Kato Yusuke, Sakamoto Wataru
Institute of Plant Science and Resources (IPSR), Okayama University, Okayama, Japan.
Front Plant Sci. 2018 Jun 20;9:855. doi: 10.3389/fpls.2018.00855. eCollection 2018.
Protein homeostasis in the thylakoid membranes is dependent on protein quality control mechanisms, which are necessary to remove photodamaged and misfolded proteins. An ATP-dependent zinc metalloprotease, FtsH, is the major thylakoid membrane protease. FtsH proteases in the thylakoid membranes of form a hetero-hexameric complex consisting of four FtsH subunits, which are divided into two types: type A (FtsH1 and FtsH5) and type B (FtsH2 and FtsH8). An increasing number of studies have identified the critical roles of FtsH in the biogenesis of thylakoid membranes and quality control in the photosystem II repair cycle. Furthermore, the involvement of FtsH proteolysis in a singlet oxygen- and EXECUTER1-dependent retrograde signaling mechanism has been suggested recently. FtsH is also involved in the degradation and assembly of several protein complexes in the photosynthetic electron-transport pathways. In this minireview, we provide an update on the functions of FtsH in thylakoid biogenesis and describe our current understanding of the D1 degradation processes in the photosystem II repair cycle. We also discuss the regulation mechanisms of FtsH protease activity, which suggest the flexible oligomerization capability of FtsH in the chloroplasts of seed plants.
类囊体膜中的蛋白质稳态依赖于蛋白质质量控制机制,这些机制对于去除光损伤和错误折叠的蛋白质是必要的。一种依赖ATP的锌金属蛋白酶FtsH是类囊体膜中的主要蛋白酶。植物类囊体膜中的FtsH蛋白酶形成一个由四个FtsH亚基组成的异源六聚体复合物,这些亚基分为两种类型:A型(FtsH1和FtsH5)和B型(FtsH2和FtsH8)。越来越多的研究已经确定了FtsH在类囊体膜生物发生和光系统II修复循环中的质量控制中的关键作用。此外,最近有人提出FtsH蛋白水解参与单线态氧和EXECUTER1依赖的逆行信号机制。FtsH还参与光合电子传递途径中几种蛋白质复合物的降解和组装。在这篇小型综述中,我们提供了FtsH在类囊体生物发生中的功能的最新信息,并描述了我们目前对光系统II修复循环中D1降解过程的理解。我们还讨论了FtsH蛋白酶活性的调节机制,这表明FtsH在种子植物叶绿体中具有灵活的寡聚化能力。