Pokorska Berenika, Romanowska Elzbieta
Department of Plant Physiology, University of Warsaw, Miecznikowa 1, 02-096 Warsaw, Poland.
Funct Plant Biol. 2007 Sep;34(9):844-852. doi: 10.1071/FP07067.
Susceptibility of photosystem II complex (PSII) to photoinhibition and degradation of D1 protein has been described in the chloroplasts of C plants but so far, the PSII turnover has not been characterised in any C plant, which contains two types of chloroplasts differing biochemically and structurally. In maize (Zea mays L. Oleńka), chloroplasts located in mesophyll (M) develop grana, while bundle sheath (BS) chloroplasts are agranal. In this paper, we report the D1 protein phosphorylation, damage and proteolysis in mesophyll as well as in agranal bundle sheath thylakoids of maize plants. Photoinhibitory treatment (1800 μmol photons m s) of isolated thylakoids led to donor side inhibition of PSII electron transport and then to damage of reaction centre in both M and BS thylakoids. Rate of D1 degradation rate was faster in BS than in M thylakoids, and the addition of ATP to incubation medium delayed D1 degradation in both types of thylakoids. Furthermore, we demonstrated that the proteases belonging to FtsH and Deg families were present but their amounts significantly differed in M and BS thylakoids. Protease inhibitor studies revealed that serine- and metallo-proteases were involved in degradation of D1 protein. Apparent existence of D1 degradation cycle and the presence of proteolytic enzymes responsible for this process in BS thylakoids confirm that PSII plays an important role in agranal membranes, and when damaged, D1 can be rapidly degraded to enable PSII repair and restoration in these membranes.
C4植物叶绿体中光系统II复合物(PSII)对光抑制和D1蛋白降解的敏感性已有报道,但迄今为止,尚未对任何含有两种在生化和结构上不同的叶绿体的C4植物的PSII周转进行表征。在玉米(Zea mays L. Oleńka)中,叶肉(M)中的叶绿体形成基粒,而维管束鞘(BS)叶绿体无基粒。在本文中,我们报道了玉米植物叶肉以及无基粒维管束鞘类囊体中D1蛋白的磷酸化、损伤和蛋白水解情况。对分离的类囊体进行光抑制处理(1800 μmol光子·m⁻²·s⁻¹)导致PSII电子传递的供体侧抑制,进而导致M和BS类囊体中反应中心的损伤。BS类囊体中D1降解速率比M类囊体中更快,并且向孵育培养基中添加ATP可延迟两种类型类囊体中D1的降解。此外,我们证明了属于FtsH和Deg家族的蛋白酶存在,但它们在M和BS类囊体中的含量有显著差异。蛋白酶抑制剂研究表明,丝氨酸蛋白酶和金属蛋白酶参与了D1蛋白的降解。BS类囊体中明显存在D1降解循环以及负责此过程的蛋白水解酶,这证实了PSII在无基粒膜中起重要作用,并且当受损时,D1可以迅速降解,以使这些膜中的PSII得以修复和恢复。