Kakani Kishore, Reade Ron, Rochon D'Ann
Faculty of Agricultural Sciences, University of British Columbia, Vancouver, BC, Canada V6T 1Z4.
J Mol Biol. 2004 Apr 30;338(3):507-17. doi: 10.1016/j.jmb.2004.03.008.
Transmission of Cucumber necrosis virus (CNV) by zoospores of its fungal vector, Olpidium bornovanus, involves specific adsorption of virus particles onto the zoospore plasmalemma prior to infestation of cucumber roots by virus-bound zoospores. Previous work has shown that specific components of both CNV and zoospores are required for successful CNV/zoospore recognition. Here, we show that limited trypsin digestion of CNV following in vitro CNV/zoospore binding assays, results in the production of specific proteolytic digestion products under conditions where native CNV is resistant. The proteolytic digestion pattern of zoospore-bound CNV was found to be similar to that of swollen CNV particles produced in vitro, suggesting that zoospore-bound CNV is in an altered conformational state, perhaps similar to that of swollen CNV. We show that an engineered CNV mutant (Pro73Gly) in which a conserved proline residue (Pro73) in the beta-annulus of the CP arm is changed to glycine is resistant to proteolysis following in vitro zoospore binding assays. Moreover, Pro73Gly particles are transmitted only poorly by O.bornovanus. Together, the results of these studies suggest that CNV undergoes conformational change upon zoospore binding and that the conformational change is important for CNV transmissibility.
黄瓜坏死病毒(CNV)通过其真菌传播介体博氏油壶菌的游动孢子进行传播,这涉及到在被病毒附着的游动孢子侵染黄瓜根系之前,病毒粒子特异性吸附到游动孢子的质膜上。先前的研究表明,CNV和游动孢子的特定成分对于成功的CNV/游动孢子识别是必需的。在此,我们表明,在体外CNV/游动孢子结合试验后,对CNV进行有限的胰蛋白酶消化,在天然CNV具有抗性的条件下会产生特定的蛋白水解消化产物。发现附着在游动孢子上的CNV的蛋白水解消化模式与体外产生的肿胀CNV颗粒的模式相似,这表明附着在游动孢子上的CNV处于改变的构象状态,可能类似于肿胀的CNV。我们表明,一种工程化的CNV突变体(Pro73Gly),其中CP臂β环中的一个保守脯氨酸残基(Pro73)被改变为甘氨酸,在体外游动孢子结合试验后对蛋白水解具有抗性。此外,Pro73Gly颗粒仅能被博氏油壶菌低效传播。这些研究结果共同表明,CNV在与游动孢子结合后会发生构象变化,并且这种构象变化对CNV的传播能力很重要。