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Structural and biochemical studies identify tobacco SABP2 as a methyl salicylate esterase and implicate it in plant innate immunity

机译:结构和生化研究确定烟草SABP2为水杨酸甲酯酯酶并暗示其与植物先天免疫力有关

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摘要

Salicylic acid (SA) is a critical signal for the activation of plant defense responses against pathogen infections. We recently identified SA-binding protein 2 (SABP2) from tobacco as a protein that displays high affinity for SA and plays a crucial role in the activation of systemic acquired resistance to plant pathogens. Here we report the crystal structures of SABP2, alone and in complex with SA at up to 2.1-Å resolution. The structures confirm that SABP2 is a member of the α/β hydrolase superfamily of enzymes, with Ser-81, His-238, and Asp-210 as the catalytic triad. SA is bound in the active site and is completely shielded from the solvent, consistent with the high affinity of this compound for SABP2. Our biochemical studies reveal that SABP2 has strong esterase activity with methyl salicylate as the substrate, and that SA is a potent product inhibitor of this catalysis. Modeling of SABP2 with MeSA in the active site is consistent with all these biochemical observations. Our results suggest that SABP2 may be required to convert MeSA to SA as part of the signal transduction pathways that activate systemic acquired resistance and perhaps local defense responses as well.
机译:水杨酸(SA)是激活植物防御病原体感染的重要信号。我们最近从烟草中鉴定出SA结合蛋白2(SABP2)是一种对SA表现出高亲和力且在激活对植物病原体的系统获得性抗性中起关键作用的蛋白。在这里,我们报告了SABP2的晶体结构,其单独或与SA结合时的分辨率高达2.1-Å。该结构证实SABP2是酶的α/β水解酶超家族的成员,其中Ser-81,His-238和Asp-210为催化三联体。 SA结合在活性位点上,并与溶剂完全屏蔽,这与该化合物对SABP2的高亲和力相一致。我们的生化研究表明,SABP2以水杨酸甲酯为底物具有很强的酯酶活性,而SA是这种催化作用的有效产物抑制剂。在活动位点用MeSA对SABP2进行建模与所有这些生物化学观察结果一致。我们的结果表明,可能需要SABP2将MeSA转化为SA,这是激活全身性获得性耐药以及局部防御反应的信号转导途径的一部分。

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