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Dynamic changes in the subcellular distribution of the tobacco ROS-producing enzyme RBOHD in response to the oomycete elicitor cryptogein

机译:响应卵菌素激发子密码素的烟草ROS产生酶RBODH亚细胞分布的动态变化

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摘要

Plant NADPH oxidases, also known as respiratory burst oxidase homologues (RBOHs), have been identified as a major source of reactive oxygen species (ROS) during plant–microbe interactions. The subcellular localization of the tobacco (Nicotiana tabacum) ROS-producing enzyme RBOHD was examined in Bright Yellow-2 cells before and after elicitation with the oomycete protein cryptogein using electron and confocal microscopy. The plasma membrane (PM) localization of RBOHD was confirmed and immuno-electron microscopy on purified PM vesicles revealed its distribution in clusters. The presence of the protein fused to GFP was also seen in intracellular compartments, mainly Golgi cisternae. Cryptogein induced, within 1h, a 1.5-fold increase in RBOHD abundance at the PM and a concomitant decrease in the internal compartments. Use of cycloheximide revealed that most of the proteins targeted to the PM upon elicitation were not newly synthesized but may originate from the Golgi pool. ROS accumulation preceded RBOHD transcript- and protein-upregulation, indicating that ROS resulted from the activation of a PM-resident pool of enzymes, and that enzymes newly addressed to the PM were inactive. Taken together, the results indicate that control of RBOH abundance and subcellular localization may play a fundamental role in the mechanism of ROS production.
机译:植物NADPH氧化酶,也称为呼吸猝发氧化酶同系物(RBOH),已被确定为植物与微生物相互作用期间活性氧(ROS)的主要来源。使用电子显微镜和共聚焦显微镜在卵菌卵蛋白隐血球蛋白激发之前和之后,在亮黄2细胞中检查了产生烟草(ROS)的酶ROSBOHD的亚细胞定位。证实了RBOHD的质膜(PM)定位,并且在纯化的PM囊泡上的免疫电子显微镜显示了其簇状分布。在细胞内区室中也观察到与GFP融合的蛋白的存在,主要是高尔基池。隐gegein在1小时内诱导PM的RBOHD丰度增加1.5倍,并伴随内部隔室的减少。环己酰亚胺的使用表明,诱导时靶向PM的大多数蛋白质不是新合成的,但可能起源于高尔基体。 ROS的积累先于RBOHD转录和蛋白质上调,这表明ROS是由PM驻留的酶库的激活引起的,而新寻址到PM的酶是无活性的。两者合计,结果表明控制RBOH的丰度和亚细胞定位可能在ROS产生的机制中发挥根本作用。

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