| Literature DB >> 33111071 |
Zhichao Fan1,2, Zbigniew Mikulski3, Sara McArdle3, Prithu Sundd4, Klaus Ley1,5.
Abstract
This protocol introduces the SuperSTORM technique, combining stochastic optical reconstruction microscopy (STORM) and molecular modeling. SuperSTORM is optimized for acquiring and processing STORM images of neutrophil integrins but can be used for any cell-surface molecule with known structure and antibody-binding site(s). SuperSTORM identifies molecular cut-offs for eliminating multiple blinks of STORM imaging, determines colocalization, identifies clusters, and reveals molecular orientations and distributions. This protocol extends STORM imaging to cells in microfluidic systems. Improved resolution is achieved by using biomolecule-inherent parameters. For complete information on the generation and use of this protocol, please refer to the paper by Fan et al. (2019).Entities:
Mesh:
Year: 2020 PMID: 33111071 PMCID: PMC7580203 DOI: 10.1016/j.xpro.2019.100012
Source DB: PubMed Journal: STAR Protoc ISSN: 2666-1667
Figure 1Integrin αXβ2 Ectodomain
PDB 3K6S (https://www.rcsb.org/structure/3k6s). αX and β2 chains are labeled as dark and light blue, respectively.
Figure 2PatternForge
Sixty-four ways that two bent-high affinity β2 integrin molecules may be oriented (eight directions, in rows, and eight orientations, in columns). The simulation of each condition is included in the Supplemental Dataset 1.
Figure 3Molecular Cut-Off
Distance distributions of localizations emanating from the same mAb24 Fab (open) or mAb24 Fabs bound to adjacent integrin molecules (filled), based on simulations of 64,000 randomly oriented integrin molecules. Adopted from Figure 3F in Fan et al., 2019.
Figure 4Flow Cytometry Prep Work
(A) Dot plot showing the purity of human neutrophil isolation assessed by staining of CD66b and Siglec-8.
(B) Dot plot showing the viability of isolated human neutrophils assessed by staining of Ghost Dye™. EtOH killed cells were served as a positive control (left plot).
(C) Linear correlations of the antibody binding capacity (ABC) and the median fluorescence intensity (MFI) of calibration beads.
(D) Histogram showing the expression of CD11b on neutrophil surface before (gray) and after (green) fMLP stimulation. Isotype control is shown as the open black curve.
(E) Histogram showing the expression of L-selectin on neutrophil surface before (gray) and after (red) fMLP stimulation. Isotype control is shown as the open black curve. In this example, viability was 99% (B), CD11b upregulation by fMLP was > 3-fold (D) and L-selectin was expressed by all resting neutrophils (E). This indicates healthy neutrophils.
Figure 5Microfluidic Set Up
The PDMS microfluidic chip is sealed on top of a 1.5# 25mm-diameter coverglass by magnetic clamp to form nine parallel microfluidic channels with a height of 29 μm and a width of 300 μm. The coverglass is coated with adhesion molecules (2 μg·mL−1 P-selectin, 10 μg·mL−1 ICAM-1) to support leukocyte rolling and adhesion. The shear stress is generated by modulating the water-level between inlet and outlet reserves.
Figure 6Neutrophil Rolling and Arrest
Representative bright-field images showing the process of neutrophil rolling and arrest on the substrate of P-selectin/ICAM-1/IL-8 under a shear stress of 6 dyn·cm-2. Scale bar is 10 μm.
Figure 7TRIF and STORM Images of Integrin Activation
Representative images of KIM127 (magenta) and mAb24 (cyan) on the footprint of an IL-8 triggered arrest neutrophil on the substrate of P-selectin/ICAM-1. (A) TIRF image, adopted from Figure 1A in Fan et al., 2019. (B) Pointillism map of the localization data from the STORM acquisition, adopted from Figure 2A in Fan et al., 2019. Scale bar is 1 μm.
