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Amino Acid Sequence of Anionic Peroxidase from the Windmill Palm Tree Trachycarpus fortunei

机译:风车棕榈树Trachycarpus fortunei阴离子过氧化物酶的氨基酸序列

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摘要

Palm peroxidases are extremely stable and have uncommon substrate specificity. This study was designed to fill in the knowledge gap about the structures of a peroxidase from the windmill palm tree Trachycarpus fortunei. The complete amino acid sequence and partial glycosylation were determined by MALDI-top-down sequencing of native windmill palm tree peroxidase (WPTP), MALDI-TOF/TOF MS/MS of WPTP tryptic peptides, and cDNA sequencing. The propeptide of WPTP contained N- and C-terminal signal sequences which contained 21 and 17 amino acid residues, respectively. Mature WPTP was 306 amino acids in length, and its carbohydrate content ranged from 21% to 29%. Comparison to closely related royal palm tree peroxidase revealed structural features that may explain differences in their substrate specificity. The results can be used to guide engineering of WPTP and its novel applications.
机译:棕榈过氧化物酶非常稳定,并且具有不常见的底物特异性。本研究旨在填补有关风车棕榈树Trachycarpus fortunei过氧化物酶结构的知识空白。通过天然风车棕榈树过氧化物酶(WPTP)的MALDI-top-down测序,WPTP胰蛋白酶肽的MALDI-TOF / TOF MS / MS和cDNA测序来确定完整的氨基酸序列和部分糖基化。 WPTP的前肽包含N端和C端信号序列,分别包含21和17个氨基酸残基。成熟的WPTP长度为306个氨基酸,其碳水化合物含量为21%至29%。与密切相关的皇家棕榈树过氧化物酶的比较揭示了可能解释其底物特异性差异的结构特征。研究结果可用于指导WPTP及其新应用的工程设计。

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