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DARPins recognizing mTFP1 as novel reagents for in vitro and in vivo protein manipulations

机译:DARPins将mTFP1识别为用于体内和体外蛋白质操作的新型试剂

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Over the last few years, protein-based affinity reagents have proven very helpful in cell and developmental biology. While many of these versatile small proteins can be expressed both in the intracellular and extracellular milieu in cultured cells and in living organisms, they can also be functionalized by fusing them to different protein domains in order to regulate or modulate their target proteins in diverse manners. For example, protein binders have been employed to degrade, trap, localize or enzymatically modify specific target proteins. Whereas binders to many endogenous proteins or small protein tags have been generated, several affinity reagents against fluorescent proteins have also been created and used to manipulate target proteins tagged with the corresponding fluorescent protein. Both of these approaches have resulted in improved methods for cell biological and developmental studies. While binders against GFP and mCherry have been previously isolated and validated, we now report the generation and utilization of designed ankyrin repeat proteins (DARPins) against the monomeric teal fluorescent protein 1 (mTFP1). Here we use the generated DARPins to delocalize Rab proteins to the nuclear compartment, in which they cannot fulfil their regular functions anymore. In the future, such manipulations might enable the production of acute loss-of-function phenotypes in different cell types or in living organisms based on direct protein manipulation rather than on genetic loss-of-function analyses.
机译:在过去的几年中,基于蛋白质的亲和试剂已被证明对细胞和发育生物学非常有帮助。尽管这些多功能小蛋白中的许多都可以在培养细胞和活生物体的细胞内和细胞外环境中表达,但也可以通过将它们融合到不同的蛋白结构域中进​​行功能化,从而以多种方式调节或调节其靶蛋白。例如,已经使用蛋白质结合剂降解,捕获,定位或酶促修饰特定的靶蛋白质。尽管已经生成了许多内源蛋白或小蛋白标签的结合物,但也已经创建了几种针对荧光蛋白的亲和试剂,并用于操纵标有相应荧光蛋白的靶蛋白。这两种方法都导致了用于细胞生物学和发育研究的改进方法。虽然以前已经分离和验证了针对GFP和mCherry的结合剂,但我们现在报道针对单体蓝绿色荧光蛋白1(mTFP1)设计的锚蛋白重复蛋白(DARPins)的产生和利用。在这里,我们使用生成的DARPins将Rab蛋白离域到核区室,在那里它们不再能够履行其正常功能。将来,基于直接蛋白质操作而非遗传功能丧失分析,此类操作可能使不同细胞类型或活生物体中产生急性功能丧失表型。

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