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Plastid Regulation of Lhcb1 Transcription in the Chlorophyte Alga Dunaliella tertiolecta

机译:绿藻藻类杜氏藻中Lhcb1转录的质体调节。

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摘要

We identify four novel DNA-binding complexes in the nuclear-encoded Lhcb1 promoter of the chlorophyte alga Dunaliella tertiolecta that are regulated by photosynthetic pathways in the plastid. The binding activities of three of the complexes were positively correlated with time-dependent changes in Lhcb1 transcript abundance, implicating their roles as transcriptional enhancers in a retrograde signal transduction pathway. Using a combination of inhibitors, uncouplers, and antimycin A, and by following the kinetic pattern of gene regulation, we infer two different sensors in the signal transduction pathway. On short time scales of 0.5 to about 4 h, the transthylakoid membrane potential appears to be a critical determinant of gene expression, whereas on time scales of 8 h or longer, the redox state of the plastoquinone pool becomes increasingly more important. The differentiation of these two types of signals was observed in parallel effects on gene transcription and on the patterns of DNA-binding activities in the Lhcb1 promoter. These signals appear to be transduced at the nuclear level via a coordinated ensemble of DNA-binding complexes located between −367 and −188 bp from the start codon of the gene. The regulation of these elements allows the cell to up- or down-regulate the expression on Lhcb1 in response to changes in irradiance.
机译:我们在叶绿体藻类杜氏盐藻的核编码Lhcb1启动子中鉴定了四个新型DNA结合复合物,这些复合物受质体中的光合途径调节。三种复合物的结合活性与Lhcb1转录物丰度的时间依赖性变化呈正相关,暗示它们在逆行信号转导途径中作为转录增强子的作用。使用抑制剂,解偶联剂和抗霉素A的组合,并遵循基因调控的动力学模式,我们推断信号转导途径中的两个不同的传感器。在0.5到约4 h的短时间尺度上,跨类囊体膜电位似乎是基因表达的关键决定因素,而在8 h或更长的时间尺度上,质体醌库的氧化还原状态变得越来越重要。在基因转录和Lhcb1启动子中的DNA结合活性模式的并行影响中观察到这两种信号的分化。这些信号似乎是通过位于基因起始密码子的-367和-188 bp之间的DNA结合复合物的协调结合在核水平上转导的。这些元素的调节允许细胞响应辐照度的变化而上调或下调Lhcb1上的表达。

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