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首页> 外文期刊>The Plant Cell >Identification of a photosystem II phosphatase involved in light acclimation in Arabidopsis.
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Identification of a photosystem II phosphatase involved in light acclimation in Arabidopsis.

机译:鉴定与拟南芥中光适应有关的光系统II磷酸酶。

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Reversible protein phosphorylation plays a major role in the acclimation of the photosynthetic apparatus to changes in light. Two paralogous kinases phosphorylate subsets of thylakoid membrane proteins. STATE TRANSITION7 (STN7) phosphorylates LHCII, the light-harvesting antenna of photosystem II (PSII), to balance the activity of the two photosystems through state transitions. STN8, which is mainly involved in phosphorylation of PSII core subunits, influences folding of the thylakoid membranes and repair of PSII after photodamage. The rapid reversibility of these acclimatory responses requires the action of protein phosphatases. In a reverse genetic screen, we identified the chloroplast PP2C phosphatase, PHOTOSYSTEM II CORE PHOSPHATASE (PBCP), which is required for efficient dephosphorylation of PSII proteins. Its targets, identified by immunoblotting and mass spectrometry, largely coincide with those of the kinase STN8. The recombinant phosphatase is active in vitro on a synthetic substrate or on isolated thylakoids. Thylakoid folding is affected in the absence of PBCP, while its overexpression alters the kinetics of state transitions. PBCP and STN8 form an antagonistic kinase and phosphatase pair whose substrate specificity and physiological functions are distinct from those of STN7 and the counteracting phosphatase PROTEIN PHOSPHATASE1/THYLAKOID-ASSOCIATED PHOSPHATASE38, but their activities may overlap to some degree.
机译:可逆蛋白的磷酸化在使光合作用适应光的变化中起主要作用。两个旁系激酶磷酸化类囊体膜蛋白的子集。状态转换7(STN7)使LHCII(光系统II(PSII)的光收集天线)磷酸化,以通过状态转换来平衡两个光系统的活动。 STN8主要参与PSII核心亚基的磷酸化,影响类囊体膜的折叠和光损伤后PSII的修复。这些适应性反应的快速可逆性需要蛋白质磷酸酶的作用。在反向遗传筛选中,我们确定了叶绿体PP2C磷酸酶PHOTOSYSTEM II核心磷酸酶(PBCP),这是PSII蛋白有效去磷酸化所必需的。通过免疫印迹和质谱鉴定的靶标,与激酶STN8的靶标基本一致。重组磷酸酶在体外对合成底物或分离的类囊体具有活性。在没有PBCP的情况下,类囊体折叠会受到影响,而其过表达会改变状态转变的动力学。 PBCP和STN8形成一个拮抗激酶和磷酸酶对,其底物特异性和生理功能不同于STN7和对抗磷酸酶蛋白磷酸酶/甲状腺醇结合的磷酸酶38,但它们的活性可能在某种程度上重叠。

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