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利用蓝藻集胞藻6803的缺失突变株对编码CP47的基因psbB进行寡核苷酸定向诱变。

Oligonucleotide-directed mutagenesis of psbB, the gene encoding CP47, employing a deletion mutant strain of the cyanobacterium Synechocystis sp. PCC 6803.

作者信息

Eaton-Rye J J, Vermaas W F

机构信息

Department of Botany, Arizona State University, Tempe 85287-1601.

出版信息

Plant Mol Biol. 1991 Dec;17(6):1165-77. doi: 10.1007/BF00028733.

Abstract

A mutant strain of the cyanobacterium Synechocystis sp. PCC (Pasteur Culture Collection) 6803 has been developed in which psbB, the gene coding for the chlorophyl alpha-binding protein CP47 in Photosystem II (PSII), has been deleted. This deletion mutant can be used for the reintroduction of modified psbB into the cyanobacterium. To study the role of a large hydrophilic region in CP47, presumably located on the lumenal side of the thylakoid membrane between the fifth and sixth membrane-spanning regions, specific deletions have been introduced in psbB coding for regions within this domain. One psbB mutation leads to deletion of Gly-351 to Thr-365 in CP47, another psbB mutation was targeted towards deletion of Arg-384 to Val-392 in this protein. The deletion from Gly-351 to Thr-365 results in a loss of PSII activity and of photoautotrophic growth of the mutant, but the deletion between Arg-384 and Val-392 retains PSII activity and the ability to grow photoautotrophically. The mutant strain with the deletion from Gly-351 to Thr-365 does not assemble a stable PSII reaction center complex in its thylakoid membranes, and exhibits diminished levels of CP47 and of the reaction center proteins D1 and D2. In contrast to the Arg-384 to Val-392 portion of this domain, the region between Gly-351 and Thr-365 appears essential for the normal structure and function of photosystem II.

摘要

已经培育出了集胞藻属蓝细菌(Pasteur培养物保藏中心)PCC 6803的一种突变菌株,其中编码光系统II(PSII)中叶绿素α结合蛋白CP47的基因psbB已被删除。这种缺失突变体可用于将修饰后的psbB重新引入蓝细菌中。为了研究CP47中一个大的亲水区(可能位于类囊体膜腔侧、第五和第六个跨膜区之间)的作用,已在编码该结构域内区域的psbB中引入了特定的缺失。一个psbB突变导致CP47中第351位甘氨酸至第365位苏氨酸缺失,另一个psbB突变针对该蛋白中第384位精氨酸至第392位缬氨酸的缺失。从第351位甘氨酸到第365位苏氨酸的缺失导致突变体的PSII活性丧失和光自养生长能力丧失,但第384位精氨酸和第392位缬氨酸之间的缺失保留了PSII活性和光自养生长能力。从第351位甘氨酸到第365位苏氨酸缺失的突变菌株在其类囊体膜中无法组装稳定的PSII反应中心复合物,并且CP47以及反应中心蛋白D1和D2的水平降低。与该结构域的第384位精氨酸至第392位缬氨酸部分不同,第351位甘氨酸和第365位苏氨酸之间的区域似乎对光系统II的正常结构和功能至关重要。

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