| REAGENT or RESOURCE | SOURCE | IDENTIFIER |
|---|---|---|
| Anti-human β2 integrin (clone mAb24) Fab | Biolegend | Customized |
| Anti-human β2 integrin (clone KIM127) | Lymphocyte Culture Center at the University of Virginia | Customized |
| Anti-human CD11b (FITC, clone ICRF44) | Biolegend | Cat# 301330 |
| Anti-human L-selectin (PE, DREG-56) | Biolegend | Cat# 304806 |
| Anti-human CD66b (FITC, clone G10F5) | Biolegend | Cat# 305104 |
| Anti-human Siglec-8 (PE, clone 7C9) | Biolegend | Cat# 347104 |
| anti-human CD16 (AF488, clone 3G8) | Biolegend | Cat# 302019 |
| anti-human CD16 (AF647, clone 3G8) | Biolegend | Cat# 302020 |
| Anti-human β2 integrin (AF488, clone mAb24) | Biolegend | Cat# 363404 |
| anti-human CD14 (BV421, clone M5E2) | Biolegend | Cat# 325627 |
| Rat anti-mouse IgG1 (FITC, clone RMG1-1) | Biolegend | Cat# 406606 |
| Human blood from healthy donors | LJI | N/A |
| Recombinant human P-selectin-Fc | R&D Systems | Cat# 137-PS-050 |
| Recombinant human ICAM-1 -Fc | R&D Systems | Cat# 720-IC-050 |
| Recombinant human IL-8 | R&D Systems | Cat# 208-IL-010 |
| Recombinant human CCL2 | Biolegend | Cat# 571402 |
| Recombinant human TNF-α | Biolegend | Cat# 570102 |
| Casein blocking buffer | Thermo Fisher | Cat# 37528 |
| Fluorescein (FITC) | Thermo Fisher | Cat# 46425 |
| CellTracker Orange CMRA | Thermo Fisher | Cat# C34551 |
| CellTrace Violet | Thermo Fisher | Cat# C34557 |
| CellMask DeepRed | Thermo Fisher | Cat# C10046 |
| Ghost Dye™ Red 710 | Tonbo Biosciences | Cat# 13-0871-T500 |
| Polymorphprep | Cosmo Bio | Cat# AXS-1114683 |
| Ficoll-Paque Plus | GE Healthcare | Cat# 17144003 |
| Human Serum Albumin (HSA) | Gemini | Cat# 800-120 |
| Paraformaldehyde | Thermo Fisher | Cat# 28906 |
| Glutaraldehyde | Sigma-Aldrich | Cat# G5882-10X1ML |
| Mercaptoethanolamine | Sigma-Aldrich | Cat# M9768-5G |
| Glucose Oxidase from Aspergillus niger | Sigma-Aldrich | Cat# 49180 |
| Catalase from bovine liver | Sigma-Aldrich | Cat# C9322 |
| Nanodiamond (100 nm Carboxylated Red FND,~3ppm NV,1 mg/mLin DI water,10 ml) | Adamasnano | Cat# NDNV100nmHi10ml |
| Pierce™ Fab Preparation Kit | Thermo Fisher | Cat# 44985 |
| DyLight™ 550 Microscale Antibody Labeling Kit | Thermo Fisher | Cat# 84531 |
| DyLight™ 650 Microscale Antibody Labeling Kit | Thermo Fisher | Cat# 84536 |
| Quantum Simply Cellular anti-Mouse | Bangs Laboratories | Cat# 810 |
| EasySep™ Human Monocyte Enrichment Kit without CD16 Depletion | StemCell | Cat# 19058 |
| Endothelial SingleQuots Kit | Lonza | Cat# CC-4176 |
| Raw data of E-H+ αXβ2 integrin crystal structure | Protein Data Bank | PDB: |
| Raw data of Fab crystal structure | Protein Data Bank | PDB: |
| Raw data of E-H- αXβ2 integrin crystal structure | Protein Data Bank | PDB: |
| Raw data of H+ αIIBβ3 integrin crystal structure | Protein Data Bank | PDB: |
| Electron microscopy image of E+H+ β2 integrin | N/A | |
| Electron microscopy images of E- and E+ β2 integrin | N/A | |
| Hybridoma of KIM127 | ATCC | Cat# CRL-2838 |
| HUVEC | ATCC | Cat# CRL-1730 |
| Primary human neutrophils | This paper | N/A |
| Primary human monocytes | This paper | N/A |
| FIJI-ImageJ2 | imagej.net/ImageJ2 | |
| Imaris 9.0 | Bitplane | |
| Nikon STORM software | Nikon | N/A |
| Thunder STORM | ||
| CCP4MG | ||
| Prism 7 | GraphPad | |
| MATLAB | MathWorks | |
| Pairfinder | Custom Algorithm on Github | |
| NanoHills | Custom Algorithm on Github | |
| PowerPoint (for PatternForge) | Microsoft Office | |
| Excel (for PatternForge) | Microsoft Office | |
| Roswell Park Memorial Institute (RPMI) medium 1640 without phenol red | Thermo Fisher | Cat# 11835055 |
| phosphate-buffered saline (PBS) without Ca2+ and Mg2+ | Thermo Fisher | Cat# 10010049 |
| Phenol Red Free Endothelial Cell Growth Basal Medium | Lonza | Cat# CC-3129 |
| μ-Slide VI 0.5 Glass Bottom chambers | ibidi | Cat# |