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Dephosphorylation of Photosystem II Reaction Center Proteins in Plant Photosynthetic Membranes as an Immediate Response to Abrupt Elevation of Temperature

机译:植物光合膜中光系统II反应中心蛋白的去磷酸化作为对温度突然升高的立即响应

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摘要

Kinetic studies of protein dephosphorylation in photosynthetic thylakoid membranes revealed specifically accelerated dephosphorylation of photosystem II (PSII) core proteins at elevated temperatures. Raising the temperature from 22°C to 42°C resulted in a more than 10-fold increase in the dephosphorylation rates of the PSII reaction center proteins D1 and D2 and of the chlorophyll a binding protein CP43 in isolated spinach (Spinacia oleracea) thylakoids. In contrast the dephosphorylation rates of the light harvesting protein complex and the 9-kD protein of the PSII (PsbH) were accelerated only 2- to 3-fold. The use of a phospho-threonine antibody to measure in vivo phosphorylation levels in spinach leaves revealed a more than 20-fold acceleration in D1, D2, and CP43 dephosphorylation induced by abrupt elevation of temperature, but no increase in light harvesting protein complex dephosphorylation. This rapid dephosphorylation is catalyzed by a PSII-specific, intrinsic membrane protein phosphatase. Phosphatase assays, using intact thylakoids, solubilized membranes, and the isolated enzyme, revealed that the temperature-induced lateral migration of PSII to the stroma-exposed thylakoids only partially contributed to the rapid increase in the dephosphorylation rate. Significant activation of the phosphatase coincided with the temperature-induced release of TLP40 from the membrane into thylakoid lumen. TLP40 is a peptidyl-prolyl cis-trans isomerase, which acts as a regulatory subunit of the membrane phosphatase. Thus dissociation of TLP40 caused by an abrupt elevation in temperature and activation of the membrane protein phosphatase are suggested to trigger accelerated repair of photodamaged PSII and to operate as possible early signals initiating other heat shock responses in chloroplasts.
机译:在光合作用类囊体膜中蛋白质去磷酸化的动力学研究表明,在升高的温度下,光系统II(PSII)核心蛋白特别加速了去磷酸化。将温度从22°C升高至42°C,会使分离的菠菜(菠菜(Spinacia oleracea))类囊体中PSII反应中心蛋白D1和D2以及叶绿素a结合蛋白CP43的去磷酸化速率提高10倍以上。相反,光收集蛋白复合物和PSII(PsbH)的9-kD蛋白的去磷酸化速率仅提高了2到3倍。使用磷酸苏氨酸抗体来测量菠菜叶片中的体内磷酸化水平表明,温度的突然升高可诱导D1,D2和CP43脱磷酸作用加快20倍以上,但光捕获蛋白复合物的脱磷酸作用却没有增加。这种快速的去磷酸化作用是由PSII特有的固有膜蛋白磷酸酶催化的。使用完整的类囊体,溶解的膜和分离的酶进行的磷酸酶分析表明,温度诱导的PSII横向迁移至基质暴露的类囊体仅部分促进了脱磷酸速率的快速增加。磷酸酶的显着活化与温度诱导的TLP40从膜释放到类囊体腔中相吻合。 TLP40是肽基-脯氨酰顺反异构酶,其充当膜磷酸酶的调节亚基。因此,由温度的突然升高引起的TLP40的解离和膜蛋白磷酸酶的激活被认为可以触发光损伤PSII的加速修复,并作为可能的早期信号启动叶绿体中的其他热激反应。

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