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Stable Accumulation of Photosystem II Requires ONE-HELIX PROTEIN1 (OHP1) of the Light Harvesting-Like Family

机译:光系统II的稳定积累需要像光采集家族一样的单螺旋蛋白1(OHP1)

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摘要

The cellular functions of two Arabidopsis (Arabidopsis thaliana) one-helix proteins, OHP1 and OHP2 (also named LIGHT-HARVESTING-LIKE2 [LIL2] and LIL6, respectively, because they have sequence similarity to light-harvesting chlorophyll a/b-binding proteins), remain unclear. Tagged null mutants of OHP1 and OHP2 (ohp1 and ohp2) showed stunted growth with pale-green leaves on agar plates, and these mutants were unable to grow on soil. Leaf chlorophyll fluorescence and the composition of thylakoid membrane proteins revealed that ohp1 deletion substantially affected photosystem II (PSII) core protein function and led to reduced levels of photosystem I core proteins; however, it did not affect LHC accumulation. Transgenic ohp1 plants rescued with OHP1-HA or OHP1-Myc proteins developed a normal phenotype. Using these tagged OHP1 proteins in transgenic plants, we localized OHP1 to thylakoid membranes, where it formed protein complexes with both OHP2 and High Chlorophyll Fluorescence244 (HCF244). We also found PSII core proteins D1/D2, HCF136, and HCF173 and a few other plant-specific proteins associated with the OHP1/OHP2-HCF244 complex, suggesting that these complexes are early intermediates in PSII assembly. OHP1 interacted directly with HCF244 in the complex. Therefore, OHP1 and HCF244 play important roles in the stable accumulation of PSII.
机译:两种拟南芥(Arabidopsis thaliana)单螺旋蛋白OHP1和OHP2(也分别称为LIGHT-HARVESTING-LIKE2 [LIL2]和LIL6)的细胞功能,因为它们与捕光叶绿素a / b结合蛋白具有序列相似性),请保持不清楚。带标记的OHP1和OHP2无效突变体(ohp1和ohp2)在琼脂平板上显示出发育缓慢的淡绿色叶子,这些突变体无法在土壤中生长。叶片叶绿素荧光和类囊体膜蛋白的组成表明,ohp1缺失实质上影响了光系统II(PSII)核心蛋白的功能,并导致光系统I核心蛋白的水平降低。但是,它并没有影响LHC的积累。用OHP1-HA或OHP1-Myc蛋白拯救的转基因ohp1植物表现出正常的表型。在转基因植物中使用这些标记的OHP1蛋白,我们将OHP1定位在类囊体膜上,在那里与OHP2和高叶绿素荧光244(HCF244)形成蛋白复合物。我们还发现PSII核心蛋白D1 / D2,HCF136和HCF173以及与OHP1 / OHP2-HCF244复合物相关的其他一些植物特异性蛋白质,表明这些复合物是PSII装配中的早期中间体。 OHP1与复合物中的HCF244直接相互作用。因此,OHP1和HCF244在PSII的稳定积累中起重要作用。

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