Department of Chemistry, College of Liberal Arts and Sciences, University of Illinois Chicago, Chicago, Illinois.
Department of Pharmaceutical Sciences, College of Pharmacy, University of Illinois Chicago, Chicago, Illinois.
Biophys J. 2024 Sep 17;123(18):3051-3064. doi: 10.1016/j.bpj.2024.07.003. Epub 2024 Jul 3.
We present phalloidin-based points accumulation for imaging in nanoscale topography (phalloidin-PAINT), enabling quantitative superresolution imaging of filamentous actin (F-actin) in the cell body and delicate membrane protrusions. We demonstrate that the intrinsic phalloidin dissociation enables PAINT superresolution microscopy in an imaging buffer containing low concentrations of dye-conjugated phalloidin. We further show enhanced single-molecule labeling by chemically promoting phalloidin dissociation. Two benefits of phalloidin-PAINT are its ability to consistently quantify F-actin at the nanoscale throughout the entire cell and its enhanced preservation of fragile cellular structures. In a proof-of-concept study, we employed phalloidin-PAINT to superresolve F-actin structures in U2OS and dendritic cells (DCs). We demonstrate more consistent F-actin quantification in the cell body and structurally delicate membrane protrusions of DCs compared with direct stochastic optical reconstruction microscopy (dSTORM). Using DC2.4 mouse DCs as the model system, we show F-actin redistribution from podosomes to actin filaments and altered prevalence of F-actin-associated membrane protrusions on the culture glass surface after lipopolysaccharide exposure. The concept of our work opens new possibilities for quantitative protein-specific PAINT using commercially available reagents.
我们提出了基于鬼笔环肽的点累积成像纳米形貌技术(phalloidin-PAINT),能够对细胞体和精细膜突中的丝状肌动蛋白(F-actin)进行定量超分辨成像。我们证明了鬼笔环肽的固有解离能力能够在含有低浓度荧光标记鬼笔环肽的成像缓冲液中实现 PAINT 超分辨显微镜。我们进一步通过化学促进鬼笔环肽的解离,实现了单分子标记的增强。鬼笔环肽-PAINT 的两个优点是其能够在整个细胞中始终如一地在纳米尺度上定量 F-actin,以及增强对脆弱细胞结构的保存。在概念验证研究中,我们使用 phalloidin-PAINT 对 U2OS 和树突状细胞(DC)中的 F-actin 结构进行超分辨成像。与直接随机光学重建显微镜(dSTORM)相比,我们证明了在 DC 的细胞体和结构精细的膜突中,F-actin 的定量更一致。我们以 DC2.4 小鼠 DC 为模型系统,证明了脂多糖暴露后,从 podosomes 到肌动蛋白丝的 F-actin 重分布,以及 F-actin 相关膜突在培养玻璃表面上的出现频率改变。我们工作的概念为使用商业可得的试剂进行定量蛋白质特异性 PAINT 开辟了新的可能性。