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The origin of the unusual Q(y) red shift in LH1-RC complexes from purple bacteria Thermochromatium tepidum as revealed by Stark absorption spectroscopy

机译:斯塔克吸收光谱法揭示了紫色细菌温色嗜铬菌在LH1-RC复合物中异常Q(y)红移的起源

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摘要

Native LH1-RC of photosynthetic purple bacteria Thermochromatium (Tch.) tepidum, B915, has an ultra-red BChl a Q absorption. Two blue-shifted complexes obtained by chemical modification, B893 and B882, have increasing full widths at half maximum (FWHM) and decreasing transition dipole oscillator strength. 77 K Stark absorption spectroscopy studies were employed for the three complexes, trying to understand the origin of the 915 nm absorption. We found that Tr(δα) and |δμ| of both Q and carotenoid (Car) bands are larger than for other purple bacterial LH complexes reported previously. Moreover, the red shifts of the Q bands are associated with (1) increasing Tr(δα) and |δμ| of the Q band, (2) the red shift of the Car Stark signal and (3) the increasing |δμ| of the Car band. Based on the results and the crystal structure, a combined effect of exciton-charge transfer (CT) states mixing, and inhomogeneous narrowing of the BChl a site energy is proposed to be the origin of the 915 nm absorption. CT-exciton state mixing has long been found to be the origin of strong Stark signal in LH1 and special pair, and the more extent of the mixing in Tch. tepidum LH1 is mainly the consequence of the shorter BChl-BChl distances. The less flexible protein structure results in a smaller site energy disorder (inhomogeneous narrowing), which was demonstrated to be able to influence |δμ| and absorption.
机译:光合紫色细菌天然嗜铬菌(Tch。tepidum)B915的天然LH1-RC具有超红色BChl a Q吸收。通过化学修饰获得的两个蓝移复合物B893和B882具有增加的半峰全宽(FWHM)和降低的跃迁偶极子振荡器强度。对这三种络合物进行了77 K Stark吸收光谱研究,试图了解915 nm吸收的起源。我们发现Tr(δα)和|δμ| Q和类胡萝卜素(Car)谱带的数量都大于先前报道的其他紫色细菌LH复合物。此外,Q波段的红移与(1)增大Tr(δα)和|δμ|有关。 Q波段,(2)车斯塔克信号的红移和(3)|δμ|的增加汽车乐队。根据结果​​和晶体结构,提出了激子-电荷转移(CT)混合状态和BChl位点能量不均匀变窄的综合作用,是915 nm吸收的起源。长期以来,CT激子态混合一直是LH1和特殊对中强Stark信号的起源,而Tch中混合程度更大。温热的LH1主要是BChl-BChl距离较短的结果。较不灵活的蛋白质结构导致较小的位能紊乱(不均匀变窄),已证明能够影响|δμ|。和吸收。

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