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1 y), which have been implicated as plant anti-fungal toxins.
2 ve sequence similarity with other viral anti-fungal toxins.
7 yphae escape this mechanism by releasing the fungal toxin candidalysin, which causes eosinophil membr
11 ltration of leaf tissues with a PCD-inducing fungal toxin fumonisin B1 (FB1) and increased sensitivit
13 cal inhibition of ceramide production by the fungal toxin, fumonisin B1, impaired TCR-induced interle
14 e type of mammalian channel affected by this fungal toxin further support our contention that KP4 inh
17 roscopy (cryo-EM) structure of the two-part, fungal toxin Pleurotolysin (Ply), together with crystal
18 erium Pseudomonas syringae) or fusicoccin (a fungal toxin produced by the fungus Fusicoccum amygdali)
20 fully depolarized membranes by fusicoccin, a fungal toxin that activates the H(+)-ATPase, indicates t
22 very of pH upon treatment with fusicoccin (a fungal toxin that activates the plasma membrane proton p
24 n addition, treatment with cytochalasin D, a fungal toxin that depolymerizes actin filaments, reduced
25 in is an epidithiopiperazine-2,5-dione (ETP) fungal toxin that disrupts cellular functions likely via