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Automated mitotic spindle tracking suggests a link between spindle dynamics, spindle orientation, and anaphase onset in epithelial cells

机译:自动化有丝分子主轴跟踪表明上皮细胞中的主轴动力学,主轴取向和外阴上的链接

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Proper spindle positioning at anaphase onset is essential for normal tissue organization and function. Here we develop automated spindle-tracking software and apply it to characterize mitotic spindle dynamics in the Xenopus laevis embryonic epithelium. We find that metaphase spindles first undergo a sustained rotation that brings them on-axis with their final orientation. This sustained rotation is followed by a set of striking stereotyped rotational oscillations that bring the spindle into near contact with the cortex and then move it rapidly away from the cortex. These oscillations begin to subside soon before anaphase onset. Metrics extracted from the automatically tracked spindles indicate that final spindle position is determined largely by cell morphology and that spindles consistently center themselves in the XY-plane before anaphase onset. Finally, analysis of the relationship between spindle oscillations and spindle position relative to the cortex reveals an association between cortical contact and anaphase onset. We conclude that metaphase spindles in epithelia engage in a stereotyped "dance," that this dance culminates in proper spindle positioning and orientation, and that completion of the dance is linked to anaphase onset.
机译:在常规组织组织和功能时,Anaphase发作时适当的主轴定位对于正常的组织组织至关重要。在这里,我们开发自动主轴跟踪软件,并将其应用于特征杂志Laevis胚胎上皮的有丝分子主轴动态。我们发现中期主轴首先经过持续的旋转,以最终定位使它们带到轴上。这种持续的旋转之后是一组醒目的刻板旋转振荡,使主轴与皮质近接触,然后从皮质迅速移动。这些振荡在后期发作前很快就开始消退。从自动跟踪的主轴提取的度量表示最终的主轴位置在很大程度上通过细胞形态确定,并且在后期发作之前,纺丝在XY平面中始终处于XY平面中。最后,对相对于皮质的主轴振荡和主轴位置之间的关系的分析揭示了皮质接触和后源性发作之间的关联。我们得出结论,上皮内的中期纺锤体从事典型的“舞蹈”,这种舞蹈在适当的主轴定位和方向上达到了态度,而且舞蹈的完成与清代发作相关联。

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