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Non-mendelian inheritance of the HET-s prion or HET-s prion domains determines the het-S spore killing system in Podospora anserina
- Source :
- Fungal Genetics and Biology, 42(10), 836-847, Fungal Genetics and Biology 42 (2005) 10
- Publication Year :
- 2005
- Publisher :
- Elsevier BV, 2005.
-
Abstract
- Two alleles of the het-s/S locus occur naturally in the filamentous fungus Podospora anserina, het-s and het-S. The het-s encoded protein can form a prion that propagates a self-perpetuating amyloid aggregate, resulting in two phenotypes for the het-s strains. The prion-infected [Het-s] shows an antagonistic interaction to het-S whereas the prion-free [Het-s*] is neutral in interaction to het-S. The antagonism between [Het-s] and het-S is seen as heterokaryon incompatibility at the somatic level and as het-S spore killing in the sexual cycle. Two different domains of the HET-s and HET-S proteins have been identified, and a structure-function relationship has been established for interactions at the somatic level. In this study, we correlate accumulation of the HET-s and HET-S proteins (visualized using GFP) during the sexual cycle with timing of het-S spore abortion. Also, we present the structure-function relationship of the HET-s domains for interactions in the sexual cycle. We show that the constructs that ensure het-s incompatibility function in somatic mycelium are also active in het-S spore killing in the sexual cycle. In addition, paternal prion transmission and het-S spore killing has been found with the HET-s(157-289) truncated protein. The consequences of the unique transition from a coenocytic to a cellular state in the sexual phase and the timing, and localization of paternal and maternal HET-s and HET-S expression that are pertinent to prion transmission, and het-S spore killing are elaborated. These data further support our previously proposed model for het-S spore killing.
- Subjects :
- Non-Mendelian inheritance
animal structures
Sexual transmission
neurospora
Prions
Somatic cell
Laboratorium voor Erfelijkheidsleer
in-vivo
Microbiology
Neurospora
Podospora anserina
Fungal Proteins
Podospora
Protein Interaction Mapping
Genetics
genes
[SDV.BC] Life Sciences [q-bio]/Cellular Biology
Gene
analog
Heterokaryon
biology
fungi
organization
Spores, Fungal
PE&RC
heterokaryon incompatibility
biology.organism_classification
meiotic drive
Protein Structure, Tertiary
Meiotic drive
Microscopy, Fluorescence
Laboratory of Genetics
protein
vegetative incompatibility
Subjects
Details
- ISSN :
- 10871845
- Volume :
- 42
- Database :
- OpenAIRE
- Journal :
- Fungal Genetics and Biology
- Accession number :
- edsair.doi.dedup.....22c1135cbeca0cd6992eb75968f97f6d