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来自沼泽红假单胞菌的高光和低光生长细胞中不同外周光捕获复合物的表征

Characterization of the different peripheral light-harvesting complexes from high- and low-light grown cells from Rhodopseudomonas palustris.

作者信息

Gall A, Robert B

机构信息

Section de Biophysique des Protéines et des Membranes, DBCM CEA and URA 2096 CNRS, Centre d'Etudes de Saclay, Gif-sur-Yvette, France.

出版信息

Biochemistry. 1999 Apr 20;38(16):5185-90. doi: 10.1021/bi982486q.

DOI:10.1021/bi982486q
PMID:10213625
Abstract

In this paper we demonstrate that the spectroscopically different peripheral light-harvesting complexes from Rhodopseudomonas palustris, strain 2.6.1, isolated from high- and low-light grown cells have widely differing bacteriochlorophyll a (BChl a) resonance Raman spectra in the high-frequency carbonyl region (1550-1750 cm-1). Complexes synthesized in low-light grown cells exhibit Raman spectra characteristic of B800-850 and B800-820 complexes, depending on the excitation conditions. The in vivo strategy for low-light adaptation in this bacterium is thus somewhat different from that generally encountered in the Rhodospirillaceae. In these bacteria, as typified by Rps. acidophila and Rps. cryptolactis, low-light conditions induce the synthesis of B800-820 only complexes in which the hydrogen bonds between the acetyl carbonyl and the B850 binding pocket are broken, inducing changes in the absorption properties of the monomeric bacteriochlorophylls. In the case of Rps. palustris, additional spectral effects occur due to the coupling of the electronic levels of the differently interacting dimers. The extensive use of differential alpha/beta-polypeptide expression [Tadros et al. (1993) Eur. J. Biochem. 217, 867-875] thus allows Rps. palustris to alter its BChl a binding site environments causing the observed spread of BChl a Qy transitions, ranging from 801 to 856 nm.

摘要

在本文中,我们证明,从高光和低光生长细胞中分离出的来自沼泽红假单胞菌2.6.1菌株的光谱学上不同的外周光捕获复合物,在高频羰基区域(1550 - 1750 cm⁻¹)具有差异很大的细菌叶绿素a(BChl a)共振拉曼光谱。在低光生长细胞中合成的复合物根据激发条件表现出B800 - 850和B800 - 820复合物的拉曼光谱特征。因此,这种细菌在体内适应低光的策略与红螺菌科中通常遇到的策略有所不同。在这些细菌中,以嗜酸红假单胞菌和隐乳糖红假单胞菌为代表,低光条件仅诱导B800 - 820复合物的合成,其中乙酰羰基与B850结合口袋之间的氢键断裂,导致单体细菌叶绿素的吸收特性发生变化。就沼泽红假单胞菌而言,由于不同相互作用二聚体的电子能级耦合,会出现额外的光谱效应。因此,广泛使用差异α/β - 多肽表达[塔德罗斯等人(1993年)《欧洲生物化学杂志》217卷,867 - 875页]使沼泽红假单胞菌能够改变其BChl a结合位点环境,导致观察到的BChl a Qy跃迁范围从801到856 nm。

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