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光抑制的集胞藻细胞中光系统II活性的恢复:除了D1蛋白的非光依赖性合成外,还需要光依赖性翻译活性。

Recovery of photosystem II activity in photoinhibited synechocystis cells: light-dependent translation activity is required besides light-independent synthesis of the D1 protein.

作者信息

Constant S, Eisenberg-Domovitch Y, Ohad I, Kirilovsky D

机构信息

Laboratoire de Photoregulation et Dynamique des Membranes Vegetales, UMR 8543, CNRS, Ecole Normale Superieure, 46 rue d'Ulm, 75230 Paris Cedex 05, France.

出版信息

Biochemistry. 2000 Feb 29;39(8):2032-41. doi: 10.1021/bi9914154.

Abstract

Irreversible photoinactivation of photosystem II (PSII) results in the degradation of the reaction center II D1 protein. In Synechocystis PCC 6714 cells, recovery of PSII activity requires illumination. The rates of photoinactivation and recovery of PSII activity in the light are similar in cells grown in minimal (MM) or glucose-containing medium (GM). Reassembly of PSII with newly synthesized proteins requires degradation of the D1 protein of the photoinactivated PSII. This process may occur in darkness in both types of cells. The degraded D1 protein is, however, only partially replaced by newly synthesized protein in MM cells in darkness while a high level of D1 protein synthesis occurs in darkness in the GM cells. The newly synthesized D1 protein in darkness appears to be assembled with other PSII proteins. However, PSII activity is not recovered in such cells. Illumination of the cells in absence but not in the presence of protein synthesis inhibitors allows recovery of PSII activity.

摘要

光系统II(PSII)的不可逆光失活会导致反应中心II D1蛋白的降解。在集胞藻PCC 6714细胞中,PSII活性的恢复需要光照。在基本培养基(MM)或含葡萄糖培养基(GM)中生长的细胞中,光下PSII的光失活速率和恢复速率相似。PSII与新合成蛋白质的重新组装需要光失活PSII的D1蛋白降解。这个过程在两种类型的细胞中都可能在黑暗中发生。然而,在黑暗中,MM细胞中降解的D1蛋白仅被新合成的蛋白部分取代,而GM细胞在黑暗中会发生高水平的D1蛋白合成。黑暗中新合成的D1蛋白似乎与其他PSII蛋白组装在一起。然而,这类细胞中的PSII活性并未恢复。在不存在蛋白质合成抑制剂但存在蛋白质合成抑制剂时对细胞进行光照可使PSII活性恢复。

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