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通过电子显微镜对光系统II放氧复合体23-kDa亚基进行定位

Localization of the 23-kDa subunit of the oxygen-evolving complex of photosystem II by electron microscopy.

作者信息

Boekema E J, Nield J, Hankamer B, Barber J

机构信息

Biophysical Chemistry, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, The Netherlands.

出版信息

Eur J Biochem. 1998 Mar 1;252(2):268-76. doi: 10.1046/j.1432-1327.1998.2520268.x.

Abstract

A dimeric photosystem II light-harvesting II super complex (PSII-LHCII SC), isolated by sucrose density gradient centrifugation, was previously structurally characterized [Boekema, E. J., Hankamer, B., Bald, D., Kruip, J., Nield, J., Boonstra, A. F., Barber, J. & Rögner, M. (1995) Proc. Natl Acad. Sci. USA 92, 175-179]. This PSII-LHCII SC bound the 33-kDa subunit of the oxygen-evolving complex (OEC), but lacked the 23-kDa and 17-kDa subunits of the OEC. Here the isolation procedure was modified by adding 1 M glycine betaine (1-carboxy-N,N,N-trimethylmethanaminium hydroxide inner salt) to the sucrose gradient mixture. This procedure yielded PSII-LHCII SC that contained both the 33-kDa and the 23-kDa subunits and had twice the oxygen-evolving capacity of the super complexes lacking the 23-kDa polypeptide. Addition of CaCl2 to PSII-LHCII SC with the 23-kDa subunit attached did not increase the oxygen-evolution rate. This suggests that the 23-kDa subunit is bound in a functional manner and is present in significant amounts. Over 5000 particle projections extracted from electron microscope images of negatively stained PSII-LHCII SC, isolated in the presence and absence of glycine betaine, were analyzed using single-particle image-averaging techniques. Both the 23-kDa and 33-kDa subunits could be visualized in top-view and side-view projections. In the side view the 23-kDa subunit is seen to protrude 0.5-1 nm further than the 33-kDa subunit, giving the PSII particle a maximal height of 9.5 nm. Measured from the centres of the masses, the two 33-kDa subunits associated with the dimeric PSII-LHCII SC are separated by 6.3 nm. The corresponding distance between the two 23-kDa subunits is 8.8 nm.

摘要

通过蔗糖密度梯度离心分离得到的二聚体光系统II捕光II超级复合物(PSII-LHCII SC),之前已进行过结构表征[Boekema, E. J., Hankamer, B., Bald, D., Kruip, J., Nield, J., Boonstra, A. F., Barber, J. & Rögner, M. (1995) Proc. Natl Acad. Sci. USA 92, 175 - 179]。该PSII-LHCII SC结合了放氧复合体(OEC)的33 kDa亚基,但缺少OEC的23 kDa和17 kDa亚基。在此,通过向蔗糖梯度混合物中添加1 M甘氨酸甜菜碱(1-羧基-N,N,N-三甲基甲铵氢氧化物内盐)对分离程序进行了改进。此程序得到的PSII-LHCII SC既包含33 kDa亚基也包含23 kDa亚基,并且其放氧能力是缺少23 kDa多肽的超级复合物的两倍。向附着有23 kDa亚基的PSII-LHCII SC中添加CaCl2并未提高放氧速率。这表明23 kDa亚基以功能方式结合且大量存在。使用单颗粒图像平均技术分析了从在有和没有甘氨酸甜菜碱存在的情况下分离得到的负染PSII-LHCII SC的电子显微镜图像中提取的5000多个颗粒投影。23 kDa和33 kDa亚基在顶视图和侧视图投影中均可见。在侧视图中,23 kDa亚基比33 kDa亚基突出0.5 - 1 nm,使PSII颗粒的最大高度达到9.5 nm。从质量中心测量,与二聚体PSII-LHCII SC相关的两个33 kDa亚基相距6.3 nm。两个23 kDa亚基之间相应的距离为8.8 nm。

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