Department of Cell Biology, UT Southwestern Medical Center, Dallas, Texas, USA.
Traffic. 2020 Sep;21(9):603-616. doi: 10.1111/tra.12755. Epub 2020 Jul 22.
Clathrin mediated endocytosis (CME) has been extensively studied in living cells by quantitative total internal reflection fluorescence microscopy (TIRFM). Fluorescent protein fusions to subunits of the major coat proteins, clathrin light chains or the heterotetrameric adaptor protein (AP2) complexes, have been used as fiduciary markers of clathrin coated pits (CCPs). However, the functionality of these fusion proteins has not been rigorously compared. Here, we generated stable cells lines overexpressing mRuby-CLCa and/or μ2-eGFP, σ2-eGFP, two markers currently in use, or a novel marker generated by inserting eGFP into the unstructured hinge region of the α subunit (α-eGFP). Using biochemical and TIRFM-based assays, we compared the functionality of the AP2 markers. All of the eGFP-tagged subunits were efficiently incorporated into AP2 and displayed greater accuracy in image-based CCP analyses than mRuby-CLCa. However, overexpression of either μ2-eGFP or σ2-eGFP impaired transferrin receptor uptake. In addition, μ2-eGFP reduced the rates of CCP initiation and σ2-eGFP perturbed AP2 incorporation into CCPs and CCP maturation. In contrast, CME and CCP dynamics were unperturbed in cells overexpressing α-eGFP. Moreover, α-eGFP was a more sensitive and accurate marker of CCP dynamics than mRuby-CLCa. Thus, our work establishes α-eGFP as a robust, fully functional marker for CME.
网格蛋白介导的内吞作用(CME)在活细胞中已通过定量全内反射荧光显微镜(TIRFM)进行了广泛研究。荧光蛋白融合到主要外壳蛋白的亚基、网格蛋白轻链或异源四聚体衔接蛋白(AP)复合物中,被用作网格蛋白包被小窝(CCP)的标志性蛋白。然而,这些融合蛋白的功能尚未得到严格比较。在这里,我们生成了稳定表达 mRuby-CLCa 和/或 μ2-eGFP、σ2-eGFP(目前正在使用的两个标志物)或通过将 eGFP 插入 α 亚基无规则铰链区而生成的新型标志物(α-eGFP)的稳定细胞系。通过生化和基于 TIRFM 的测定,我们比较了 AP2 标志物的功能。所有 eGFP 标记的亚基都能有效地被 AP2 整合,并且在基于图像的 CCP 分析中比 mRuby-CLCa 具有更高的准确性。然而,μ2-eGFP 或 σ2-eGFP 的过表达均会损害转铁蛋白受体的摄取。此外,μ2-eGFP 降低了 CCP 起始的速率,σ2-eGFP 扰乱了 AP2 向 CCP 的整合和 CCP 的成熟。相比之下,过表达 α-eGFP 的细胞中 CME 和 CCP 动力学未受到干扰。此外,α-eGFP 是 CCP 动力学的更敏感和准确的标志物,比 mRuby-CLCa 更准确。因此,我们的工作确立了 α-eGFP 作为 CME 的可靠、完全功能性标志物。