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Reorientation of mispositioned spindles in short astral microtubule mutant Spc72 Delta is dependent on spindle pole body outer plaque and Kar3 motor protein

机译:短星体微管突变体Spc72 Delta中错误定位的纺锤的重新定向取决于纺锤极体的外部菌斑和Kar3运动蛋白

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Nuclear migration and positioning in Saccharomyces cerevisiae depend on long astral microtubules emanating from the spindle pole bodies (SPBs). Herein, we show by in vivo fluorescence microscopy that cells lacking Spc72, the SPB receptor of the cytoplasmic gamma-tubulin complex, can only generate very short (<1 μm) and unstable astral microtubules. Consequently, nuclear migration to the bud neck and orientation of the anaphase spindle along the mother-bud axis are absent in these cells. However, SPC72 deletion is not lethal because elongated but misaligned spindles can frequently reorient in mother cells, permitting delayed but otherwise correct nuclear segregation. High-resolution time-lapse sequences revealed that this spindle reorientation was most likely accomplished by cortex interactions of the very short astral microtubules. In addition, a set of double mutants suggested that reorientation was dependent on the SPB outer plaque and the astral microtubule motor function of Kar3 but not Kip2/Kip3/Dhc1, or the cortex components Kar9/Num1. Our observations suggest that Spc72 is required for astral microtubule formation at the SPB half-bridge and for stabilization of astral microtubules at the SPB outer plaque. In addition, our data exclude involvement of Spc72 in spindle formation and elongation functions. [References: 57]
机译:酿酒酵母中的核迁移和定位取决于纺锤极体(SPB)发出的长星状微管。本文中,我们通过体内荧光显微镜显示缺少细胞质γ-微管蛋白复合物的SPB受体Spc72的细胞只能产生非常短的(<1μm)和不稳定的星状微管。因此,这些细胞中没有核迁移到芽颈和后​​期纺锤沿着母芽轴的方向。但是,SPC72的缺失并不是致命的,因为细长的但未对准的纺锤体经常可以在母细胞中重新定向,从而可以延迟但可以纠正核分离。高分辨率延时序列显示,这种纺锤体重新定向很可能是通过非常短的星状微管的皮层相互作用来完成的。此外,一组双重突变体表明,重新定向依赖于SP3外斑和Kar3的星形微管运动功能,而不依赖于Kip2 / Kip3 / Dhc1或皮质成分Kar9 / Num1。我们的观察结果表明,Spc72是在SPB半桥上形成星形微管以及在SPB外部斑块上稳定星形微管所必需的。此外,我们的数据排除了Spc72参与纺锤体形成和延伸功能的情况。 [参考:57]

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