首页> 外文期刊>The Plant Cell >LIGHT-INDUCED RICE1 Regulates Light-Dependent Attachment of LEAF-TYPE FERREDOXIN-NADP(+) OXIDOREDUCTASE to the Thylakoid Membrane in Rice and Arabidopsis
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LIGHT-INDUCED RICE1 Regulates Light-Dependent Attachment of LEAF-TYPE FERREDOXIN-NADP(+) OXIDOREDUCTASE to the Thylakoid Membrane in Rice and Arabidopsis

机译:光诱导的RICE1调节水稻和拟南芥叶片型铁氧还蛋白-NADP(+)氧化还原酶对类囊体膜的光依赖性附着。

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摘要

LIR1 (LIGHT-INDUCED RICE1) encodes a 13-kD, chloroplast-targeted protein containing two nearly identical motifs of unknown function. LIR1 is present in the genomes of vascular plants, mosses, liverworts, and algae, but not in cyanobacteria. Using coimmunoprecipitation assays, pull-down assays, and yeast two-hybrid analyses, we showed that LIR1 interacts with LEAF-TYPE FERREDOXIN-NADP(+) OXIDOREDUCTASE (LFNR), an essential chloroplast enzyme functioning in the last step of photosynthetic linear electron transfer. LIR1 and LFNR formed high molecular weight thylakoid protein complexes with the TIC62 and TROL proteins, previously shown to anchor LFNR to the membrane. We further showed that LIR1 increases the affinity of LFNRs for TIC62 and that the rapid light-triggered degradation of the LIR1 coincides with the release of the LFNR from the thylakoid membrane. Loss of LIR1 resulted in a marked decrease in the accumulation of LFNR-containing thylakoid protein complexes without a concomitant decrease in total LFNR content. In rice (Oryza sativa), photosynthetic capacity of lir1 plants was slightly impaired, whereas no such effect was observed in Arabidopsis thaliana knockout mutants. The consequences of LIR1 deficiency in different species are discussed.
机译:LIR1(光诱导的RICE1)编码的13 kD,叶绿体靶向的蛋白质,包含两个几乎相同的未知功能的基序。 LIR1存在于维管束植物,苔藓,艾蒿和藻类的基因组中,但不存在于蓝细菌中。使用共免疫沉淀测定法,下拉测定法和酵母双杂交分析,我们显示LIR1与叶型FERREDOXIN-NADP(+)OXIDOREDUCTASE(LFNR)相互作用,后者是在光合作用线性电子转移的最后一步起作用的必需叶绿体酶。 LIR1和LFNR与TIC62和TROL蛋白形成了高分子量类囊体蛋白复合物,先前已证明可将LFNR锚定在膜上。我们进一步表明,LIR1增加了LFNR与TIC62的亲和力,并且LIR1的快速光触发降解与从类囊体膜释放LFNR相吻合。 LIR1的损失导致含LFNR的类囊体蛋白复合物的积累显着下降,而总LFNR含量却没有随之下降。在水稻(Oryza sativa)中,lir1植物的光合作用能力略有受损,而拟南芥敲除突变体中未观察到这种作用。讨论了LIR1缺乏症在不同物种中的后果。

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