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首页> 外文期刊>Photosynthesis Research: An International Journal >Rapid purification of photosystem I chlorophyll-binding proteins by differential centrifugation and vertical rotor
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Rapid purification of photosystem I chlorophyll-binding proteins by differential centrifugation and vertical rotor

机译:差速离心和垂直转子快速纯化光系统I叶绿素结合蛋白

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Photosystem I (PSI), which consists of a core complex and light-harvesting complex I (LHCI), is an important multisubunit pigment-protein complex located in the photosynthetic membranes of cyanobacteria, algae and plants. In the present study, we described a rapid method for isolation and purification of PSI and its subfractions. For purification of PSI, crude PSI was first prepared by differential centrifugation, which was applicable on a large scale at low cost. Then PSI was purified by sucrose gradient ultracentrifugation in a vertical rotor to reduce the centrifugation time from more than 20 h when using a swinging bucket rotor to only 3 h. Similarly, for subfractionation of PSI into the core complex and light-harvesting complex I, sucrose gradient ultracentrifugation in a vertical rotor was also used and it took only 4 h to obtain the PSI core, LHCI-680, and LHCI-730 at the same time. The resulting preparations were characterized by sodium dodecyl-sulfate-polyacrylamide gel electrophoresis (SDS-PAGE), absorption spectroscopy, and 77 K fluorescence spectroscopy. In addition, their pigment composition was analyzed by high-performance liquid chromatography and the results showed that each Lhca could bind 1.5-1.6 luteins, 1.0 Violaxanthins, and 0.8-1.1 beta-carotenes on average, demonstrating that fewer carotenoids were released than with the slower traditional centrifugation. These results showed that the rapid isolation procedure, based on differential centrifugation and sucrose gradient ultracentrifugation in a vertical rotor, was efficient, and it should significantly facilitate preparation and studies of plant PSI. Moreover, the vertical rotor, rather than the swinging bucket rotor, may be a good choice for isolation of some other proteins.
机译:由核心复合物和光捕获复合物I(LHCI)组成的光系统I(PSI)是位于蓝藻,藻类和植物光合膜上的重要的多亚基色素-蛋白质复合物。在本研究中,我们描述了一种分离和纯化PSI及其亚组分的快速方法。为了纯化PSI,首先通过差速离心制备粗制的PSI,其可以低成本大规模地应用。然后,通过在垂直转子中进行蔗糖梯度超速离心来纯化PSI,以将离心时间从使用摆式转子时的20多小时减少到仅3小时。类似地,为了将PSI细分为核心复合物和光捕获复合物I,还使用了垂直转子中的蔗糖梯度超速离心,并且仅用4小时即可同时获得PSI核心,LHCI-680和LHCI-730时间。通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE),吸收光谱和77 K荧光光谱对所得制剂进行表征。此外,通过高效液相色谱法分析了它们的色素组成,结果表明,每个Lhca均可以平均结合1.5-1.6叶黄素,1.0紫黄质和0.8-1.1β-胡萝卜素,这表明与Lhca相比,其释放的类胡萝卜素更少传统离心速度较慢。这些结果表明,基于垂直转子上的差速离心和蔗糖梯度超速离心的快速分离程序是有效的,并且应大大促进植物PSI的制备和研究。此外,垂直转子而不是摆桶转子可能是分离某些其他蛋白质的好选择。

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