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Structure and disulfide bonding pattern of the hevein-like peptide domains from plant class IV chitinases

机译:植物IV类几丁质酶的类vevein样肽结构域的结构和二硫键模式

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Corn (Zea mays) and Arabidopsis (Arabidopsis thaliana) produce GH family 19 plant class IV chitinases. These chitinases contain two domains: a small N-terminal hevein region, and a C-terminal chitinase. Numerous structures of GH19 chitinase domains have been reported, including the chitinase domain of corn ChitA. Structural information on the N-terminal domains, however, is lacking. Fusarium pathogens secrete fungalysin proteases that cleave some class IV chitinases at a well-defined Gly-Cys site between the two domains. To study the structure of the peptide domain we used the fungalysin protease Fv-cmp as a tool to release the hevein domain from plant class IV chitinases, allowing their direct study. MALDI-TOF MS analysis of fungalysin-released peptides from plant class IV chitinases from corn and Arabidopsis allowed visualization of multiple isotopomers, resulting in accurate mass determination. When treated with DTT, peptide ions increased in mass by six mass units, suggesting breakage of three disulfide bonds. When reduced peptides were S-alkylated, peptides were converted to a series of evenly spaced ions with various states of alkylation, confirming the presence of six reduced cysteines. This chemical data was complemented by use of molecular modeling to determine the fold of the peptide and location of disulfide bonds. The chemical data and molecular model combine to create a structural model of a hevein domain from a GH19 chitinase. Published by Elsevier Ltd.
机译:玉米(Zea mays)和拟南芥(Arabidopsis thaliana)产生GH家族19植物IV几丁质酶。这些几丁质酶包含两个结构域:一个小的N端hevein区域和一个C端几丁质酶。已经报道了GH19几丁质酶结构域的许多结构,包括玉米ChitA的几丁质酶结构域。但是,缺少有关N末端域的结构信息。镰刀菌病原体在两个结构域之间明确定义的Gly-Cys位点分泌能裂解某些IV类几丁质酶的真菌溶素蛋白酶。为了研究肽结构域的结构,我们使用了真菌毒素蛋白酶Fv-cmp作为从IV类植物几丁质酶释放hevein域的工具,可以对其进行直接研究。玉米和拟南芥属植物IV类几丁质酶释放的真菌溶素释放肽的MALDI-TOF MS分析可显示多种同位异构体,从而可进行准确的质量测定。当用DTT处理时,肽离子的质量增加了六个质量单位,表明三个二硫键断裂。当还原的肽被S-烷基化时,肽被转化为具有各种烷基化状态的一系列均匀间隔的离子,从而证实了六个还原的半胱氨酸的存在。通过使用分子模型确定肽的折叠和二硫键的位置,可以补充此化学数据。化学数据和分子模型结合起来,从GH19几丁质酶创建了hevein域的结构模型。由Elsevier Ltd.发布

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