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The Arabidopsis Thylakoid Protein PAM68 Is Required for Efficient D1 Biogenesis and Photosystem II Assembly

机译:拟南芥类囊体蛋白PAM68是有效的D1生物发生和光系统II组装所必需的。

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Photosystem II (PSII) is a multiprotein complex that functions as a light-driven water: plastoquinone oxidoreductase in photosynthesis. Assembly of PSII proceeds through a number of distinct intermediate states and requires auxiliary proteins. The photosynthesis affected mutant 68 (pam68) of Arabidopsis thaliana displays drastically altered chlorophyll fluorescence and abnormally low levels of the PSII core subunits D1, D2, CP43, and CP47. We show that these phenotypes result from a specific decrease in the stability and maturation of D1. This is associated with a marked increase in the synthesis of RC (the PSII reaction center-like assembly complex) at the expense of PSII dimers and supercomplexes. PAM68 is a conserved integral membrane protein found in cyanobacterial and eukaryotic thylakoids and interacts in split-ubiquitin assays with several PSII core proteins and known PSII assembly factors. Biochemical analyses of thylakoids from Arabidopsis and Synechocystis sp PCC 6803 suggest that, during PSII assembly, PAM68 proteins associate with an early intermediate complex that might contain D1 and the assembly factor LPA1. Inactivation of cyanobacterial PAM68 destabilizes RC but does not affect larger PSII assembly complexes. Our data imply that PAM68 proteins promote early steps in PSII biogenesis in cyanobacteria and plants, but their inactivation is differently compensated for in the two classes of organisms.
机译:光系统II(PSII)是一种多蛋白复合物,在光合作用中起着光驱动水的作用:质体醌氧化还原酶。 PSII的组装通过许多不同的中间状态进行,并且需要辅助蛋白质。受光合作用影响的拟南芥突变体68(pam68)显示出大量改变的叶绿素荧光和异常低水平的PSII核心亚基D1,D2,CP43和CP47。我们表明,这些表型是由D1的稳定性和成熟度的特定降低引起的。这与以PSII二聚体和超复合体为代价的RC(PSII反应中心样组装体)的合成显着增加有关。 PAM68是在蓝细菌和真核生物类囊体中发现的一种保守的整合膜蛋白,它在分裂泛素化验中与几种PSII核心蛋白和已知的PSII组装因子相互作用。对拟南芥和拟南芥sp PCC 6803的类囊体的生化分析表明,在PSII组装过程中,PAM68蛋白与可能包含D1和组装因子LPA1的早期中间体复合物缔合。蓝细菌PAM68的失活使RC不稳定,但不影响较大的PSII装配复合物。我们的数据表明,PAM68蛋白可促进蓝细菌和植物中PSII生物发生的早期步骤,但在两类生物体中,它们的失活得到不同补偿。

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