Sicilia Francesca, Fernandez-Recio Juan, Caprari Claudio, De Lorenzo Giulia, Tsernoglou Demetrius, Cervone Felice, Federici Luca
Dipartimento di Biologia Vegetale, Università di Roma La Sapienza, 00185 Rome, Italy.
Plant Physiol. 2005 Nov;139(3):1380-8. doi: 10.1104/pp.105.067546. Epub 2005 Oct 21.
Botrytis cinerea is a phytopathogenic fungus that causes gray mold in >1,000 plant species. During infection, it secretes several endopolygalacturonases (PGs) to degrade cell wall pectin, and among them, BcPG1 is constitutively expressed and is an important virulence factor. To counteract the action of PGs, plants express polygalacturonase-inhibiting proteins (PGIPs) that have been shown to inhibit a variety of PGs with different inhibition kinetics, both competitive and noncompetitive. The PG-PGIP interaction promotes the accumulation of oligogalacturonides, fragments of the plant cell wall that are general elicitors of plant defense responses. Here, we characterize the enzymatic activity of BcPG1 and investigate its interaction with PGIP isoform 2 from Phaseolus vulgaris (PvPGIP2) by means of inhibition assays, homology modeling, and molecular docking simulations. Our results indicate a mixed mode of inhibition. This is compatible with a model for the interaction where PvPGIP2 binds the N-terminal portion of BcPG1, partially covering its active site and decreasing the enzyme affinity for the substrate. The structural framework provided by the docking model is confirmed by site-directed mutagenesis of the residues that distinguish PvPGIP2 from the isoform PvPGIP1. The finding that PvPGIP2 inhibits BcPG1 with a mixed-type kinetics further indicates the versatility of PGIPs to evolve different recognition specificities.
灰葡萄孢是一种植物致病真菌,可在1000多种植物物种中引发灰霉病。在感染过程中,它会分泌几种内切多聚半乳糖醛酸酶(PGs)来降解细胞壁果胶,其中BcPG1是组成型表达的,并且是一种重要的毒力因子。为了对抗PGs的作用,植物会表达多聚半乳糖醛酸酶抑制蛋白(PGIPs),这些蛋白已被证明能以不同的抑制动力学(包括竞争性和非竞争性)抑制多种PGs。PG - PGIP相互作用促进了寡聚半乳糖醛酸的积累,寡聚半乳糖醛酸是植物细胞壁的片段,是植物防御反应的一般激发子。在这里,我们通过抑制试验、同源建模和分子对接模拟来表征BcPG1的酶活性,并研究其与菜豆PGIP同工型2(PvPGIP2)的相互作用。我们的结果表明存在混合抑制模式。这与一种相互作用模型相符,即PvPGIP2结合BcPG1的N端部分,部分覆盖其活性位点并降低酶对底物的亲和力。对接模型提供的结构框架通过区分PvPGIP2与同工型PvPGIP1的残基的定点诱变得到证实。PvPGIP2以混合型动力学抑制BcPG1这一发现进一步表明了PGIPs在进化出不同识别特异性方面的多功能性。