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蓝藻光系统II中两种外在成分细胞色素c550和一种12 kDa蛋白质与红藻光系统II中相应成分的结合特性和功能特性比较。

Comparison of binding and functional properties of two extrinsic components, Cyt c550 and a 12 kDa protein, in cyanobacterial PSII with those in red algal PSII.

作者信息

Enami Isao, Iwai Masako, Akiyama Ai, Suzuki Takehiro, Okumura Akinori, Katoh Takara, Tada Osamu, Ohta Hisataka, Shen Jian-Ren

机构信息

Department of Biology, Tokyo University of Science, Kagurazaka 1-3, Shinjuku-ku, Tokyo, 162-8601 Japan.

出版信息

Plant Cell Physiol. 2003 Aug;44(8):820-7. doi: 10.1093/pcp/pcg106.

Abstract

Cyt c550 and 12 kDa protein are two extrinsic proteins of photosystem II (PSII) found in cyanobacteria and some eukaryotic algae. The binding patterns of these two extrinsic proteins are different between cyanobacterial (Thermosynechococcus vulcanus) and red algal (Cyanidium caldarium) PSIIs [Shen and Inoue (1993) Biochemistry 32: 1825; Enami et al. (1998) Biochemistry 39: 2787]. In order to elucidate the possible causes responsible for these differences, we first cloned the psbV gene encoding Cyt c550 from a red alga, Cyanidium caldarium, which was compared with the homologous sequences from other organisms. Cross-reconstitution experiments were then performed with different combinations of the extrinsic proteins and the cyanobacterial or red algal PSII. (1). Both the cyanobacterial and red algal Cyt c550 bound directly to the cyanobacterial PSII, whereas none of them bound directly to the red algal PSII, indicating that direct binding of Cyt c550 to PSII principally depends on the structure of PSII intrinsic proteins but not that of Cyt c550 itself. (2). Cyt c550 was functionally exchangeable between the red algal and the cyanobacterial PSII, and the red algal 12 kDa protein functionally bound to the cyanobacterial PSII, whereas the cyanobacterial 12 kDa protein did not bind to the red algal PSII. (3). The antibody against the cyanobacterial or red algal 12 kDa protein reacted with its original one but not with the homologous protein from the other organism, whereas the antibody against the red algal Cyt c550 reacted with both cyanobacterial and red algal Cyt c550. These results imply that the structure and function of Cyt c550 have been largely conserved, whereas those of the 12 kDa protein have been changed, in the two organisms studied here.

摘要

细胞色素c550和12 kDa蛋白是在蓝细菌和一些真核藻类中发现的光系统II(PSII)的两种外在蛋白。这两种外在蛋白在蓝细菌(嗜热栖热菌)和红藻(嗜热栖热菌)的PSII中的结合模式有所不同[沈和井上(1993年)《生物化学》32: 1825;江见等人(1998年)《生物化学》39: 2787]。为了阐明造成这些差异的可能原因,我们首先从红藻嗜热栖热菌中克隆了编码细胞色素c550的psbV基因,并将其与其他生物的同源序列进行比较。然后用外在蛋白与蓝细菌或红藻PSII的不同组合进行交叉重建实验。(1)蓝细菌和红藻的细胞色素c550都直接与蓝细菌的PSII结合,而它们都不直接与红藻的PSII结合,这表明细胞色素c550与PSII的直接结合主要取决于PSII内在蛋白的结构,而不是细胞色素c550本身的结构。(2)细胞色素c550在红藻和蓝细菌的PSII之间具有功能可互换性,红藻的12 kDa蛋白在功能上与蓝细菌的PSII结合,而蓝细菌的12 kDa蛋白不与红藻的PSII结合。(3)针对蓝细菌或红藻12 kDa蛋白的抗体与其原始蛋白发生反应,但不与来自另一种生物的同源蛋白发生反应,而针对红藻细胞色素c550的抗体与蓝细菌和红藻的细胞色素c550都发生反应。这些结果表明,在所研究的这两种生物中,细胞色素c550的结构和功能在很大程度上得到了保留,而12 kDa蛋白的结构和功能则发生了变化。

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