首页> 外文期刊>Journal of bacteriology >Identification of Two Feruloyl Esterases in Dickeya dadantii 3937 and Induction of the Major Feruloyl Esterase and of Pectate Lyases by Ferulic Acid
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Identification of Two Feruloyl Esterases in Dickeya dadantii 3937 and Induction of the Major Feruloyl Esterase and of Pectate Lyases by Ferulic Acid

机译:Dickeya dadantii 3937中的两种阿魏酸酯酶的鉴定以及阿魏酸诱导的主要阿魏酸酯酶和果胶裂合酶

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The plant-pathogenic bacterium Dickeya dadantii (formerly Erwinia chrysanthemi) produces a large array of plant cell wall-degrading enzymes. Using an in situ detection test, we showed that it produces two feruloyl esterases, FaeD and FaeT. These enzymes cleave the ester link between ferulate and the pectic or xylan chains. FaeD and FaeT belong to the carbohydrate esterase family CE10, and they are the first two feruloyl esterases to be identified in this family. Cleavage of synthetic substrates revealed strong activation of FaeD and FaeT by ferulic acid. The gene faeT appeared to be weakly expressed, and its product, FaeT, is a cytoplasmic protein. In contrast, the gene faeD is strongly induced in the presence of ferulic acid, and FaeD is an extracellular protein secreted by the Out system, responsible for pectinase secretion. The product of the adjacent gene faeR is involved in the positive control of faeD in response to ferulic acid. Moreover, ferulic acid acts in synergy with polygalacturonate to induce pectate lyases, the main virulence determinant of soft rot disease. Feruloyl esterases dissociate internal cross-links in the polysaccharide network of the plant cell wall, suppress the polysaccharide esterifications, and liberate ferulic acid, which contributes to the induction of pectate lyases. Together, these effects of feruloyl esterases could facilitate soft rot disease caused by pectinolytic bacteria.
机译:植物病原细菌 Dickeya dadantii (以前称为 Erwinia chrysanthemi )会产生大量植物细胞壁降解酶。使用原位检测测试,我们表明它会产生两种阿魏酸酯酶FaeD和FaeT。这些酶切割阿魏酸与果胶或木聚糖链之间的酯键。 FaeD和FaeT属于碳水化合物酯酶家族CE10,它们是该家族中最早鉴定出的两个阿魏酸酯酶。合成底物的裂解显示阿魏酸对FaeD和FaeT有很强的激活作用。 faeT 基因似乎表达较弱,其产物FaeT是一种细胞质蛋白。相反,在阿魏酸存在下强烈诱导基因 faeD ,而FaeD是由Out系统分泌的胞外蛋白分泌的胞外蛋白。邻近基因 faeR 的产物参与了 faeD 对阿魏酸的阳性控制。此外,阿魏酸与聚半乳糖醛酸协同作用以诱导果胶裂解酶,果胶裂解酶是软腐病的主要毒力决定因素。阿魏酸酯酶分解植物细胞壁多糖网络中的内部交联,抑制多糖酯化,并释放出阿魏酸,这有助于果胶酸裂合酶的诱导。在一起,阿魏酸酯酶的这些作用可以促进由果胶分解细菌引起的软腐病。

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