首页> 外文OA文献 >CHEMICALLY MODIFIED PHOTOSYNTHETIC BACTERIAL REACTION CENTERS: CIRCULAR DICHROISM, RAMAN RESONANCE, LOW TEMPERATURE ABSORPTION, FLUORESCENCE AND ODMR SPECTRA AND POLYPEPTIDE COMPOSITION OF BOROHYDRIDE TREATED REACTION CENTERS FROM Rhodobacter sphaeroides R26
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CHEMICALLY MODIFIED PHOTOSYNTHETIC BACTERIAL REACTION CENTERS: CIRCULAR DICHROISM, RAMAN RESONANCE, LOW TEMPERATURE ABSORPTION, FLUORESCENCE AND ODMR SPECTRA AND POLYPEPTIDE COMPOSITION OF BOROHYDRIDE TREATED REACTION CENTERS FROM Rhodobacter sphaeroides R26

机译:化学修饰的光合细菌反应中心:圆二色性,共振拉曼,低温吸收,荧光和ODmR spECTRa和处理过的硼氢化反应的多肽组合物FROm CENTERs类球红细菌R26

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摘要

Reaction centers from Rhodobacter sphaeroides have been modified by treatment with sodium borohydride similar to the original procedure [Ditson et al., Biochim. Biophys. Acta 766, 623 (1984)], and investigated spectroscopically and by gel electrophoresis.(1) Low temperature (1.2 K) absorption, fluorescence, absorption- and fluorescence-detected ODMR, and microwave-induced singlet-triplet absorption difference spectra (MIA) suggest that the treatment produces a spectroscopically homogeneous preparation with one of the ‘additional’ bacteriochlorophylls being removed. The modification does not alter the zero field splitting parameters of the primary donor triplet (TP870).(2) From the circular dichroism and Raman resonance spectra in the1500–1800 cm-1 region, the removed pigment is assigned to BchlM, e.g. the "extra" Bchl on the "inactive" M-branch.(3) A strong coupling among all pigment molecules is deduced from the circular dichroism spectra, because pronounced band-shifts and/or intensity changes occur in the spectral components assigned to all pigments. This is supported by distinct differences among the MIA spectra of untreated and modified reaction centers, as well as by Raman resonance.(4) The modification is accompanied by partial proteolytic cleavage of the M-subunit. The preparation is thus spectroscopically homogeneous, but biochemically heterogenous.
机译:球形红细菌红球菌的反应中心已通过用硼氢化钠处理而被修饰,类似于原始方法[Ditson et al。,Biochim。生物物理学。 Acta 766,623(1984)],并通过光谱和凝胶电泳进行了研究。(1)低温(1.2 K)吸收,荧光,吸收和荧光检测的ODMR以及微波诱导的单重态-三重态吸收差光谱(MIA) )表明该处理产生了一种光谱均质的制剂,其中一种``额外的''细菌叶绿素被去除了。修改不会改变主要供体三元组(TP870)的零场分裂参数。(2)根据1500-1800 cm-1区域的圆二色性和拉曼共振光谱,将去除的颜料分配给BchlM,例如(3)从圆二色性光谱中推断出所有颜料分子之间的强耦合,因为分配给所有分子的光谱成分中发生了明显的带移和/或强度变化。颜料。未经处理和修饰的反应中心的MIA光谱之间存在明显差异,以及拉曼共振也支持了这一点。(4)修饰伴随着M亚基的部分蛋白水解切割。因此,该制剂在光谱上是均质的,但是在生物化学上是异质的。

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