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Formation of DEG5 and DEG8 Complexes and Their Involvement in the Degradation of Photodamaged Photosystem II Reaction Center D1 Protein in Arabidopsis

机译:DEG5和DEG8配合物的形成及其在拟南芥中光损伤的Photosystem II反应中心D1蛋白降解中的作用

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摘要

The widely distributed DEGP proteases play important roles in the degradation of damaged and misfolded proteins. Arabidopsis thaliana contains 16 DEGP-like proteases, four of which are located in the chloroplast. Here, we show that DEG5 and DEG8 form a hexamer in the thylakoid lumen and that recombinant DEG8 is proteolytically active toward both a model substrate (β-casein) and photodamaged D1 protein of photosystem II (PSII), producing 16-kD N-terminal and 18-kD C-terminal fragments. Inactivation of DEG5 and DEG8 resulted in increased sensitivity to photoinhibition. Turnover of newly synthesized D1 protein in the deg5 deg8 double mutant was impaired, and the degradation of D1 in the presence of the chloroplast protein synthesis inhibitor lincomycin under high-light treatment was slowed in the mutants. Thus, DEG5 and DEG8 are important for efficient turnover of the D1 protein and for protection against photoinhibition in vivo. The deg5 deg8 double mutant showed increased photosensitivity and reduced rates of D1 degradation compared with single mutants of deg5 and deg8. A 16-kD N-terminal degradation fragment of the D1 protein was detected in wild-type plants but not in the deg5 deg8 mutant following in vivo photoinhibition. Therefore, our results suggest that DEG5 and DEG8 have a synergistic function in the primary cleavage of the CD loop of the PSII reaction center protein D1.
机译:广泛分布的DEGP蛋白酶在降解受损和错误折叠的蛋白质中起重要作用。拟南芥含有16种DEGP样蛋白酶,其中4种位于叶绿体中。在这里,我们显示DEG5和DEG8在类囊体腔中形成六聚体,重组DEG8对模型底物(β-酪蛋白)和光系统II(PSII)的光损伤D1蛋白都有蛋白水解活性,产生16 kD N端和18 kD C端片段。 DEG5和DEG8的失活导致对光抑制的敏感性增加。 deg5 deg8双重突变体中新合成的D1蛋白的周转受到损害,并且在存在叶绿体蛋白合成抑制剂林可霉素的情况下,在突变体中D1的降解减慢了。因此,DEG5和DEG8对于D1蛋白的有效转换和保护体内光抑制是重要的。与deg5和deg8的单个突变体相比,deg5 deg8的双突变体显示出更高的光敏性和D1降解速率的降低。在体内光抑制后,在野生型植物中检测到D1蛋白的16 kD N末端降解片段,但在deg5 deg8突变体中未检测到。因此,我们的结果表明,DEG5和DEG8在PSII反应中心蛋白D1的CD环的初级切割中具有协同功能。

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