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Updated: Jul 7, 2026

Single-Molecule Localization Microscopy of Membrane Proteins using Single-Antibody Labeling
Published on: March 20, 2026
Fungi have three tetraspanin families with distinct functions
Karine Lambou1, Didier Tharreau, Annegret Kohler
1UMR 5240 CNRS-UCB-INSA-Bayer CropScience, Microbiologie, Adaptation et Pathogénie, Bayer CropScience, 14-20 rue Pierre Baizet, 69263 Lyon Cedex 09, France. karine.lambou@laposte.net
Background:
Tetraspanins are small membrane proteins that belong to a superfamily encompassing 33 members in human and mouse. These proteins act as organizers of membrane-signalling complexes. So far only two tetraspanin families have been identified in fungi. These are Pls1, which is required for pathogenicity of the plant pathogenic ascomycetes, Magnaporthe grisea, Botrytis cinerea and Colletotrichum lindemuthianum, and Tsp2, whose function is unknown. In this report, we describe a third family of tetraspanins (Tsp3) and a new family of tetraspanin-like proteins (Tpl1) in fungi. We also describe expression of some of these genes in M. grisea and a basidiomycete, Laccaria bicolor, and also their functional analysis in M. grisea.
Results:
The exhaustive search for tetraspanins in fungal genomes reveals that higher fungi (basidiomycetes and ascomycetes) contain three families of tetraspanins (Pls1, Tsp2 and Tsp3) with different distribution amongst phyla. Pls1 is found in ascomycetes and basidiomycetes, whereas Tsp2 is restricted to basidiomycetes and Tsp3 to ascomycetes. A unique copy of each of PLS1 and TSP3 was found in ascomycetes in contrast to TSP2, which has several paralogs in the basidiomycetes, Coprinus cinereus and Laccaria bicolor. A tetraspanin-like family (Tpl1) was also identified in ascomycetes. Transcriptional analyses in various tissues of L. bicolor and M. grisea showed that PLS1 and TSP2 are expressed in all tissues in L. bicolor and that TSP3 and TPL1 are overexpressed in the sexual fruiting bodies (perithecia) and mycelia of M. grisea, suggesting that these genes are not pseudogenes. Phenotypic analysis of gene replacementmutants Deltatsp3 and Deltatpl1 of M. grisea revealed a reduction of the pathogenicity only on rice, in contrast to Deltapls1 mutants, which are completely non-pathogenic on barley and rice.
Conclusion:
A new tetraspanin family (Tsp3) and a tetraspanin-like protein family (Tpl1) have been identified in fungi. Functional analysis by gene replacement showed that these proteins, as well as Pls1, are involved in the infection process of the plant pathogenic fungus M. grisea. The next challenge will be to decipher the role(s) of tetraspanins in a range of symbiotic, saprophytic and human pathogenic fungi.
Insights
Researchers discovered new fungal tetraspanin families, Tsp3 and Tpl1, and found they, along with Pls1, are crucial for the pathogenicity of the fungus Magnaporthe grisea.
Area of Science:
- Mycology
- Molecular Biology
- Genomics
Background:
- Tetraspanins are membrane proteins involved in cell signaling.
- Fungi possess limited known tetraspanin families (Pls1, Tsp2).
- Pls1 is essential for pathogenicity in several plant pathogenic fungi.
Purpose of the Study:
- Identify and characterize novel tetraspanin families in fungi.
- Investigate the expression patterns of these genes.
- Determine the functional roles of new tetraspanins in fungal pathogenicity.
Main Methods:
- Exhaustive search of fungal genomes for tetraspanin-like proteins.
- Gene replacement and phenotypic analysis in Magnaporthe grisea.
- Transcriptional analysis in Laccaria bicolor and M. grisea.
Main Results:
- Discovery of two new tetraspanin families (Tsp3, Tpl1) in fungi.
- Tsp3 is found in ascomycetes, Tsp2 in basidiomycetes, and Pls1 in both.
- Tsp3 and Tpl1 mutants showed reduced pathogenicity in M. grisea, while Pls1 mutants were non-pathogenic.
Conclusions:
- Identified novel fungal tetraspanin families Tsp3 and Tpl1.
- Demonstrated the involvement of Tsp3, Tpl1, and Pls1 in the pathogenicity of M. grisea.
- Future research should explore tetraspanin roles in diverse fungal lifestyles.
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