Department of Biology and Biotechnology "Charles Darwin", Sapienza University of Rome, Rome, Italy.
Department of Biochemical Sciences "A. Rossi Fanelli", Pasteur Institute-Fondazione Cenci Bolognetti, Sapienza University of Rome, Rome, Italy.
Mol Plant Pathol. 2020 Dec;21(12):1620-1633. doi: 10.1111/mpp.13002. Epub 2020 Oct 7.
Pectin is synthesized in a highly methylesterified form in the Golgi cisternae and partially de-methylesterified in muro by pectin methylesterases (PMEs). Arabidopsis thaliana produces a local and strong induction of PME activity during the infection of the necrotrophic fungus Botrytis cinerea. AtPME17 is a putative A. thaliana PME highly induced in response to B. cinerea. Here, a fine tuning of AtPME17 expression by different defence hormones was identified. Our genetic evidence demonstrates that AtPME17 strongly contributes to the pathogen-induced PME activity and resistance against B. cinerea by triggering jasmonic acid-ethylene-dependent PDF1.2 expression. AtPME17 belongs to group 2 isoforms of PMEs characterized by a PME domain preceded by an N-terminal PRO region. However, the biochemical evidence for AtPME17 as a functional PME is still lacking and the role played by its PRO region is not known. Using the Pichia pastoris expression system, we demonstrate that AtPME17 is a functional PME with activity favoured by an increase in pH. AtPME17 performs a blockwise pattern of pectin de-methylesterification that favours the formation of egg-box structures between homogalacturonans. Recombinant AtPME17 expression in Escherichia coli reveals that the PRO region acts as an intramolecular inhibitor of AtPME17 activity.
果胶在高尔基体腔中以高度甲酯化的形式合成,并在质壁中被果胶甲酯酶(PMEs)部分去甲酯化。拟南芥在感染坏死真菌灰葡萄孢时会产生局部且强烈的 PME 活性诱导。AtPME17 是一种对灰葡萄孢高度诱导的拟南芥 PME。在此,鉴定了不同防御激素对 AtPME17 表达的精细调控。我们的遗传证据表明,AtPME17 通过触发茉莉酸-乙烯依赖的 PDF1.2 表达,强烈促进病原体诱导的 PME 活性和对灰葡萄孢的抗性。AtPME17 属于 PME 组 2 同工型,其特征是 PME 结构域前有一个 N 端 PRO 区。然而,AtPME17 作为一种功能性 PME 的生化证据仍然缺乏,其 PRO 区的作用尚不清楚。使用毕赤酵母表达系统,我们证明了 AtPME17 是一种具有功能的 PME,其活性受 pH 值升高的影响。AtPME17 对果胶进行分段去甲酯化,有利于 homogalacturonans 之间形成蛋盒结构。大肠杆菌中重组 AtPME17 的表达表明,PRO 区作为 AtPME17 活性的内分子抑制剂发挥作用。