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Tubulin (fungal)

Molecular classification
Microtubule subunit, Cytoskeletal protein, Enzyme (GTPase activity in β-tubulin), Other (structural protein forming microtubules)
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Overview

Fungal tubulin is a cytoskeletal protein that forms the structural backbone of microtubules in fungi. It typically refers to the α- and β-tubulin isoforms, both highly conserved, that polymerize as heterodimers to form microtubule filaments essential for cell division, intracellular transport, and hyphal growth in filamentous fungi. The microtubule network is critical for mitosis, chromosome segregation, and maintenance of cell shape. Fungal β-tubulin is a prominent drug target for agricultural and clinical antifungal agents, notably benzimidazole class fungicides, which inhibit microtubule polymerization and disrupt fungal growth. Resistance frequently arises through point mutations in the β-tubulin gene. Tubulin's fundamental cellular role, structural conservation, and its susceptibility to selective inhibitors make it a validated and essential therapeutic target in fungicide development, but also necessitate careful management of resistance and toxicity risks[2][5][6][7][8].

Other names
Fungal tubulinFungal β-tubulinFungal α-tubulinTub1 (yeast α-tubulin)Tub2 (yeast β-tubulin)
02

Mechanism of action

Inhibition of microtubule polymerization by binding β-tubulin, leading to cell cycle arrest and impaired hyphal growth. Disruption of mitotic spindle formation. Resistance-conferring mutations usually reduce fungicide binding.

03

Biological functions

Cell division (mitosis)Cell shape and intracellular transportHyphal growth (fungi)Chromosome segregationMicrotubule assembly and dynamicsOther (nuclear migration, spindle positioning in yeast)
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Disease associations

Infection (target for antifungal agents in plant and human infection)Fungicide resistance (mutations in β-tubulin cause resistance)Other (fungal growth, pathogenicity)
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Safety considerations

Potential off-target toxicity of tubulin-targeting fungicides in non-target (beneficial) fungi or other eukaryotesPossible rapid emergence of resistance due to single gene mutations in target site
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Interacting drugs

Benzimidazole fungicides (e.g., benomyl, carbendazim)

2 more in the full profile.

07

Biomarkers

Presence of β-tubulin mutations associated with benzimidazole resistance in fungal isolatesTubulin gene expression as a diagnostic marker in antifungal efficacyMolecular typing of tubulin genes in epidemiological studies

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