File:Vinculin-controls-talin-engagement-with-the-actomyosin-machinery-ncomms10038-s4.ogv

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Vinculin-controls-talin-engagement-with-the-actomyosin-machinery-ncomms10038-s4.ogv(Ogg Theora video file, length 7.2 s, 540 × 360 pixels, 433 kbps, file size: 380 KB)

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English: Supplementary Movie 3 Related to Figure 2. Recording of FLAP in FAs from NIH3T3 cells expressing the indicated PAGFP-talin construct +/- constitutively active vinculin. The top panel shows FLAP in control NIH3T3 cells. The fluorescence intensity plot shows the FLAP over time. Note the increased turnover of talΔR4-R10 and talΔR1-R10 compared to talinFL. The bottom panel shows FLAP in NIH3T3 cells co-expressing vinT12. Note the reduced turnover of talinFL and talΔR4-R10, but not talΔR1-R10, in the presence of constitutively active vinculin. Images were taken every 10 seconds for 5 minutes following photoactivation. Images are played back at 5 frames/s. Scale bar represents 5 μm.
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Source Video file from Atherton P, Stutchbury B, Wang D, Jethwa D, Tsang R, Meiler-Rodriguez E, Wang P, Bate N, Zent R, Barsukov I, Goult B, Critchley D, Ballestrem C (2015). "Vinculin controls talin engagement with the actomyosin machinery". Nature Communications. DOI:10.1038/ncomms10038. PMID 26634421. PMC: 4686655.
Author Atherton P, Stutchbury B, Wang D, Jethwa D, Tsang R, Meiler-Rodriguez E, Wang P, Bate N, Zent R, Barsukov I, Goult B, Critchley D, Ballestrem C
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Date/TimeThumbnailDimensionsUserComment
current03:39, 30 October 20167.2 s, 540 × 360 (380 KB)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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Format Bitrate Download Status Encode time
VP9 360P 198 kbps Completed 17:05, 25 October 2018 2.0 s
Streaming 360p (VP9) Not ready Unknown status
VP9 240P 99 kbps Completed 17:05, 25 October 2018 3.0 s
Streaming 240p (VP9) 99 kbps Completed 23:37, 21 December 2023 11 s
WebM 360P 504 kbps Completed 03:39, 30 October 2016 2.0 s
Streaming 144p (MJPEG) 237 kbps Completed 01:23, 18 November 2023 0.0 s

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