首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A redox-active FKBP-type immunophilin functions in accumulation of the photosystem II supercomplex in Arabildopsis thaliana
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A redox-active FKBP-type immunophilin functions in accumulation of the photosystem II supercomplex in Arabildopsis thaliana

机译:氧化还原活性的FKBP型亲免蛋白在拟南芥光系统II超复合物的积累中起作用。

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Photosystem II (PSII) catalyzes the first of two photosynthetic reactions that convert sunlight into chemical energy. Native PSII is a supercomplex consisting of core and light-harvesting chlorophyll proteins. Although the structure of PSII has been resolved by x-ray crystallography, the mechanism underlying its assembly is poorly understood. Here, we report that an immunophilin of the chloroplast thylakoid lumen is required for accumulation of the PSII supercomplex in Arabidopsis thaliana. The immunophilin, FKBP20-2, belongs to the FK-506 binding protein (FKBP) subfamily that functions as peptidyl-prolyl isomerases (PPlases) in protein folding. FKBP20-2 has a unique pair of cysteines at the C terminus and was found to be reduced by thioredoxin (Trx) (itself reduced by NADPH by means of NADP-Trx reductase). The FKBP20-2 protein, which contains only two of the five amino acids required for catalysis, showed a low level of PPlase activity that was unaffected on reduction by Trx. Genetic disruption of the FKBP20-2 gene resulted in reduced plant growth, consistent with the observed lower rate of PSII activity determined by fluorescence (using leaves) and oxygen evolution (using isolated chloroplasts). Analysis of isolated thylakoid membranes with blue native gels and immunoblots showed that accumulation of the PSII supercomplex was compromised in mutant plants, whereas the levels of monomer and dimer building blocks were elevated compared with WT. The results provide evidence that FKBP20-2 participates specifically in the accumulation of the PSII supercomplex in the chloroplast thylakoid lumen by means of a mechanism that has yet to be determined.
机译:光系统II(PSII)催化将阳光转化为化学能的两个光合作用反应中的第一个。天然PSII是一种由核心和光收集叶绿素蛋白组成的超复合物。尽管PSII的结构已通过X射线晶体学解析,但对其组装的基本机理了解甚少。在这里,我们报告叶绿体类囊体腔的亲和素是拟南芥中PSII超复合物积累所需的。亲免蛋白FKBP20-2属于FK-506结合蛋白(FKBP)亚家族,在蛋白质折叠中起肽基-脯氨酰异构酶(PPlases)的作用。 FKBP20-2在C末端有一对独特的半胱氨酸,并被硫氧还蛋白(Trx)还原(本身通过NADP-Trx还原酶被NADPH还原)。 FKBP20-2蛋白仅包含催化所需的五个氨基酸中的两个,显示出低水平的PPlase活性,该活性不受Trx还原的影响。 FKBP20-2基因的遗传破坏导致植物生长减慢,这与观察到的通过荧光(使用叶片)和氧气释放(使用分离的叶绿体)确定的PSII活性较低速率相一致。用蓝色天然凝胶和免疫印迹对分离的类囊体膜进行的分析表明,突变植物中PSII超复合物的积累受到损害,而单体和二聚体构建单元的水平则比WT高。结果提供了证据,即FKBP20-2通过尚未确定的机制特异性参与叶绿体类囊体腔中PSII超复合物的积累。

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