菌染色体:光受体的彩虹
Nathan C Rockwell1, J Clark Lagarias1
1Department of Molecular and Cellular Biology, University of California, Davis, California, USA; email: ncrockwell@ucdavis.edu, jclagarias@ucdavis.edu.
Annual review of microbiology
|June 7, 2024
概括
菌染色体 (CBCRs) 是菌中的光感应蛋白质. 这篇评论涵盖了它们在合成生物学中的多样化的光传感,信号机制和应用.
科学领域:
- 生物化学 生物化学
- 摄影生物学 摄影生物学
- 微生物学 微生物学
背景情况:
- 植物染色体使用双线染色体来检测红/远红光比.
- 菌染色体 (CBCRs) 是相关的,但感知到更广泛的光谱.
- CBCRs通过光异构化调节蓝藻细菌信号通路.
研究的目的:
- 审查CBCRs的光谱调整,光转换和光生物学.
- 讨论CBCR进化的最新进展.
- 探索CBCR在合成生物学中的应用.
主要方法:
- 比林染色体的光谱分析的光异构化.
- 对CBCR输出域活动的生物化学分析.
- 对CBCR演变的生物信息分析.
- 用于合成生物学应用的基因操纵.
主要成果:
- CBCRs表现出不同的光谱调,从近紫外线到近红外线.
- 光异构化触发了CBCR的光转换和信号传递.
- CBCRs调节蓝藻细菌的光毒性,新陈代谢和光采集.
- CBCR的演变显示出显著的多样化.
结论:
- CBCRs是具有广泛光谱敏感性的多功能光受体.
- 了解CBCRs为合成生物学应用开辟了道路.
- CBCRs在蓝藻细菌的适应和信号传递中起着至关重要的作用.
相关概念视频
Channel Rhodopsins
2.6K
Most organisms use photoreceptors to sense and respond to light. Examples of photoreceptors include bacteriorhodopsins and bacteriophytochromes in some bacteria, phytochromes in plants, and rhodopsins in the photoreceptor cells of the vertebral retina. The light-sensitive property of these receptors is because of the bound chromophores, such as bilin in the phytochromes and retinal in the rhodopsins.
Rhodopsins belong to the family of cell surface proteins called G-protein coupled receptors,...
Rhodopsins belong to the family of cell surface proteins called G-protein coupled receptors,...
2.6K
The Photochemical Reaction Center
4.1K
Reaction centers are pigment-protein complexes that initiate energy conversion from photons to chemical entities. Therefore, photochemical reaction center is a more appropriate term that describes these complexes. The Nobel laureates Robert Emerson and William Arnold provided the first experimental evidence of photochemical reaction centers by demonstrating the participation of nearly 2,500 chlorophyll molecules for the release of just one molecule of oxygen. Despite thousands of photosynthetic...
4.1K
Photosystems
4.8K
Photosystems are multiprotein complexes that form the functional units of photosynthesis in plants, algae, and cyanobacteria. They are found embedded in the membrane of tiny sac-like structures called thylakoids placed inside the chloroplast.
Functioning of Photosystems
Photosystems contain many pigment molecules, such as chlorophylls and carotenoids, arranged in a particular organization across two domains — the antenna complex and the reaction center. The main aim of the pigment...
Functioning of Photosystems
Photosystems contain many pigment molecules, such as chlorophylls and carotenoids, arranged in a particular organization across two domains — the antenna complex and the reaction center. The main aim of the pigment...
4.8K
Photoreceptors and Plant Responses to Light
20.3K
Light plays a significant role in regulating the growth and development of plants. In addition to providing energy for photosynthesis, light provides other important cues to regulate a range of developmental and physiological responses in plants.
20.3K
Photosystem II
70.1K
The multi-protein complex photosystem II (PS II) harvests photons and transfers their energy through its bound pigments to its reaction center, and ultimately to photosystem I (PSI) through the electron transport chain. The pigments responsible for caputirng the light energy in photosystems include chlorophyll a, chlorophyll b, and carotenoids.
The pigment molecules are arranged across two photosystem domains — the antenna complex and the reaction center. The main aim of the pigment...
The pigment molecules are arranged across two photosystem domains — the antenna complex and the reaction center. The main aim of the pigment...
70.1K
The Antenna Complex
6.0K
Plants and other photosynthetic organisms comprise pigments capable of absorption of direct sunlight. These pigments are present in the reaction center - the main site of photochemical reactions as well as in the antenna complex. Under average light conditions, the rate at which reaction center pigments absorb light is far below the electron transport chain's capacity. As a result, the reaction center alone cannot provide enough energy to drive photosynthesis. The photosynthetic efficiency...
6.0K


