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77K下拉伸的聚乙烯醇薄膜中微藻、发育中的类囊体和分离的色素-蛋白复合物的线性二色性

Linear dichroism of microalgae, developing thylakoids and isolated pigment-protein complexes in stretched poly(vinyl alcohol) films at 77 K.

作者信息

Biggins J, Svejkovský J

出版信息

Biochim Biophys Acta. 1980 Oct 3;592(3):565-76. doi: 10.1016/0005-2728(80)90101-2.

Abstract

A variety of unicellular algae, thylakoids from higher plants in different stages of maturity and isolated pigment-protein complexes were oriented in stretched polyvinyl alcohol films. Low temperature linear dichroism (LD) spectra of Chlorella pyrenoidosa and higher plant thylakoids in the films were very similar to those obtained after orientation of similar samples using magnetic or electric fields. Positive LD bands corresponding to Chl a (670) and (682) and negative bands due to Chl a (658) and Chl b(648) were resolved in spectra of the light harvesting Chl a/b protein. Chl b (648) and Chl a (658) and (670) were not seen in the LD spectrum of thylakoids from plants grown in intermittent light, the Chl b-less mutant of barley, Euglena gracilis or the cyanobacteria, Phormidium luridum and Anacystis nidulans, but did appear upon chloroplast maturation in Romaine lettuce and during the greening of etiolated and intermittent light plants. The highly oriented long wavelength Chl a (682) in the light-harvesting complex may represent residual PS II whose peak dichroism is centered at 681 nm. The PS I preparation had a Chl a/b ratio of approx. 6 and the LD spectrum was positive with a maximum at 690-694 nm and a band of lower amplitude at 652 nm. The minor LD band was not observed in PS I preparations from organisms that lack chl b such as the cyanobacteria, intermittent light plants and the Chl b-less mutant of barley. We suggest that the 652 nm band is due to Chl b molecules associated with the antenna of PS I and are distinct from those on the light harvesting complex whose orientation is different. We also conclude that all the Chl a forms are oriented and that the long geometric axes of the pigment-protein complexes, as deduced from the configuration they assume in the stretched films, are axes that normally lie parallel to the plane of the native thylakoid.

摘要

多种单细胞藻类、处于不同成熟阶段的高等植物类囊体以及分离出的色素 - 蛋白质复合物被定向排列在拉伸的聚乙烯醇薄膜中。薄膜中蛋白核小球藻和高等植物类囊体的低温线性二向色性(LD)光谱与使用磁场或电场对类似样品进行定向排列后获得的光谱非常相似。在光捕获叶绿素a/b蛋白的光谱中,分辨出了对应于叶绿素a(670)和(682)的正LD带以及由于叶绿素a(658)和叶绿素b(648)产生的负带。在间歇光照下生长的植物、大麦的无叶绿素b突变体、纤细裸藻或蓝细菌 luridum和集胞藻的类囊体的LD光谱中未观察到叶绿素b(648)以及叶绿素a(658)和(670),但在长叶生菜的叶绿体成熟过程中以及黄化和间歇光照植物的绿化过程中确实出现了。光捕获复合物中高度定向的长波长叶绿素a(682)可能代表残余的光系统II,其峰值二向色性集中在681nm。光系统I制剂的叶绿素a/b比约为6,LD光谱为正,在690 - 694nm处有最大值,在652nm处有较低幅度的带。在缺乏叶绿素b的生物体(如蓝细菌、间歇光照植物和大麦的无叶绿素b突变体)的光系统I制剂中未观察到较小的LD带。我们认为652nm带是由于与光系统I天线相关的叶绿素b分子引起的,并且与光捕获复合物上的那些分子不同,其取向不同。我们还得出结论,所有叶绿素a形式都被定向,并且从它们在拉伸薄膜中所呈现的构型推断,色素 - 蛋白质复合物的长几何轴是通常与天然类囊体平面平行的轴。

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