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光系统I的PsaD亚基。碱性结构域中的突变会降低膜中PsaD的水平。

The PsaD subunit of photosystem I. Mutations in the basic domain reduce the level of PsaD in the membranes.

作者信息

Chitnis V P, Ke A, Chitnis P R

机构信息

Department of Biochemistry and Biophysics, Iowa State University, Ames 50011, USA.

出版信息

Plant Physiol. 1997 Dec;115(4):1699-705. doi: 10.1104/pp.115.4.1699.

Abstract

The PsaD subunit of photosystem I (PSI) is a peripheral protein that provides a docking site for ferredoxin and interacts with the PsaB, PsaC, and PsaL subunits of PSI. We used site-directed mutagenesis to determine the function of a basic region in PsaD of the cyanobacterium Synechocystis sp. PCC 6803. We generated five mutant strains in which one or more charged residues were altered. Western blotting showed that replacement of lysine (Lys)-74 with glutamine or glutamic acid led to a substantial decrease in the level of PsaD in the membranes. The mutant PSI complexes showed reduced NADP+ photoreduction activity mediated by ferredoxin; the decrease in activity correlated with the reduced level of PsaD. Using protein synthesis inhibitors we showed that the degradation rates of the mutant and wild-type PsaD were similar, indicating a defect in the assembly of the mutant protein. Treatment of the mutant PSI complexes with a different concentration of NaI showed that the mutations decreased affinity between PsaD and the transmembrane components of PSI. With glutaraldehyde, the mutant and wild-type PsaD proteins could be cross-linked with PsaC, but the PsaD-PsaL cross-linked product was reduced drastically when arginine-72, Lys-74, and Lys-76 were mutated simultaneously. These studies demonstrate that the basic residues in the central region of PsaD, especially Lys-74, are crucial in the assembly of PsaD into the PSI complex.

摘要

光系统I(PSI)的PsaD亚基是一种外周蛋白,为铁氧化还原蛋白提供停靠位点,并与PSI的PsaB、PsaC和PsaL亚基相互作用。我们使用定点诱变来确定集胞藻属蓝细菌PCC 6803的PsaD中一个碱性区域的功能。我们构建了五个突变株,其中一个或多个带电荷的残基被改变。蛋白质免疫印迹分析表明,用谷氨酰胺或谷氨酸取代赖氨酸(Lys)-74会导致膜中PsaD水平大幅下降。突变的PSI复合物显示由铁氧化还原蛋白介导的NADP+光还原活性降低;活性的降低与PsaD水平的降低相关。使用蛋白质合成抑制剂,我们发现突变型和野生型PsaD的降解速率相似,这表明突变蛋白的组装存在缺陷。用不同浓度的碘化钠处理突变的PSI复合物表明,这些突变降低了PsaD与PSI跨膜成分之间的亲和力。用戊二醛处理时,突变型和野生型PsaD蛋白都能与PsaC交联,但当精氨酸-72、赖氨酸-74和赖氨酸-76同时突变时,PsaD-PsaL交联产物大幅减少。这些研究表明,PsaD中心区域的碱性残基,尤其是赖氨酸-74,在PsaD组装到PSI复合物中起着关键作用。

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