File:Overall-energy-conversion-efficiency-of-a-photosynthetic-vesicle-elife-09541-media1.ogv
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[edit]DescriptionOverall-energy-conversion-efficiency-of-a-photosynthetic-vesicle-elife-09541-media1.ogv |
English: Chromatophore structural model. A movie that shows a detailed structural model for the low-light adapted chromatophore vesicle as displayed in Figure 1 (Cartron et al., 2014). Presented is a rotating view of the vesicle comprising LH2 complexes (green), dimeric RC-LH1-PufX complexes (red-blue-lime green), dimeric cytbc1 complexes (magenta), and ATP synthases (orange). For half of the model, proteins are shown in solid surface representation, and for the other half, proteins are shown as transparent surfaces with bacteriochlorophylls (BChls), represented by their porphyrin rings, shown as solid surfaces.
DOI: https://dx.doi.org/10.7554/eLife.09541.004 |
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Source | Video 1. from Sener M, Strumpfer J, Singharoy A, Hunter C, Schulten K (2016). "Overall energy conversion efficiency of a photosynthetic vesicle". eLife. DOI:10.7554/eLife.09541. PMID 27564854. PMC: 5001839. | ||
Author | Sener M, Strumpfer J, Singharoy A, Hunter C, Schulten K | ||
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This file is licensed under the Creative Commons Attribution 4.0 International license.
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Date/Time | Thumbnail | Dimensions | User | Comment | |
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current | 17:26, 24 September 2016 | 12 s, 720 × 720 (12.15 MB) | Open Access Media Importer Bot (talk | contribs) | Automatically uploaded media file from Open Access source. Please report problems or suggestions here. |
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Short title | Chromatophore structural model. |
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Author | Sener M, Strumpfer J, Singharoy A, Hunter C, Schulten K |
Usage terms | http://creativecommons.org/licenses/by/4.0/ |
Image title | A movie that shows a detailed structural model for the low-light adapted chromatophore vesicle as displayed in Figure 1 (Cartron et al., 2014). Presented is a rotating view of the vesicle comprising LH2 complexes (green), dimeric RC-LH1-PufX complexes (red-blue-lime green), dimeric cytbc1 complexes (magenta), and ATP synthases (orange). For half of the model, proteins are shown in solid surface representation, and for the other half, proteins are shown as transparent surfaces with bacteriochlorophylls (BChls), represented by their porphyrin rings, shown as solid surfaces.
DOI: http://dx.doi.org/10.7554/eLife.09541.004 |
Software used | Xiph.Org libtheora 1.1 20090822 (Thusnelda) |
Date and time of digitizing | 2016-08-26 |