Department of Biochemistry and Food Chemistry, University of Turku, FI-20014 Turku, Finland.
Plant Physiol. 2011 Jul;156(3):1464-80. doi: 10.1104/pp.111.178442. Epub 2011 May 12.
Light is an important environmental factor that modulates acclimation strategies and defense responses in plants. We explored the functional role of the regulatory subunit B'γ (B'γ) of protein phosphatase 2A (PP2A) in light-dependent stress responses of Arabidopsis (Arabidopsis thaliana). The predominant form of PP2A consists of catalytic subunit C, scaffold subunit A, and highly variable regulatory subunit B, which determines the substrate specificity of PP2A holoenzymes. Mutant leaves of knockdown pp2a-b'γ plants show disintegration of chloroplasts and premature yellowing conditionally under moderate light intensity. The cell-death phenotype is accompanied by the accumulation of hydrogen peroxide through a pathway that requires CONSTITUTIVE EXPRESSION OF PR GENES5 (CPR5). Moreover, the pp2a-b'γ cpr5 double mutant additionally displays growth suppression and malformed trichomes. Similar to cpr5, the pp2a-b'γ mutant shows constitutive activation of both salicylic acid- and jasmonic acid-dependent defense pathways. In contrast to cpr5, however, pp2a-b'γ leaves do not contain increased levels of salicylic acid or jasmonic acid. Rather, the constitutive defense response associates with hypomethylation of DNA and increased levels of methionine-salvage pathway components in pp2a-b'γ leaves. We suggest that the specific B'γ subunit of PP2A is functionally connected to CPR5 and operates in the basal repression of defense responses under low irradiance.
光是调节植物适应策略和防御反应的重要环境因素。我们探讨了蛋白磷酸酶 2A(PP2A)调节亚基 B'γ(B'γ)在拟南芥(Arabidopsis thaliana)光依赖性应激反应中的功能作用。PP2A 的主要形式由催化亚基 C、支架亚基 A 和高度可变的调节亚基 B 组成,B 决定了 PP2A 全酶的底物特异性。敲低 pp2a-b'γ 植物的突变体叶片在中等光照强度下会出现叶绿体解体和过早黄化的情况。细胞死亡表型伴随着过氧化氢的积累,这是通过需要组成型表达 PR 基因 5(CPR5)的途径实现的。此外,pp2a-b'γ cpr5 双突变体还表现出生长抑制和畸形毛状体。与 cpr5 相似,pp2a-b'γ 突变体表现出水杨酸和茉莉酸依赖防御途径的组成型激活。然而,与 cpr5 不同的是,pp2a-b'γ 叶片中不含有增加水平的水杨酸或茉莉酸。相反,组成型防御反应与 pp2a-b'γ 叶片中的 DNA 去甲基化和甲硫氨酸挽救途径成分水平升高有关。我们认为,PP2A 的特定 B'γ 亚基与 CPR5 功能相关,在低光照下,它在防御反应的基础抑制中发挥作用。