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一种具有不降低的聚(L-脯氨酸)结合能力且适用于成像的人原肌球蛋白I荧光团融合构建体。

A Fluorophore Fusion Construct of Human Profilin I with Non-Compromised Poly(L-Proline) Binding Capacity Suitable for Imaging.

作者信息

Nejedla Michaela, Li Zhilun, Masser Anna E, Biancospino Matteo, Spiess Matthias, Mackowiak Sebastian D, Friedländer Marc R, Karlsson Roger

机构信息

Department of Molecular Biosciences, The Wenner-Gren Institute, Stockholm University, SE-106 91 Stockholm, Sweden.

Fondazione Istituto FIRC di Oncologia Molecolare (IFOM), IT-20139 Milan, Italy.

出版信息

J Mol Biol. 2017 Apr 7;429(7):964-976. doi: 10.1016/j.jmb.2017.01.004. Epub 2017 Jan 8.

Abstract

Profilin is vital for actin organisation in eukaryotic cells. It controls actin filament formation by binding monomeric actin and numerous proteins involved in polarised actin assembly. Important for the latter is the interaction surface formed by the N- and C-terminal helices, which pack close to each other on one side of the molecule at a distance from the actin site and mediate binding to poly-proline sequences present in many of the targeted proteins. Via these interactions, profilin contributes to the spatiotemporal control of actin filament growth. Studies of profilin dynamics in living cells by imaging techniques have been hampered by problems to generate fusion constructs with fluorophore proteins without negatively impacting on its poly-proline binding. With the object to circumvent this problem, we have generated an internal fusion of profilin with the green fluorescent variant citrine, here referred to as citrine-profilin. The characterisation of citrine-profilin (CIT-Pfn) demonstrates that it has full capacity to interact with poly-proline and also binds phosphatidylinositol lipids and actin, albeit with 10 times reduced affinity for the latter. Imaging of living cells expressing CIT-Pfn showed a distribution of the fusion protein similar to endogenous profilin. Furthermore, CIT-Pfn rescued the phenotypes observed after the Crispr/Cas9 knockout of the profilin 1 gene, including the lost migratory capacity characterising the knockout cells. Based on this, we conclude that the CIT-Pfn construct will be useful as a tool for displaying profilin localisation in living cells and obtaining information on its dynamic organisation under different conditions and activations of the actin microfilament and microtubule systems.

摘要

丝切蛋白对于真核细胞中的肌动蛋白组织至关重要。它通过结合单体肌动蛋白和许多参与极化肌动蛋白组装的蛋白质来控制肌动蛋白丝的形成。对于后者而言,由N端和C端螺旋形成的相互作用表面很重要,它们在分子的一侧彼此紧密堆积,距离肌动蛋白位点有一定距离,并介导与许多靶向蛋白质中存在的多聚脯氨酸序列的结合。通过这些相互作用,丝切蛋白有助于肌动蛋白丝生长的时空控制。通过成像技术对活细胞中丝切蛋白动力学的研究受到阻碍,因为难以生成与荧光蛋白的融合构建体而不对其多聚脯氨酸结合产生负面影响。为了规避这个问题,我们构建了丝切蛋白与绿色荧光变体柠檬黄的内部融合体,在此称为柠檬黄 - 丝切蛋白。柠檬黄 - 丝切蛋白(CIT - Pfn)的表征表明它具有与多聚脯氨酸相互作用的全部能力,并且还能结合磷脂酰肌醇脂质和肌动蛋白,尽管对后者的亲和力降低了10倍。对表达CIT - Pfn的活细胞成像显示融合蛋白的分布与内源性丝切蛋白相似。此外,CIT - Pfn挽救了在丝切蛋白1基因的Crispr/Cas9敲除后观察到的表型,包括敲除细胞所特有的迁移能力丧失。基于此,我们得出结论,CIT - Pfn构建体将作为一种工具,用于展示活细胞中丝切蛋白的定位,并获取有关其在肌动蛋白微丝和微管系统的不同条件和激活下的动态组织信息。

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