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球形红假单胞菌反应中心中生色团的取向。二聚体初级电子供体两个吸收带的证据。

Orientation of chromophores in reaction centers of Rhodopseudomonas sphaeroides. Evidence for two absorption bands of the dimeric primary electron donor.

作者信息

Vermeglio A, Clayton R K

出版信息

Biochim Biophys Acta. 1976 Dec 6;449(3):500-15. doi: 10.1016/0005-2728(76)90159-6.

Abstract

Chromatophores from Rhodopseudomonas sphaeroides were oriented by allowing aqueous suspensions to dry on glass plates. Orientation of reaction center pigments was investigated by studying the linear dichroism of chromatophores in which the absorption by antenna bacteriochlorophyll had been attenuated through selective oxidation. Alternatively the light-induced absorbance changes, in the ranges 550-650 and 700-950nm, were studied in untreated chromatophores. The long wave transition moment of reaction center bacteriochlorophyll (P-870) was found to be nearly parallel to the plane of the membrane, whereas the long wave transition moments of bacteriopheophytin are polarized out of this plane. For light-induced changes the linear dichroic ratios, defined as deltaav/deltaah, are nearly the same for untreated and for oxidized chromatophores. Typical values are 1.60 at 870 nm, 0.80 at 810nm, 1.20 at 790 nm, 0.70 at 765 nm, 0.30 at 745 nm , and 0.50 at 600 nm. The different values for the absorbance decrease at 810 nm (0.80) and the increase at 790 nm (1.20) are incompatible with the hypothesis that these changes are due to the blue-shift of a single band. We propose that the decreases at 870 and 810 nm reflect bleaching of the two components of a bacteriochlorophyll dimer, the "special pair" that shares in the photochemical donation of a single electron. The increase at 790 nm then represents the appearance of a monomer band in place of the dimer spectrum, as a result of electron donation. This hypothesis is consistent with available data on circular dichroism. It is confirmed by the presence of a shoulder at 810 nm in the absorption spectrum of reaction centers at low temperature; this band disappears upon photooxidation of the reaction centers. For the changes near 760 nm, associated with bacteriopheophytin, the polarization and the shape of the "light-dark" difference spectrum (identical to the first derivative of the absorption spectrum) show that the 760 nm band undergoes a light-induced shift to greater wavelengths.

摘要

通过让球形红假单胞菌的载色体水悬浮液在玻璃板上干燥来使其定向。通过研究载色体的线性二色性来研究反应中心色素的定向,其中天线细菌叶绿素的吸收通过选择性氧化而减弱。或者,在未经处理的载色体中研究了550 - 650纳米和700 - 950纳米范围内的光诱导吸光度变化。发现反应中心细菌叶绿素(P - 870)的长波跃迁矩几乎与膜平面平行,而细菌脱镁叶绿素的长波跃迁矩则偏离该平面极化。对于光诱导变化,定义为δav/δah的线性二色性比率在未经处理的和氧化的载色体中几乎相同。典型值在870纳米处为1.60,在810纳米处为0.80,在790纳米处为1.20,在765纳米处为0.70,在745纳米处为0.30,在600纳米处为0.50。在810纳米处吸光度降低(0.80)和在790纳米处吸光度增加(1.20)的不同值与这些变化是由于单个谱带蓝移的假设不相符。我们提出,在870和810纳米处的降低反映了细菌叶绿素二聚体的两个组分的漂白,即参与单个电子光化学供体作用的“特殊对”。由于电子供体作用,790纳米处的增加则代表了单体谱带取代二聚体光谱的出现。这一假设与关于圆二色性的现有数据一致。它通过低温下反应中心吸收光谱中810纳米处存在一个肩峰得到证实;该谱带在反应中心光氧化时消失。对于与细菌脱镁叶绿素相关的760纳米附近的变化,“亮 - 暗”差示光谱(与吸收光谱的一阶导数相同)的极化和形状表明,760纳米谱带经历了光诱导的向更长波长的位移。

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