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Recruitment Kinetics of Tropomyosin Tpm3.1 to Actin Filament Bundles in the Cytoskeleton Is Independent of Actin Filament Kinetics

机译:肌动蛋白丝TPM3.1对细胞骨架肌动蛋白丝束的募集动力学与肌动蛋白丝动力学无关。

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摘要

The actin cytoskeleton is a dynamic network of filaments that is involved in virtually every cellular process. Most actin filaments in metazoa exist as a co-polymer of actin and tropomyosin (Tpm) and the function of an actin filament is primarily defined by the specific Tpm isoform associated with it. However, there is little information on the interdependence of these co-polymers during filament assembly and disassembly. We addressed this by investigating the recovery kinetics of fluorescently tagged isoform Tpm3.1 into actin filament bundles using FRAP analysis in cell culture and in vivo in rats using intracellular intravital microscopy, in the presence or absence of the actin-targeting drug jasplakinolide. The mobile fraction of Tpm3.1 is between 50% and 70% depending on whether the tag is at the C- or N-terminus and whether the analysis is in vivo or in cultured cells. We find that the continuous dynamic exchange of Tpm3.1 is not significantly impacted by jasplakinolide, unlike tagged actin. We conclude that tagged Tpm3.1 may be able to undergo exchange in actin filament bundles largely independent of the assembly and turnover of actin.
机译:肌动蛋白的细胞骨架是细丝的动态网络,几乎参与每个细胞过程。后生动物中大多数肌动蛋白丝都以肌动蛋白和原肌球蛋白(Tpm)的共聚物形式存在,肌动蛋白丝的功能主要由与其相关的特定Tpm同工型来定义。但是,关于这些共聚物在长丝组装和拆卸过程中相互依赖性的信息很少。我们通过研究在细胞培养物中使用FRAP分析荧光标记的同工型Tpm3.1到肌动蛋白丝束中的恢复动力学,并在有或没有肌动蛋白靶向药物jasplakinolide的情况下使用细胞内活体显微镜检查法在大鼠体内进行了研究。 Tpm3.1的可移动部分在50%到70%之间,具体取决于标签是在C端还是N端,以及分析是在体内还是在培养的细胞中进行。我们发现,与标记的肌动蛋白不同,jasplakinolide对Tpm3.1的持续动态交换没有显着影响。我们得出的结论是,标记的Tpm3.1可能能够在很大程度上独立于肌动蛋白的组装和周转的肌动蛋白丝束中进行交换。

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