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ADP-dependent phosphorylation regulates association of a DNA-binding complex with the barley chloroplast psbD blue-light-responsive promoter

机译:ADP依赖性磷酸化调节DNA结合复合物与大麦叶绿体psbD蓝光响应启动子的缔合

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The chloroplast gene psbD encodes D2, a chlorophyll-binding protein located in the photosystem II reaction center. Transcription of psbD in higher plants involves at least three promoters, one of which is regulated by blue light. The psbD blue-light-regulated promoter (BLRP) consists of a -10 promoter element and an activating complex, AGF, that binds immediately upstream of -35. A second sequence-specific DNA-binding complex, PGTF, binds upstream of AGF between -71 and -100 in the barley (Hordeum vulgare) psbD BLRP. In this study we report that ADP-dependent phosphorylation selectively inhibits the binding of PGTF to the barley psbD BLRP. ATP at high concentrations (1-5 mM) inhibits PGTF binding, but in the presence of phosphocreatine and phosphocreatine kinase, this capacity is lost, presumably due to scavenging of ADP. ADP inhibits PGTF binding at relatively low concentrations (0.1 mM), whereas other nucleotides are unable to mediate this response. ADP-mediated inhibition of PGTF binding is reduced in the presence of the protein kinase inhibitor K252a. This and other results suggest that ADP-dependent phosphorylation of PGTF (or some associated protein) inhibits binding of PGTF to the psbD BLRP and reduces transcription. ADP-dependent phosphorylation is expected to increase in darkness in parallel with the rise in ADP levels in chloroplasts. ADP-dependent phosphorylation in chloroplasts may, therefore, in coordination, inactivate enzymes involved in carbon assimilation, protein synthesis, and transcription during diurnal light/dark cycles.
机译:叶绿体基因psbD编码D2,D2是位于光系统II反应中心的叶绿素结合蛋白。 psbD在高等植物中的转录涉及至少三个启动子,其中一个由蓝光调节。 psbD蓝光调节启动子(BLRP)由-10个启动子元件和一个激活复合物AGF组成,后者直接在-35上游结合。第二种序列特异性DNA结合复合物PGTF在大麦psbD BLRP中的AGF上游-71和-100之间结合。在这项研究中,我们报告了ADP依赖性磷酸化选择性抑制PGTF与大麦psbD BLRP的结合。高浓度(1-5 mM)的ATP抑制PGTF结合,但是在存在磷酸肌酸和磷酸肌酸激酶的情况下,这种能力丧失了,大概是由于清除了ADP。 ADP以相对较低的浓度(0.1 mM)抑制PGTF结合,而其他核苷酸则无法介导此反应。在蛋白激酶抑制剂K252a的存在下,ADP介导的对PGTF结合的抑制被减少。该结果和其他结果表明,PGTF(或某些相关蛋白)的ADP依赖性磷酸化抑制了PGTF与psbD BLRP的结合并减少了转录。预期ADP依赖的磷酸化在黑暗中会增加,同时叶绿体中ADP的水平也会上升。因此,叶绿体中ADP依赖的磷酸化可能协同作用,使昼夜明/暗循环中参与碳同化,蛋白质合成和转录的酶失活。

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