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水稻NADP-苹果酸酶的原核表达、纯化和抗体制备 被引量:2
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作者 程玉祥 柳参奎 《植物生理学通讯》 CAS CSCD 北大核心 2007年第5期847-851,共5页
构建了水稻NADP-ME_2基因cDNA的原核表达载体pQE30,并诱导表达出有生物学功能的融合蛋白。用Ni-NTA琼脂糖亲和层析纯化出NADP-ME_2融合蛋白,并测定了融合蛋白酶学特性(V_(max)、K_m、K_(cat)、底物特异性)。用纯化的NADP- ME_2融合蛋白... 构建了水稻NADP-ME_2基因cDNA的原核表达载体pQE30,并诱导表达出有生物学功能的融合蛋白。用Ni-NTA琼脂糖亲和层析纯化出NADP-ME_2融合蛋白,并测定了融合蛋白酶学特性(V_(max)、K_m、K_(cat)、底物特异性)。用纯化的NADP- ME_2融合蛋白免疫家兔,制备出抗水稻NADP-ME特异性抗体。全蛋白双向电泳后Western印迹表明水稻中至少有4个NADP-ME家族蛋白质成员。 展开更多
关键词 水稻 nadp-me2 原核表达 酶学特性 抗体
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The receptor-like cytosolic kinase RIPK activates NADP-malic enzyme 2 to generate NADPH for fueling ROS production 被引量:8
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作者 Binyan Wu Ping Li +3 位作者 Xiufang Hong Cuihong Xu Ran Wang Yan Liang 《Molecular Plant》 SCIE CAS CSCD 2022年第5期887-903,共17页
Reactive oxygen species(ROS)production is a conserved immune response in Arabidopsis primarily medi-ated by respiratory burst oxidase homolog D(RBOHD),a nicotinamide adenine dinucleotide phosphate(NADPH)oxidase associ... Reactive oxygen species(ROS)production is a conserved immune response in Arabidopsis primarily medi-ated by respiratory burst oxidase homolog D(RBOHD),a nicotinamide adenine dinucleotide phosphate(NADPH)oxidase associated with the plasma membrane.A rapid increase in NADPH is necessary to fuel RBOHD proteins and thus maintain ROS production.However,the molecular mechanism by which NADPH is generated to fuel RBOHD remains unclear.In this study,we isolated a new mutant allele of FLAGELLIN-INSENSITIVE 4(FIN4),which encodes the first enzyme in de novo NAD biosynthesis.fin4 mu-tants show reduced NADPH levels and impaired ROS production.However,FIN4 and other genes involved in NAD-and NADPH-generating pathways are not highly upregulated upon elicitor treatment,raising a pos-sibility that a cytosolic NADP-linked dehydrogenase might be post-transcriptionally activated to maintain the NADPH supply close to RBOHD.To verify this possibility,we isolated the proteins associated with RPM1-INDUCED PROTEIN KINASE(RIPK),a receptor-like cytoplasmic kinase that regulates broad-spectrum ROS signaling in plant immunity,and identified NADP-malic enzyme 2(NADP-ME2),an NADPH-generating enzyme.Compared with wild-type plants,nadp-me2 mutants display decreased NADP-ME activity,lower NADPH levels,and reduced ROS production in response to immune elicitors.Furthermore,we found that RIPK can directly phosphorylate NADP-ME2 and enhance its activity in vitro.The phosphorylation of the NADP-ME2 S371 residue contributes to ROS production upon immune elicitor treatment and susceptibility to the necrotrophic bacterium Pectobacterium carotovorum.Collectively,our study suggests that RIPK phosphorylates and activates NADP-ME2 to rapidly increase cytosolic NADPH,thus fueling RBOHD to sustain ROS production in plant immunity. 展开更多
关键词 nadp-me2 NADPH RBOHD reactive oxygen species plant immunity
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