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低能量叶绿素 CP29 的带形不均匀性:不存在混合结合位点和激子相互作用。

Band shape heterogeneity of the low-energy chlorophylls of CP29: absence of mixed binding sites and excitonic interactions.

机构信息

Istituto di Biofisica del CNR, sede di Milano, e Dipartimento di Biologia, Universita degli Studi di Milano, via G. Celoria 26, 20133 Milano, Italy.

出版信息

Biochemistry. 2010 Feb 9;49(5):882-92. doi: 10.1021/bi901478f.

Abstract

A number of spectroscopic characteristics of three almost isoenergetic, red-shifted chlorophylls (chls) in the PS II antenna complex CP29 are investigated with the aim of (i) determining whether their band shapes are substantially identical or not, (ii) addressing the topical problem of whether they are involved in excitonic interactions with other chls, and (iii) establishing whether their binding sites may be defined as "mixed" with respect to their capacity to bind chls a and b. The three chls A2-CHL612, A3-CHL613, and B3-CHL614 were analyzed after in vitro apoprotein-pigment reconstitution using the CP29 coding sequence from Arabidopsis thaliana for both the wild-type and mutant complexes. Difference spectra thermal broadening analyses indicated that the half-bandwidths varied between 12 and 15 nm (at room temperature), due mainly to differences in the optical reorganization energy (25-40 cm(-1)). Moreover, only the A2 chl displayed an intense vibrational band in the 300-600 cm(-1) interval from the 0-0 transition. We conclude that within the red absorbing (approximately 680 nm) antenna chls of a single chl-protein complex a marked spectral band shape heterogeneity exists. By analysis of the absorption and circular dichroism spectra no evidence was found of significantly strong excitonic interactions. The single gene mutation of the A3 and B3 binding sites causes absorption changes in both the long wavelength chl a absorbing region and in the chl b spectral region. This has previously been observed and was attributed to "mixed" chl a/b binding sites [Bassi, R., Croce, R., Cugini, D., and Sandona, D. (1999) Proc. Natl. Acad. Sci. U.S.A. 96,10056-10061]. This interpretation, while in principle not being unreasonable, is shown to be incorrect for these two chls.

摘要

研究了 PS II 天线复合物 CP29 中三个几乎等能量、红移叶绿素(chl)的一些光谱特征,目的是:(i)确定它们的带型是否基本相同;(ii)解决它们是否与其他 chls 发生激子相互作用的热门问题;(iii)确定它们的结合位点是否可以定义为与 chl a 和 b 的结合能力“混合”。使用来自拟南芥的 CP29 编码序列对野生型和突变复合物进行体外脱辅基蛋白-色素重建后,分析了三个 chl A2-CHL612、A3-CHL613 和 B3-CHL614。差光谱热展宽分析表明,半带宽在 12 到 15nm 之间变化(在室温下),主要是由于光学重组能(25-40cm-1)的差异。此外,只有 A2 chl 在 0-0 跃迁的 300-600cm-1 区间显示出强烈的振动带。我们得出结论,在单个 chl-蛋白复合物的红色吸收(约 680nm)天线 chls 中存在明显的光谱带型异质性。通过吸收和圆二色性光谱的分析,没有发现明显的强激子相互作用的证据。A3 和 B3 结合位点的单个基因突变导致长波长 chl a 吸收区域和 chl b 光谱区域的吸收变化。这以前已经观察到,并归因于“混合”chl a/b 结合位点[Bassi,R.,Croce,R.,Cugini,D.和 Sandona,D.(1999)Proc。Natl。Acad。Sci。美国 96,10056-10061]。虽然从原则上讲,这种解释并不是不合理的,但对于这两个 chls 来说,这种解释是不正确的。

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