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首页> 外文期刊>The Plant Cell >The thylakoid lumen protease Deg1 is involved in the repair of photosystem II from photoinhibition in Arabidopsis
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The thylakoid lumen protease Deg1 is involved in the repair of photosystem II from photoinhibition in Arabidopsis

机译:类囊体腔蛋白酶Deg1参与拟南芥中光抑制作用对光系统II的修复。

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摘要

Deg1 is a Ser protease peripherally attached to the lumenal side of the thylakoid membrane. Its physiological function is unknown, but its localization makes it a suitable candidate for participation in photoinhibition repair by degradation of the photosystem II reaction center protein D1. We transformed Arabidopsis thaliana with an RNA interference construct and obtained plants with reduced levels of Deg1. These plants were smaller than wild-type plants, flowered earlier, were more sensitive to photoinhibition, and accumulated more of the D1 protein, probably in an inactive form. Two C-terminal degradation products of the D1 protein, of 16 and 5.2 kD, accumulated at lower levels compared with the wild type. Moreover, addition of recombinant Deg1 to inside-out thylakoid membranes isolated from the mutant could induce the formation of the 5.2-kD D1 C-terminal fragment, whereas the unrelated proteases trypsin and thermolysin could not. Immunoblot analysis revealed that mutants containing less Deg1 also contain less FtsH protease, and FtsH mutants contain less Deg1. These results suggest that Deg1 cooperates with the stroma-exposed proteases FtsH and Deg2 in degrading D1 protein during repair from photoinhibition by cleaving lumen-exposed regions of the protein. In addition, they suggest that accumulation of Deg1 and FtsH proteases may be coordinated.
机译:Deg1是周围附着在类囊体膜腔侧的Ser蛋白酶。其生理功能尚不清楚,但其定位使其成为通过降解光系统II反应中心蛋白D1参与光抑制修复的合适候选物。我们用RNA干扰构建体转化了拟南芥,并获得了Deg1水平降低的植物。这些植物比野生型植物小,开花较早,对光抑制更敏感,并且积累了更多的D1蛋白,可能是无活性的。与野生型相比,D1蛋白的两个C末端降解产物16和5.2 kD积累的水平较低。此外,将重组Deg1添加到从该突变体分离的由内而外的类囊体膜中可以诱导5.2 kD D1 C末端片段的形成,而无关的蛋白酶胰蛋白酶和嗜热菌蛋白酶则不能。免疫印迹分析显示,含有较少Deg1的突变体也含有较少的FtsH蛋白酶,而含有FtsH的突变体含有较少的Deg1。这些结果表明,Deg1与基质暴露的蛋白酶FtsH和Deg2协同作用,通过切割蛋白的管腔暴露区域来修复光抑制修复过程中的D1蛋白降解。此外,他们暗示Deg1和FtsH蛋白酶的积累可能是协调的。

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