首页> 美国卫生研究院文献>The Journal of Biological Chemistry >LPA19 a Psb27 Homolog in Arabidopsis thaliana Facilitates D1 Protein Precursor Processing during PSII Biogenesis
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LPA19 a Psb27 Homolog in Arabidopsis thaliana Facilitates D1 Protein Precursor Processing during PSII Biogenesis

机译:LPA19拟南芥中的Psb27同源物在PSII生物发生过程中促进D1蛋白前体的加工。

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摘要

The biogenesis and assembly of photosystem II (PSII) are mainly regulated by the nuclear-encoded factors. To further identify the novel components involved in PSII biogenesis, we isolated and characterized a high chlorophyll fluorescence low psii accumulation19 (lpa19) mutant, which is defective in PSII biogenesis. LPA19 encodes a Psb27 homolog (At1g05385). Interestingly, another Psb27 homolog (At1g03600) in Arabidopsis was revealed to be required for the efficient repair of photodamaged PSII. These results suggest that the Psb27 homologs play distinct functions in PSII biogenesis and repair in Arabidopsis. Chloroplast protein labeling assays showed that the C-terminal processing of D1 in the lpa19 mutant was impaired. Protein overlay assays provided evidence that LPA19 interacts with D1, and coimmunoprecipitation analysis demonstrated that LPA19 interacts with mature D1 (mD1) and precursor D1 (pD1). Moreover, LPA19 protein was shown to specifically interact with the soluble C terminus present in the precursor and mature D1 through yeast two-hybrid analyses. Thus, these studies suggest that LPA19 is involved in facilitating the D1 precursor protein processing in Arabidopsis.
机译:光系统II(PSII)的生物发生和组装主要受核编码因子调控。为了进一步鉴定参与PSII生物发生的新成分,我们分离并鉴定了高叶绿素荧光低psii积累19(lpa19)突变体,该突变体在PSII生物发生中是有缺陷的。 LPA19编码Psb27同源物(At1g05385)。有趣的是,揭示了拟南芥中的另一种Psb27同源物(At1g03600)是有效修复光损伤PSII所必需的。这些结果表明Psb27同源物在拟南芥中的PSII生物发生和修复中发挥不同的功能。叶绿体蛋白标记分析表明,lpa19突变体中D1的C末端加工受到损害。蛋白质覆盖分析提供了LPA19与D1相互作用的证据,而免疫共沉淀分析表明LPA19与成熟D1(mD1)和前体D1(pD1)相互作用。此外,通过酵母双杂交分析显示,LPA19蛋白与存在于前体和成熟D1中的可溶性C末端特异性相互作用。因此,这些研究表明LPA19参与了拟南芥中D1前体蛋白的加工。

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