Geometric regulation of kinetochore orientation [electronic resource] / Yoshinori Watanabe.

By: Watanabe, Yoshinori, 1961- [spk]Material type: FilmFilmSeries: Henry Stewart talksBiomedical & life sciences collection. Cell division cycle : controlling when and where cells divide and differentiate: Publisher: London : Henry Stewart Talks, 2009Description: 1 online resource (1 streaming video file (24 min.) : color, sound)Subject(s): Cell Cycle | KinetochoresOnline resources: Click here to access online | Series
Contents:
Contents: The cell cycle -- Aurora B-dependent destabilization -- The attachment is stabilized under tension -- Tension-dependent reorientation -- Kinetochore geometry -- Organization of centromeres -- Budding yeast -- Two models to account for the mono-polar attachment at meiosis I -- Rec8 vs. Rad21 at the centromere -- Cohesion-mediated kinetochore orientation model -- Is the central core cohesion defective in moa1Δ? -- A lacO array in the core centromere -- Excision of core centromeres -- Cohesion at core centromeres depends on Moa1 as well as Rec8 -- Cohesion at core centromeres is disrupted at prophase II -- Centromeric resolution in mitosis -- Core centromere is intrinsically prevented from establishment of cohesion -- Artificial tether at the core centromere -- Opposite effects of tethers at the core and peri-centromeric regions.
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Animated audio-visual presentation with synchronized narration.

Title from title frames.

Contents: The cell cycle -- Aurora B-dependent destabilization -- The attachment is stabilized under tension -- Tension-dependent reorientation -- Kinetochore geometry -- Organization of centromeres -- Budding yeast -- Two models to account for the mono-polar attachment at meiosis I -- Rec8 vs. Rad21 at the centromere -- Cohesion-mediated kinetochore orientation model -- Is the central core cohesion defective in moa1Δ? -- A lacO array in the core centromere -- Excision of core centromeres -- Cohesion at core centromeres depends on Moa1 as well as Rec8 -- Cohesion at core centromeres is disrupted at prophase II -- Centromeric resolution in mitosis -- Core centromere is intrinsically prevented from establishment of cohesion -- Artificial tether at the core centromere -- Opposite effects of tethers at the core and peri-centromeric regions.

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