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首页> 外文期刊>Biochemistry >SPECIFIC DEGRADATION OF THE D1 PROTEIN OF PHOTOSYSTEM II BY TREATMENT WITH HYDROGEN PEROXIDE IN DARKNESS - IMPLICATIONS FOR THE MECHANISM OF DEGRADATION OF THE D1 PROTEIN UNDER ILLUMINATION
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SPECIFIC DEGRADATION OF THE D1 PROTEIN OF PHOTOSYSTEM II BY TREATMENT WITH HYDROGEN PEROXIDE IN DARKNESS - IMPLICATIONS FOR THE MECHANISM OF DEGRADATION OF THE D1 PROTEIN UNDER ILLUMINATION

机译:过氧化氢处理暗淡过氧化氢对光化学II的D1蛋白质的特异性降解-照明条件下D1蛋白质的降解机理

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摘要

The D1 protein of the photosystem II (PSII) reaction center has a rapid turnover and is specifically degraded under illumination in vivo. When isolated PSII membranes were treated in darkness with 10 mM hydrogen peroxide (H2O2), an active form of oxygen that is generated at the acceptor side of PSII under illumination, proteins of the PSII reaction center were specifically damaged in almost the same way as observed under illumination with strong light. The D1 protein and, to a lesser extent, the D2 protein were degraded to specific fragments, and cross-linked products (the covalently linked adduct of the D1 protein and the alpha subunit of cytochrome b(559) and the heterodimer of the D1 and D2 proteins) were generated concomitantly. The site of cleavage of the D1 protein that gave rise to a major fragment of 22 kDa was located in the loop that connects membrane-spanning helixes IV and V. Treatment with H2O2 caused the same damage to proteins in isolated thylakoids and in core complexes that contained the non-heme iron at the acceptor side, but not in isolated reaction centers depleted of the iron. From these observations and the effects of reagents that are known to interact with the non-heme iron, it is suggested that the damage to proteins is caused by oxygen radicals generated by the non-heme iron in the Fe(II) state in a reaction with H2O2. It is proposed, moreover, that a similar mechanism is operative during the selective and specific degradation of the D1 protein under illumination.
机译:光系统II(PSII)反应中心的D1蛋白具有快速更新,并在体内光照下被特异性降解。当在黑暗中用10 mM过氧化氢(H2O2)处理过分离的PSII膜时,过氧化氢是在光照下在PSII受体侧产生的一种活性形式的氧气,特异性地破坏PSII反应中心的蛋白质的方式与观察到的相同在强光照射下。 D1蛋白和D2蛋白在较小程度上降解为特定片段,并交联产物(D1蛋白与细胞色素b(559)的α亚基和D1的异二聚体的共价连接的加合物。伴随产生D2蛋白。 D1蛋白质的切割位点产生了22 kDa的主要片段,位于连接跨膜螺旋IV和V的环中。H2O2处理对分离的类囊体和核心复合物中的蛋白质造成相同的破坏,受体侧含有非血红素铁,但在贫铁的孤立反应中心中没有。从这些观察结果以及已知与非血红素铁相互作用的试剂的影响,可以认为对蛋白质的损害是由非血红素铁在反应中以Fe(II)态产生的氧自由基引起的。用过氧化氢。此外,提出了在光照下D1蛋白的选择性和特异性降解期间类似的机制起作用。

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