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大麦光系统I的叶绿素-蛋白质复合体

Chlorophyll-protein complexes of barley photosystem I.

作者信息

Bassi R, Simpson D

出版信息

Eur J Biochem. 1987 Mar 2;163(2):221-30. doi: 10.1111/j.1432-1033.1987.tb10791.x.

Abstract

Photosystem I (PSI) preparations with a chlorophyll a/b ratio of 6.0 were isolated from barley thylakoids using two different methods. The high-molecular-mass complex (CP1a) which is resolved by non-denaturing gel electrophoresis had the same properties as a PSI preparation (PSI-200) isolated by Triton X-100 solubilisation of thylakoids followed by sucrose gradient ultracentrifugation. This material had a chlorophyll:P700 ratio of 208:1 and was composed of three different chlorophyll-protein complexes which could be separated from each other by solubilising the PSI preparation in dodecyl maltoside followed by sucrose gradient ultracentrifugation. Approximately half of the chlorophyll, including all the chlorophyll b, was located in two antenna complexes designated LHCI-680 and LHCI-730, which were identified by their characteristic low-temperature fluorescence emission spectra. The rest of the chlorophyll a was associated with the PSI reaction centre, P700 Chla-P1, which fluoresced at 720 nm. Each chlorophyll-protein complex had a unique polypeptide composition and characteristic circular dichroic and absorption spectra. The use of dodecyl maltoside instead of dodecyl sulphate resulted in a less denatured form of LHCI-680, which fluoresced at 690 nm at 77 K. One of the sucrose gradient fractions contained a complex consisting of only LHCI-730 and P700 Chla-P1 which fluoresced at 731 nm, indicating that LHCI-730 is structurally associated with P700 Chla-P1 and quenches its fluorescence. Approximately three-quarters of the light-harvesting antenna chlorophyll was in LHCI-730, but only about one-quarter of the normal complement of LHCI-730 was required to quench the reaction centre. By reducing the amount of Triton relative to the chlorophyll concentration, a PSI preparation (chlorophyll a/b ratio of 3.5) with a chlorophyll:P700 ratio of 300:1 was isolated. It contained no photosystem II, but a significant amount of LHCII which was functionally connected to the PSI reaction centre. Reconstitution studies demonstrated that excitation energy transfer from LHCII to PSI requires the presence of LHCI-680, and we propose that, in PSI, the following linear excitation energy transfer sequence occurs: LHCII----LHCI-680----LHCI-730----P700 Chla-P1.

摘要

采用两种不同方法从大麦类囊体中分离出叶绿素a/b比值为6.0的光系统I(PSI)制剂。通过非变性凝胶电泳分离得到的高分子量复合物(CP1a)与通过用Triton X-100溶解类囊体然后进行蔗糖梯度超速离心分离得到的PSI制剂(PSI-200)具有相同的性质。该物质的叶绿素与P700的比值为208:1,由三种不同的叶绿素-蛋白质复合物组成,通过在十二烷基麦芽糖苷中溶解PSI制剂然后进行蔗糖梯度超速离心可以将它们彼此分离。大约一半的叶绿素,包括所有的叶绿素b,位于两个分别命名为LHCI-680和LHCI-730的天线复合物中,它们通过其特征性的低温荧光发射光谱得以鉴定。其余的叶绿素a与PSI反应中心P700 Chla-P1相关联,其在720 nm处发出荧光。每个叶绿素-蛋白质复合物都有独特的多肽组成以及特征性的圆二色性和吸收光谱。使用十二烷基麦芽糖苷而非十二烷基硫酸盐导致LHCI-680的变性程度较低,其在77 K时于690 nm处发出荧光。其中一个蔗糖梯度级分含有仅由LHCI-730和P700 Chla-P1组成的复合物,其在731 nm处发出荧光,这表明LHCI-730在结构上与P700 Chla-P1相关联并淬灭其荧光。大约四分之三的捕光天线叶绿素存在于LHCI-730中,但仅需要约四分之一正常含量的LHCI-730来淬灭反应中心。通过相对于叶绿素浓度减少Triton的量,分离得到了叶绿素与P700比值为300:1的PSI制剂(叶绿素a/b比值为3.5)。它不含光系统II,但含有大量在功能上与PSI反应中心相连的LHCII。重组研究表明,从LHCII到PSI的激发能转移需要LHCI-680的存在,并且我们提出,在PSI中,发生以下线性激发能转移序列:LHCII----LHCI-680----LHCI-730----P700 Chla-P1。

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