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Induction of Acclimative Proteolysis of the Light-Harvesting Chlorophyll a/b Protein of Photosystem II in Response to Elevated Light Intensities

机译:诱导集光蛋白水解 光系统II的叶绿素a / b蛋白 响应高光强度

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摘要

Most plants have the ability to respond to fluctuations in light to minimize damage to the photosynthetic apparatus. A proteolytic activity has been discovered that is involved in the degradation of the major light-harvesting chlorophyll a/b-binding protein of photosystem II (LHCII) when the antenna size of photosystem II is reduced upon acclimation of plants from low to high light intensities. This ATP-dependent proteolytic activity is of the serine or cysteine type and is associated with the outer membrane surface of the stroma-exposed thylakoid regions. The identity of the protease is not known, but it does not correspond to the recently identified chloroplast ATP-dependent proteases Clp and FtsH, which are homologs to bacterial enzymes. The acclimative response shows a delay of 2 d after transfer of the leaves to high light. This lag period was shown to be attributed to expression or activation of the responsible protease. Furthermore, the LHCII degradation was found to be regulated at the substrate level. The degradation process involves lateral migration of LHCII from the appressed to the nonappressed thylakoid regions, which is the location for the responsible protease. Phosphorylated LHCII was found to be a poor substrate for degradation in comparison with the unphosphorylated form of the protein. The relationship between LHCII degradation and other regulatory proteolytic processes in the thylakoid membrane, such as D1-protein degradation, is discussed.
机译:大多数植物都有能力应对光的波动,以最大程度地减少对光合作用装置的损害。当植物从低光强适应后,光系统II的天线尺寸减小时,发现了一种蛋白水解活性,参与了光系统II(LHCII)的主要光收集叶绿素a / b结合蛋白的降解。 。该ATP依赖性蛋白水解活性为丝氨酸或半胱氨酸类型,并与基质暴露的类囊体区域的外膜表面相关。蛋白酶的身份未知,但与最近鉴定出的与细菌酶同源的叶绿体ATP依赖性蛋白酶Clp和FtsH不对应。叶片转移到高光后,适应性反应显示延迟2 d。已显示该滞后期归因于负责任蛋白酶的表达或激活。此外,发现LHCII降解在底物水平受到调节。降解过程涉及横向 LHCII从贴壁类囊体迁移到未压实类囊体 区域,这是负责任蛋白酶的位置。 发现磷酸化的LHCII是降解的不良底物 与蛋白质的非磷酸化形式相比。的 LHCII降解与其他调节蛋白水解之间的关系 类囊体膜中的过程,例如D1蛋白降解,是 讨论过。

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