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pTAC10,转录活性染色体复合物中的一个 S1 结构域包含的组件,是拟南芥质体基因表达所必需的,并且被定位于质体的酪蛋白激酶 II 磷酸化。

pTAC10, an S1-domain-containing component of the transcriptionally active chromosome complex, is essential for plastid gene expression in Arabidopsis thaliana and is phosphorylated by chloroplast-targeted casein kinase II.

机构信息

College of Life and Environmental Sciences, Shanghai Normal University, Shanghai, 200234, China.

出版信息

Photosynth Res. 2018 Jul;137(1):69-83. doi: 10.1007/s11120-018-0479-y. Epub 2018 Jan 12.

Abstract

In higher plant chloroplasts, the plastid-encoded RNA polymerase (PEP) consists of four catalytic subunits and numerous nuclear-encoded accessory proteins, including pTAC10, an S1-domain-containing protein. In this study, pTAC10 knockout lines were characterized. Two ptac10 mutants had an albino phenotype and severely impaired chloroplast development. The pTAC10 genomic sequence fused to a four-tandem MYC tag driven by its own promoter functionally complemented the ptac10-1 mutant phenotype. pTAC10 was present in both the chloroplast stroma and thylakoids. Two-dimensional blue native polyacrylamide gel electrophoresis (BN-PAGE), and immunoblotting assays showed that pTAC10:MYC co-migrates with one of the PEP core subunits, RpoB. A comprehensive investigation of the plastid gene expression profiles by quantitative RT-PCR revealed that, compared with wild-type plants, the abundance of PEP-dependent plastid transcripts is severely decreased in the ptac10-1 mutant, while the amount of plastid transcripts exclusively transcribed by NEP either barely changes or even increases. RNA blot analysis confirmed that PEP-dependent chloroplast transcripts, including psaB, psbA and rbcL, substantially decrease in the ptac10-1 mutant. Immunoblotting showed reduced accumulation of most chloroplast proteins in the ptac10 mutants. These data indicate the essential role of pTAC10 in plastid gene expression and plastid development. pTAC10 interacts with chloroplast-targeted casein kinase 2 (cpCK2) in vitro and in vivo and can be phosphorylated by Arabidopsis cpCK2 in vitro at sites Ser95, Ser396 and Ser434. RNA-EMSA assays showed that pTAC10 is able to bind to the psbA, atpE and accD transcripts, suggesting a non-specific RNA-binding activity of pTAC10. The RNA affinity of pTAC10 was enhanced by phosphorylation and decreased by the amino acid substitution Ser434-Ala of pTAC10. These data show that pTAC10 is essential for plastid gene expression in Arabidopsis and that it can be phosphorylated by cpCK2.

摘要

在高等植物叶绿体中,质体编码的 RNA 聚合酶(PEP)由四个催化亚基和许多核编码的辅助蛋白组成,包括含有 S1 结构域的蛋白 pTAC10。在这项研究中,对 pTAC10 敲除系进行了表征。两个 ptac10 突变体表现出白化表型,并严重损害叶绿体发育。带有自身启动子驱动的四个串联 MYC 标签的 pTAC10 基因组序列可有效地互补 ptac10-1 突变体的表型。pTAC10 存在于叶绿体基质和类囊体中。二维蓝色非变性聚丙烯酰胺凝胶电泳(BN-PAGE)和免疫印迹分析表明,pTAC10:MYC 与 PEP 核心亚基之一 RpoB 共迁移。通过定量 RT-PCR 对质体基因表达谱进行全面研究表明,与野生型植物相比,ptac10-1 突变体中 PEP 依赖的质体转录本的丰度严重降低,而仅由 NEP 转录的质体转录本的量几乎不变或甚至增加。RNA 印迹分析证实,ptac10-1 突变体中 PEP 依赖的叶绿体转录本,包括 psaB、psbA 和 rbcL,大量减少。免疫印迹显示 ptac10 突变体中大多数叶绿体蛋白的积累减少。这些数据表明 pTAC10 在质体基因表达和质体发育中起重要作用。pTAC10 在体外和体内与定位于叶绿体的酪蛋白激酶 2(cpCK2)相互作用,并可在体外被拟南芥 cpCK2 磷酸化,磷酸化位点为 Ser95、Ser396 和 Ser434。RNA-EMSA 测定表明,pTAC10 能够结合 psbA、atpE 和 accD 转录物,提示 pTAC10 具有非特异性 RNA 结合活性。pTAC10 的 RNA 亲和力通过磷酸化增强,通过 pTAC10 的 Ser434-Ala 氨基酸取代降低。这些数据表明 pTAC10 是拟南芥质体基因表达所必需的,并且可以被 cpCK2 磷酸化。

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