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Antenna mixing in photosynthetic membranes from Phaeospirillum molischianum

机译:杂螺旋藻光合膜中的天线混合

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We have investigated the adaptation of the light-harvesting system of the photosynthetic bacterium Phaeospirillum molischianum (DSM120) to very low light conditions. This strain is able to respond to changing light conditions by differentially modulating the expression of a family of puc operons that encode for peripheral light-harvesting complex (LH2) polypeptides. This modulation can result in a complete shift between the production of LH2 complexes absorbing maximally near 850 nm to those absorbing near 820 nm. In contradiction to prevailing wisdom, analysis of the LH2 rings found in the photosynthetic membranes during light adaptation are shown to have intermediate spectral and electrostatic properties. By chemical cross-linking and mass-spectrometry we show that individual LH2 rings and subunits can contain a mixture of polypeptides derived from the different operons. These observations show that polypeptide synthesis and insertion into the membrane are not strongly coupled to LH2 assembly. We show that the light-harvesting complexes resulting from this mixing could be important in maintaining photosynthetic efficiency during adaptation.
机译:我们已经研究了光合细菌Phaeospirillum molischianum(DSM120)的光收集系统对非常弱的光照条件的适应性。该菌株能够通过差异调节编码周边光收集复合物(LH2)多肽的puc操纵子家族的表达来响应不断变化的光照条件。这种调制可以导致最大吸收在850 nm附近吸收的LH2复合物与吸收在820 nm附近吸收的LH2复合物之间发生完全转变。与普遍的看法相反,在光适应过程中在光合膜中发现的LH2环的分析显示具有中间的光谱和静电性质。通过化学交联和质谱,我们表明单个LH2环和亚基可以包含衍生自不同操纵子的多肽的混合物。这些观察结果表明,多肽的合成和向膜中的插入与LH2装配没有强耦合。我们表明,这种混合产生的采光复合物可能在保持适应过程中的光合作用效率方面很重要。

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