首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria
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Structure of Psb29/Thf1 and its association with the FtsH protease complex involved in photosystem II repair in cyanobacteria

机译:PSB29 / THF1的结构及其与Cyanobacteria照相修复的FTSH蛋白质复合物的结构

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摘要

One strategy for enhancing photosynthesis in crop plants is to improve their ability to repair photosystem II (PSII) in response to irreversible damage by light. Despite the pivotal role of thylakoid-embedded FtsH protease complexes in the selective degradation of PSII subunits during repair, little is known about the factors involved in regulating FtsH expression. Here we show using the cyanobacterium Synechocystis sp. PCC 6803 that the Psb29 subunit, originally identified as a minor component of His-tagged PSII preparations, physically interacts with FtsH complexes in vivo and is required for normal accumulation of the FtsH2/FtsH3 hetero-oligomeric complex involved in PSII repair. We show using X-ray crystallography that Psb29 from Thermosynechococcus elongatus has a unique fold consisting of a helical bundle and an extended C-terminal helix and contains a highly conserved region that might be involved in binding to FtsH. A similar interaction is likely to occur in Arabidopsis chloroplasts between the Psb29 homologue, termed THF1, and the FTSH2/FTSH5 complex. The direct involvement of Psb29/THF1 in FtsH accumulation helps explain why THF1 is a target during the hypersensitive response in plants induced by pathogen infection. Downregulating FtsH function and the PSII repair cycle via THF1 would contribute to the production of reactive oxygen species, the loss of chloroplast function and cell death.
机译:一种用于在作物植物中增强光合作用的一种策略是提高它们在响应不可逆损伤的照相系统II(PSII)的能力。尽管紫花形包埋的FTSH蛋白酶复合物在修复过程中PSII亚基的选择性降解中的枢转作用,但关于调节FTSH表达的因素几乎是知名的。在这里,我们用蓝色细菌综合症SP显示。 PCC 6803,PSB29亚基最初被识别为他标记的PSII制剂的次要成分,物理上与体内FTSH复合物进行物理相互作用,并且对于涉及PSII修复的FTSH2 / FTSH3杂寡体复合物的正常积累是所涉及的。我们使用X射线晶体显示,来自ThermoXynechocccus Elongatus的PSB29具有独特的褶皱,包括螺旋束和扩展的C末端螺旋,并包含可能涉及与FTSH结合的高度保守区域。在PSB29同源物,称为THF1和FTSH2 / FTSH5复合物之间的拟南芥叶绿体中可能发生类似的相互作用。 PSB29 / THF1在FTSH积累中的直接涉及有助于解释原因THF1是在病原体感染诱导的植物中过敏反应期间的靶标。通过THF1下调FTSH函数和PSII修复周期将有助于生产反应性氧物种,叶绿体功能和细胞死亡的丧失。

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