| Literature DB >> 30205820 |
Elaheh Shekaramiz1, Rupak Doshi2,3, H Kumar Wickramasinghe4,5.
Abstract
Intracellular protein and proteomic studies using mass spectrometry, imaging microscopy, flow cytometry, or western blotting techniques require genetic manipulation, cell permeabilization, and/or cell lysis. We present a biophysical method that employs a nanoaspirator to 'fish' native cytoplasmic or nuclear proteins from single mammalian cells, without compromising cell viability, followed by ex cellulo quantitative detection. Our work paves the way for spatiotemporally-controlled, quantitative, live, single-cell proteomics.Entities:
Keywords: Live cell protein detection; Nanopipette; Proteomics; Single cell analysis
Mesh:
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Year: 2018 PMID: 30205820 PMCID: PMC6134770 DOI: 10.1186/s12951-018-0395-5
Source DB: PubMed Journal: J Nanobiotechnology ISSN: 1477-3155 Impact factor: 10.435
Fig. 1Schematics of the nanoaspirator setup. a The aspiration set up is comprised of X, Y, Z translation stages for course movement and a peizo actuator for fine movements. The nanoaspirator is mounted to the piezo actuator. The inner electrode and the outer Ir/Pt coated electrode are connected to a sourcemeter for voltage applications. b SEM image of the nanoaspirator tip
Fig. 2Protein fishing from HeLa cells. Sampling of HeLa cells 24 h after actinomycin D treatment. a Cytoplasmic or b nuclear extract was deposited on grid-marked, APTES-coated coverslips, followed by protein detection using a cocktail of anti-β-actin-FITC and anti-p53-APC. The coverslips were imaged under the FITC and APC filter channels, sequentially
Fig. 3Standard curve generation for β-actin. a A standard curve for β-actin was generated by the aspiration-and-deposition of different volumes of pure β-actin solution on a coverslip, and b correlating the number of spotted molecules (gauged from the height of solution in the nanopipette) with the fluorescence intensity of FITC-anti-β-actin, which was used to stain the spot
Fig. 4β-Actin quantification from NIH 3T3 extracts. Aspiration and quantification of β-actin from the cytoplasm of a single NIH 3T3 cell. Fluorescence from the spot was used to extrapolate the number of molecules from the standard curve shown in Fig. 3. The total number of molecules in the 20–50 fL extract was calculated to be 6.5 ± 2.5 × 105 (mean ± range, N = 4), which scales to 6.5 ± 2.5 × 107 for a total cell volume of ~ 2000 fL