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Mechanism of nucleus-to-plastid light signaling in controlling plastid transcription

Mechanism of nucleus-to-plastid light signaling in controlling plastid transcription
核到质体光信号传导控制质体转录的机制
批准号:
10580265
负责人:
Meng Chen
金额:
$6.09万
依托单位国家:
美国
项目类别:
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-02-07 至 2023-12-31

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中文摘要
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摘要
英文摘要
Abstract The control of organellar gene expression is critical for cellular programming of all eukaryotic organisms. While perturbing mitochondrial gene expression leads to human pathologies, including cancer, altering plastidial gene expression can kill plants. However, the cell signaling mechanisms that control organellar gene expression remain poorly understood. The long-term goal of the PI’s laboratory is to utilize photoreceptor-regulated chloroplast biogenesis in Arabidopsis as a genetic model to understand cell signaling mechanisms controlling organellar gene expression. The current data support the central hypothesis that the red and far-red photoreceptors, the phytochromes, induce the expression of plastid- encoded photosynthesis-associated genes through nucleus-to-plastid signaling that activates a bacterial- type plastidial RNA polymerase. Here the PI propose to utilize a combination of molecular genetics, biochemistry, structure biology, cell biology, and genomics approaches to (1) determine the activation mechanism of the bacterial-type RNA polymerase in plastids, (2) identify the nucleus-to-plastid signal that triggers the activation of the plastidial RNA polymerase, and (3) determine the phytochrome signaling mechanism that initiates the nucleus-to-plastid signaling in the nucleus. The proposed research is innovative because it utilizes photoreceptor signaling and chloroplast biogenesis in Arabidopsis as a genetic model to investigate a previously uncharacterized nucleus-to-organelle signaling pathway. The PI has developed new forward genetic screens and biochemical assays to identify components in the nucleus-to-plastid signaling and elucidate their signaling mechanisms. The proposed research is significant, because it is expected to uncover the photoreceptor signaling mechanisms controlling plastidial transcription - a long-standing gap in our knowledge of plant light signaling and chloroplast biogenesis. Because the control of transcription in plastids shares many similarities with that in mitochondria, what we learn in the plastid model is expected to enhance the understanding of the general principles of cell signaling mechanisms in controlling organellar gene expression, including the regulation of mitochondrial gene expression, and therefore, will ultimately contribute to the understanding of the mechanisms underlying the misregulations of mitochondrial gene expression in human diseases.
期刊论文(4)
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会议论文
DOI: 10.1038/s41467-021-25909-5
发表时间: 2021-09-23
期刊: Nature communications
影响因子: 16.6
作者: [Yoo CY, He J, Sang Q, Qiu Y, Long L, Kim RJ, Chong EG, Hahm J, Morffy N, Zhou P, Strader LC, Nagatani A, Mo B, Chen X, Chen M]
通讯作者: Chen M
RCB initiates Arabidopsis thermomorphogenesis by stabilizing the thermoregulator PIF4 in the daytime.
RCB通过白天稳定热调节剂PIF4来启动拟南芥热生成。
DOI: 10.1038/s41467-021-22313-x
发表时间: 2021-04-06
期刊: Nature communications
影响因子: 16.6
作者: [Qiu Y, Pasoreck EK, Yoo CY, He J, Wang H, Bajracharya A, Li M, Larsen HD, Cheung S, Chen M]
通讯作者: Chen M
DOI: 10.1038/s41467-022-35080-0
发表时间: 2022-12-02
期刊: NATURE COMMUNICATIONS
影响因子: 16.6
作者: [Hwang, Youra, Han, Soeun, Yoo, Chan Yul, Hong, Liu, You, Chenjiang, Le, Brandon H., Shi, Hui, Zhong, Shangwei, Hoecker, Ute, Chen, Xuemei, Chen, Meng]
通讯作者: Chen, Meng
Mechanism of nucleus-to-plastid light signaling in controlling plastid transcription
Mechanism of nucleus-to-plastid light signaling in controlling plastid transcription
Mechanism of nucleus-to-plastid light signaling in controlling plastid transcription
Mechanism of nucleus-to-plastid light signaling in controlling plastid transcription
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