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Imaging protein dynamics in live mitotic cells.

机译:在活的有丝分裂细胞中成像蛋白质动力学。

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摘要

To ensure that genetic material is accurately segregated during mitosis, eukaryotic cells assemble a mitotic spindle, a dynamic structure composed of microtubules and associated regulatory, structural and motor proteins. Although much has been learned in the past decades from direct observations of live cells expressing fluorescently tagged spindle proteins, a complete understanding of spindle assembly requires a detailed analysis of the dynamic behavior of component parts. Proteins tagged with conventional fluorophores, however, make such an analysis difficult because all of the molecules are uniformly fluorescent. To alleviate this problem, we have tagged proteins with a photoactivatable variant of GFP (PA-GFP), thereby allowing one to follow the behavior of a subset of tagged molecules in the cell. Here, we describe methods to tag and express proteins with PA-GFP, locally photoactivate the recombinant protein and record the dynamic behavior of the photoactivated molecules in live cells. We provide examples of photoactivable proteins in mammalian and yeast cells to illustrate the power of this approach to examine the dynamics of spindle formation and function in diverse cells.
机译:为了确保有丝分裂期间遗传物质的正确分离,真核细胞组装了有丝分裂纺锤体,这是一种由微管及相关调节蛋白,结构蛋白和运动蛋白组成的动态结构。尽管在过去的几十年中,通过直接观察表达荧光标记的纺锤体蛋白的活细胞已经学到了很多东西,但是对纺锤体组装的完整理解需要对组成部件的动态行为进行详细分析。但是,用常规荧光团标记的蛋白质使这种分析变得困难,因为所有分子均具有均匀的荧光。为了缓解这个问题,我们用可光活化的GFP变体(PA-GFP)标记了蛋白质,从而使人们可以追踪细胞中一部分标记分子的行为。在这里,我们描述了用PA-GFP标记和表达蛋白质,局部光活化重组蛋白质并记录活细胞中光活化分子的动态行为的方法。我们提供了哺乳动物和酵母细胞中可光活化蛋白的实例,以说明这种方法检查各种细胞中纺锤体形成和功能动力学的能力。

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