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Mechanism of REP27 Protein Action in the D1 Protein Turnover and Photosystem II Repair from Photodamage~([C][W][OA])

机译:REP27蛋白在D1蛋白周转中的作用机理和光损伤〜(II)修复光系统II([C] [W] [OA])

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The function of the REP27 protein (GenBank accession no. EF127650) in the photosystem II (PSII) repair process was elucidated. REP27 is a nucleus-encoded and chloroplast-targeted protein containing two tetratricopeptide repeat (TPR) motifs, two putative transmembrane domains, and an extended carboxyl (C)-terminal region. Cell fractionation and western-blot analysis localized the REP27 protein in the Chlamydomonas reinhardtii chloroplast thylakoids. A folding model for REP27 suggested chloroplast stroma localization for amino- and C-terminal regions as well as the two TPRs. A REP27 gene knockout strain of Chlamydomonas, termed the rep27 mutant, was employed for complementation studies. The rep27 mutant was aberrant in the PSII-repair process and had substantially lower than wild-type levels of Dl protein. Truncated REP27 cDNA constructs were made for complementation of rep27, whereby TPR1, TPR2, TPR1+TPR2, or the C-terminal domains were deleted. rep27-complemented strains minus the TPR motifs showed elevated levels of D1 in thylakoids, comparable to those in the wild type, but the PSII photochemical efficiency of these strains was not restored, suggesting that the functionality of the PSII reaction center could not be recovered in the absence of the TPR motifs. It is suggested that TPR motifs play a role in the functional activation of the newly integrated D1 protein in the PSII reaction center. rep27-complemented strains missing the C-terminal domain showed low levels of D1 protein in thylakoids as well as low PSII photochemical efficiency, comparable to those in the rep27 mutant. Therefore, the C-terminal domain is needed for a de novo biosynthesis and/or assembly of D1 in the photodamaged PSII template. We conclude that REP27 plays a dual role in the regulation of Dl protein turnover by facilitating cotranslational biosynthesis insertion (C-terminal domain) and activation (TPR motifs) of the nascent D1 during the PSII repair process.
机译:阐明了REP27蛋白(GenBank登录号EF127650)在光系统II(PSII)修复过程中的功能。 REP27是一种包含两个四三肽重复(TPR)基序,两个推定跨膜结构域和一个扩展的羧基(C)末端区域的核编码且叶绿体靶向的蛋白质。细胞分级分离和蛋白质印迹分析将REP27蛋白定位在莱茵衣藻叶绿体类囊体中。 REP27的折叠模型表明叶绿体基质位于氨基和C末端区域以及两个TPR。衣原体的REP27基因敲除菌株,称为rep27突变体,用于互补研究。 rep27突变体在PSII修复过程中异常,并且显着低于野生型D1蛋白水平。制备截短的REP27 cDNA构建体以互补rep27,从而删除了TPR1,TPR2,TPR1 + TPR2或C端结构域。不含TPR基序的rep27互补菌株显示类囊体中D1的水平升高,与野生型相当,但这些菌株的PSII光化学效率未恢复,表明PSII反应中心的功能无法恢复。没有TPR主题。提示TPR基序在PSII反应中心中新整合的D1蛋白的功能激活中起作用。与rep27突变体相比,缺少C末端结构域的rep27互补菌株在类囊体中显示出低水平的D1蛋白以及低PSII光化学效率。因此,从头进行生物合成和/或在光损伤的PSII模板中组装D1需要C端结构域。我们得出的结论是,REP27在PSII修复过程中通过促进新生D1的共翻译生物合成插入(C末端域)和激活(TPR基序)而在D1蛋白质更新的调节中起双重作用。

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