首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Temporally and spectrally resolved subpicosecond energy transfer within the peripheral antenna complex (LH2) and from LH2 to the core antenna complex in photosynthetic purple bacteria.
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Temporally and spectrally resolved subpicosecond energy transfer within the peripheral antenna complex (LH2) and from LH2 to the core antenna complex in photosynthetic purple bacteria.

机译:在光合紫色细菌中在外围天线复合体(LH2)内以及从LH2到核心天线复合体的时间和光谱分辨的亚皮秒能量转移。

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摘要

We report studies of energy transfer from the 800-nm absorbing pigment (B800) to the 850-nm absorbing pigment (B850) of the LH2 peripheral antenna complex and from LH2 to the core antenna complex (LH1) in Rhodobacter (Rb.) sphaeroides. The B800 to B850 process was studied in membranes from a LH2-reaction center (no LH1) mutant of Rb. sphaeroides and the LH2 to LH1 transfer was studied in both the wild-type species and in LH2 mutants with blue-shifted B850. The measurements were performed by using approximately 100-fs pulses to probe the formation of acceptor excitations in a two-color pump-probe measurement. Our experiments reveal a B800 to B850 transfer time of approximately 0.7 ps at 296 K and energy transfer from LH2 to LH1 is characterized by a time constant of approximately 3 ps at 296 K and approximately 5 ps at 77 K. In the blue-shifted B850 mutants, the transfer time from B850 to LH1 becomes gradually longer with increasing blue-shift of the B850 band as a result of the decreasing spectral overlap between the antennae. The results have been used to produce a model for the association between the ring-like structures that are characteristic of both the LH2 and LH1 antennae.
机译:我们报告了在球形红球菌(Rb。)球形中从800 nm吸收颜料(B800)到LH2外围天线复合体的850 nm吸收颜料(B850)以及从LH2到核心天线复合体(LH1)的能量转移的研究。 。从Rb的LH2反应中心(无LH1)突变体在膜中研究了B800至B850的过程。在野生型物种和蓝移B850的LH2突变体中都研究了球菌和LH2到LH1的转移。通过使用大约100 fs的脉冲执行探测,以探测双色泵浦探测测量中受体激发的形成。我们的实验表明,B800到B850在296 K时的传输时间约为0.7 ps,从LH2到LH1的能量传输的特征在于,时间常数在296 K时约为3 ps,在77 K时约为5 ps。在蓝移的B850中突变体,由于天线之间频谱重叠的减少,随着B850波段蓝移的增加,从B850到LH1的转移时间逐渐变长。该结果已用于生成一个模型,用于同时具有LH2和LH1天线特征的环状结构之间的关联。

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