Complexome profiling of the Chlamydomonas psb28 mutant reveals TEF5 as an early photosystem II assembly factor

Julia Lang, Katharina König, Benedikt Venn, Saskia Zeilfelder, Matthias Ostermeier, Benjamin Spaniol, Lara Spaniol, Frederik Sommer, Matthieu Mustas, Stefan Geimer, Torben Fürtges, Pawel Brzezowski, Jure Zabret, Francis-André Wollman, Marc M Nowacyzk, David Scheuring, Till Rudack, Timo Mühlhaus, Yves Choquet, Michael Schroda
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Abstract

Photosystem (PS) II assembly requires auxiliary factors, including Psb28. Although the absence of Psb28 in cyanobacteria has little effect on PSII assembly, we show here that the Chlamydomonas (Chlamydomonas reinhardtii) psb28 null mutant is severely impaired in PSII assembly, showing drastically reduced PSII supercomplexes, dimers and monomers, while overaccumulating early PSII assembly intermediates reaction center II (RCII), CP43mod and D1mod. The mutant had less PSI and more cytochrome b6f complex, its thylakoids were organized mainly as monolayers and it had a distorted chloroplast morphology. Complexome profiling of the psb28 mutant revealed that THYLAKOID ENRICHED FRACTION 5 (TEF5), the homolog of Arabidopsis (Arabidopsis thaliana) PHOTOSYSTEM B PROTEIN 33 (PSB33)/LIGHT HARVESTING-LIKE 8 (LIL8), co-migrated particularly with RCII. TEF5 also interacted with PSI. A Chlamydomonas tef5 null mutant was severely impaired in PSII assembly and overaccumulated RCII and CP43mod. RC47 was not detectable in the light-grown tef5 mutant. Our data suggest a possible role for TEF5 in RCII photoprotection or maturation. Both the psb28 and tef5 mutants exhibited decreased synthesis of CP47 and PsbH, suggesting negative feedback regulation possibly exerted by the accumulation of RCII and/or CP43mod in both mutants. The strong effects of missing auxiliary factors on PSII assembly in Chlamydomonas suggest a more effective protein quality control system in this alga than in land plants and cyanobacteria.
衣藻psb28突变体的复杂体分析显示TEF5是早期光系统II组装因子
光系统(PS) II的组装需要辅助因子,包括Psb28。虽然蓝藻中Psb28的缺失对PSII的组装影响很小,但我们在这里发现衣藻(Chlamydomonas reinhardtii) Psb28零突变体在PSII组装中严重受损,显示PSII超复合物、二聚体和单体急剧减少,而早期PSII组装中间体反应中心II (RCII)、CP43mod和D1mod过度积累。突变体PSI较少,细胞色素b6f复合物较多,类囊体以单层结构为主,叶绿体形态扭曲。对psb28突变体的复合体分析显示,拟南芥(Arabidopsis thaliana)光系统B蛋白33 (PSB33)/光收获样8 (LIL8)的同源物类囊体富集组分5 (TEF5)与RCII共同迁移。TEF5也与PSI相互作用。衣藻tef5零突变体PSII组装严重受损,RCII和CP43mod过度积累。在光生长的tef5突变体中未检测到RC47。我们的数据表明TEF5可能在RCII光保护或成熟中起作用。psb28和tef5突变体均表现出CP47和pshh合成的减少,提示RCII和/或CP43mod的积累可能在这两个突变体中发挥负反馈调节作用。缺失的辅助因子对衣藻中PSII组装的强烈影响表明,衣藻中存在比陆生植物和蓝藻中更有效的蛋白质质量控制系统。
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