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Yeast Formins Bni1 and Bnr1 Utilize Different Modes of Cortical Interaction during the Assembly of Actin Cables

机译:酵母Formins Bni1和Bnr1在肌动蛋白电缆组装过程中利用皮质相互作用的不同模式。

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摘要

The budding yeast formins Bni1 and Bnr1 control the assembly of actin cables. These formins exhibit distinct patterns of localization and polymerize two different populations of cables: Bni1 in the bud and Bnr1 in the mother cell. We generated a functional Bni1-3GFP that improved the visualization of Bni1 in vivo at endogenous levels. Bni1 exists as speckles in the cytoplasm, some of which colocalize on actin cables. These Bni1 speckles display linear, retrograde-directed movements. Loss of polymerized actin or specifically actin cables abolished retrograde movement, and resulted in depletion of Bni1 speckles from the cytoplasm, with enhanced targeting of Bni1 to the bud tip. Mutations that impair the actin assembly activity of Bni1 abolished the movement of Bni1 speckles, even when actin cables were present. In contrast, Bnr1-GFP or 3GFP-Bnr1 did not detectably associate with actin cables and was not observed as cytoplasmic speckles. Finally, fluorescence recovery after photobleaching demonstrated that Bni1 was very dynamic, exchanging between polarized sites and the cytoplasm, whereas Bnr1 was confined to the bud neck and did not exchange with a cytoplasmic pool. In summary, our results indicate that formins can have distinct modes of cortical interaction during actin cable assembly.
机译:发芽的酵母formins Bni1和Bnr1控制肌动蛋白电缆的组装。这些formins表现出独特的定位模式,并且聚合了两个不同的电缆种群:芽中的Bni1和母细胞中的Bnr1。我们生成了一个功能性的Bni1-3GFP,可以改善体内Bni1的内源性水平。 Bni1以斑点形式存在于细胞质中,其中一些共定位在肌动蛋白电缆上。这些Bni1散斑显示线性,逆行定向的运动。聚合肌动蛋白或特异性肌动蛋白电缆的丢失消除了逆行运动,并导致细胞质中的Bni1斑点消失,同时Bni1对芽尖的靶向性增强。即使存在肌动蛋白电缆,也会破坏Bni1的肌动蛋白组装活性的突变消除了Bni1斑点的运动。相反,Bnr1-GFP或3GFP-Bnr1与肌动蛋白电缆没有可检测的缔合,也未观察到为细胞质斑点。最后,光漂白后的荧光恢复表明Bni1是非常动态的,在极化位点和细胞质之间交换,而Bnr1局限于芽颈并且不与细胞质池交换。总而言之,我们的结果表明,在肌动蛋白电缆组装过程中,formins可以具有不同的皮质相互作用模式。

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