File:Local-ATP-Generation-by-Brain-Type-Creatine-Kinase-(CK-B)-Facilitates-Cell-Motility-pone.0005030.s007.ogv
Local-ATP-Generation-by-Brain-Type-Creatine-Kinase-(CK-B)-Facilitates-Cell-Motility-pone.0005030.s007.ogv (Ogg multiplexed audio/video file, Theora/Vorbis, length 14 s, 441 × 336 pixels, 815 kbps overall, file size: 1.36 MB)
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[edit]DescriptionLocal-ATP-Generation-by-Brain-Type-Creatine-Kinase-(CK-B)-Facilitates-Cell-Motility-pone.0005030.s007.ogv |
English: Cyclocreatine selectively inhibits CK-B-induced migration. MEF-YFP, MEF-CK-B, MEF-MYR-CK-B and MEK-AK1 cells were followed during migration along FN. In contrast to YFP and AK1 complemented MEFs, MEF-CK-B and MEF-MYR-CK-B migration was inhibited by cCr and a strong morphological effect was observed. Video S3 corresponds with Figure 6C. Time-lapse phase-contrast microscopy was performed by taking an image every 10 min. Display rate is 10 frames/s. |
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Source | Video S3 from Kuiper J, van Horssen R, Oerlemans F, Peters W, van Dommelen M, te Lindert M, ten Hagen T, Janssen E, Fransen J, Wieringa B (2009). "Local ATP Generation by Brain-Type Creatine Kinase (CK-B) Facilitates Cell Motility". PLOS ONE. DOI:10.1371/journal.pone.0005030. PMID 19333390. PMC: 2659440. | ||
Author | Kuiper J, van Horssen R, Oerlemans F, Peters W, van Dommelen M, te Lindert M, ten Hagen T, Janssen E, Fransen J, Wieringa B | ||
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current | 20:12, 30 October 2012 | 14 s, 441 × 336 (1.36 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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Author | Kuiper J, van Horssen R, Oerlemans F, Peters W, van Dommelen M, te Lindert M, ten Hagen T, Janssen E, Fransen J, Wieringa B |
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Usage terms | http://creativecommons.org/licenses/by/3.0/ |
Image title | Cyclocreatine selectively inhibits CK-B-induced migration. MEF-YFP, MEF-CK-B, MEF-MYR-CK-B and MEK-AK1 cells were followed during migration along FN. In contrast to YFP and AK1 complemented MEFs, MEF-CK-B and MEF-MYR-CK-B migration was inhibited by cCr and a strong morphological effect was observed. Video S3 corresponds with Figure 6C. Time-lapse phase-contrast microscopy was performed by taking an image every 10 min. Display rate is 10 frames/s. |
Software used | |
Date and time of digitizing | 2009 |
Language | English |