کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
2041271 | 1073154 | 2014 | 9 صفحه PDF | دانلود رایگان |
• Eg5, Kif15, and dynein work together to build a robust bipolar spindle
• Excessive inward force generation results in monopolar spindle formation
• Excessive outward force results in unstable spindles with splayed spindle poles
• Outward force generation is required for establishing tension on kinetochores
SummaryBipolar spindle assembly requires force to organize the microtubule network. Here, we show that three motor proteins, namely Eg5, Kif15, and dynein, act together to produce the right force balance in the spindle. Excessive inward force results in monopolar spindle formation, while excessive outward force generation results in unstable spindles with splayed spindle poles. Blocking activity of all three motors prevents bipolar spindle formation, but established bipolar spindles are refractory to loss of all motor activity. Further analysis shows that although these preformed spindles remain bipolar, outward force generation is required to establish sufficient tension on kinetochores and to accomplish successful chromosome segregation. Together, these results show how Eg5, Kif15, and dynein work together to build a bipolar spindle and reveal an important role for antagonistic motors in chromosome segregation.
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Journal: - Volume 8, Issue 4, 21 August 2014, Pages 948–956