309-608X/7/5/389 |
work_keys_str_mv |
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