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Investigations of the role of the main light-harvesting chlorophyll- protein complex in thylakoid membranes. Reconstitution of depleted membranes from intermittent-light-grown plants with the isolated complex

机译:调查主要的光收集叶绿素蛋白复合体在类囊体膜中的作用。用分离的复合物重建间歇性光生植物的枯竭膜

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摘要

The functions of the light-harvesting complex of photosystem II (LHC- II) have been studied using thylakoids from intermittent-light-grown (IML) plants, which are deficient in this complex. These chloroplasts have no grana stacks and only limited lamellar appression in situ. In vitro the thylakoids showed limited but significant Mg2+-induced membrane appression and a clear segregation of membrane particles into such regions. This observation, together with the immunological detection of small quantities of LHC-II apoproteins, suggests that the molecular mechanism of appression may be similar to the more extensive thylakoid stacking seen in normal chloroplasts and involve LHC-II polypeptides directly. To study LHC-II function directly, a sonication- freeze-thaw procedure was developed for controlled insertion of purified LHC-II into IML membranes. Incorporation was demonstrated by density gradient centrifugation, antibody agglutination tests, and freeze-fracture electron microscopy. The reconstituted membranes, unlike the parent IML membranes, exhibited both extensive membrane appression and increased room temperature fluorescence in the presence of cations, and a decreased photosystem I activity at low light intensity. These membranes thus mimic normal chloroplasts in this regard, suggesting that the incorporated LHC-II interacts with photosystem II centers in IML membranes and exerts a direct role in the regulation of excitation energy distribution between the two photosystems.
机译:已经使用间歇光生(IML)植物的类囊体研究了光系统II(LHC-II)的光收集复合物的功能,该类植物在该复合物中缺乏。这些叶绿体没有颗粒堆积,并且只有有限的原位层状压迫。在体外,类囊体显示出有限但显着的Mg2 +诱导的膜表达,并清楚地将膜颗粒分离到这些区域。该观察结果,以及对少量LHC-II载脂蛋白的免疫学检测表明,表达的分子机制可能与正常叶绿体中更广泛的类囊体堆积相似,并且直接涉及LHC-II多肽。为了直接研究LHC-II的功能,开发了超声-冻融程序以控制纯化的LHC-II插入IML膜。通过密度梯度离心,抗体凝集试验和冷冻断裂电子显微镜证实了掺入。与母体IML膜不同,重组膜在阳离子存在下既表现出广泛的膜表达,又表现出增加的室温荧光,并且在低光强度下光系统I活性降低。因此,这些膜在这方面模仿了正常的叶绿体,表明掺入的LHC-II与IML膜中的光系统II中心相互作用,并在调节两个光系统之间的激发能分布中发挥直接作用。

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