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首页> 外文期刊>Journal of General Plant Pathology >H2O2 production by copper amine oxidase, a component of the ecto-apyrase (ATPase)-containing protein complex(es) in the pea cell wall, is regulated by an elicitor and a suppressor from Mycosphaerella pinodes
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H2O2 production by copper amine oxidase, a component of the ecto-apyrase (ATPase)-containing protein complex(es) in the pea cell wall, is regulated by an elicitor and a suppressor from Mycosphaerella pinodes

机译:豌豆细胞壁中含有胞外磷酸酶(ATPase)的蛋白质复合物的一种成分铜胺氧化酶产生的H2 O2 受豆腐球菌的激发子和抑制子调节

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摘要

Blue native PAGE analysis for cell wall proteins from pea epicotyls demonstrated that cell wall-associated ecto-apyrase (ATPase) formed a large protein complex(es) ranging from 450 to 900 kDa; one of the components of the complex was copper amine oxidase (CuAO), which catalyzes the oxidation of amines with the subsequent generation of ammonia and hydrogen peroxide. CuAO activity was coordinately regulated in vitro with ATP-hydrolyzing activity by an elicitor and a suppressor from Mycosphaerella pinodes. Moreover, treatment of cell wall proteins with the suppressor caused the appearance of the apyrase monomer. On the basis of these results, M. pinodes may target the apyrase-containing protein complex(es) of the host to attenuate cell wall-based, extracellular defense(s) including the production of hydrogen peroxide.
机译:对来自豌豆上胚轴的细胞壁蛋白进行的蓝色天然PAGE分析表明,与细胞壁相关的胞外Apyrase(ATPase)形成了范围为450至900 kDa的大蛋白复合物。络合物的成分之一是铜胺氧化酶(CuAO),它催化胺的氧化并随后生成氨和过氧化氢。 CuAO的活性在体外与ATP水解的活性由松球菌的激发子和抑制子协调调节。此外,用抑制剂处理细胞壁蛋白引起了腺苷三磷酸双磷酸酶单体的出现。基于这些结果,梭状芽胞杆菌可靶向宿主的含腺苷三磷酸酶的蛋白质复合物,以减弱基于细胞壁的细胞外防御,包括过氧化氢的产生。

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