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Method Article

Isolation of Stably Transfected Melanoma Cell Clones

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DOI:

10.3791/63371

August 4th, 2022

In This Article

Summary

A protocol is described for isolating stably transfected melanoma cell clones using glass cylinders. We focus on practical advice that may be decisive for the success of the entire procedure.

Abstract

Cell populations that have stable changes in their genomic information are widely used by scientists as a research model. They do not require repeated cell transfection as it can lead to a heterogeneous cell population and variable transfection efficiency, affecting reproducibility. Moreover, they are preferable for large-scale analyses. The generation of stable cell clones is useful for a wide range of applications, such as research on gene functions and recombinant protein production. There are a few methods to obtain a homogenous cell population upon initial transient transfection. Here, we describe the isolation of single cell clones with glass cylinders. Although this method has been known for some time, there are a few crucial steps, and neglecting them may lead to failure. We have successfully used this method to obtain clones stably overexpressing a protein of interest (POI) or with knockout of a gene of interest (GOI). We describe preparation steps such as the optimization of selecting drug concentrations, preparation of glass cylinders, and validation of whether the obtained clones have the desired change in the expression of the GOI by PCR, western blot analysis, immunostaining, or gDNA sequencing (depending on the type of derived clones). We also discuss the phenotypic heterogeneity of well-established cell lines as this might be an issue in obtaining stable cell clones.

Introduction

Stable transfection of mammalian cells is a routinely used method in several cell culture applications, including cancer research. Its advantage over transient transfection is that the introduced foreign genetic material cannot be lost due to environmental factors (e.g., cell confluency or replication stage) and cell division because it is integrated into the genome of the host1. Development of stably expressing cell lines can be laborious and challenging, but if a sustained expression of genes is required over an extended period, derivation of stable cell lines is a preferred option. The most common aim of transfection is....

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Protocol

1. Cell subculture and seeding for drug concentration optimization

  1. Warm the cell culture medium (in this case, Dulbecco's modified Eagle's medium with a reduced concentration (1.5 g/L) of NaHCO3, 10% (v/v) fetal bovine serum (FBS), 1% (v/v) L-glutamine, and 1% (v/v) antibiotic-antimycotic) and trypsin solution in a water bath to 37 °C.
  2. Aspirate and discard the cell culture medium from the A735 cells growing in a T25 cell culture flask. The cell line is obtained from commercial sources.
  3. Wash out any remaining cell culture medium from the cells by washing the flask with 1 mL of trypsin or PBS solut....

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Results

Using the protocol presented, we provide a detailed demonstration of the isolation of stably transfected melanoma cell clones with the glass cylinder method (Figure 1A). Our studies relate to melanoma cell biology, and the most common research model that we use is the adherent and highly invasive A375 melanoma line. Since our research has shown that melanoma cells produce gelsolin (GSN) at a high level compared to other types of cancer14, we are investigating the role.......

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Discussion

We have provided a detailed description of the isolation of stably transfected melanoma cell clones with glass cylinders. It is important to obtain control clones when deriving clones with changed expression of genes because the results obtained for the targeted modification clones should always be compared to results obtained for controls. In this way, we can check whether the transfection itself or culture with a selective antibiotic does not affect the results of the experiments, instead of some other factors, such as.......

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Disclosures

The authors declare no competing financial interests.

Acknowledgements

This work was supported by the National Center for Science, Poland (project #2016/22/E/NZ3/00654, granted to AJM).

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
15 ml centrifuge tubeGoogleLab ScientificG66010522
150 mm cell culturedish with 20 mm gridFalcon353025
24-wells plateVWR International10062-896
35 mm culture dishEppendorfEP0030700112
6-well plateEppendorfEP0030700113
96-well plateVWR International10062-900 
Acetic acid, 80% solutionChempur115687330
AgaroseProna-AboBLE500
Antibiotic-AntimycoticGibco15240062
anti-GAPDH antibodiesSanta Cruz Biotechnology Inc.,sc-47724
anti-GSN antibodies  - clone C20Santa Cruz Biotechnology Inc.,sc-6405
anti-GSN antibodies  - clone GS-2C4Sigma-AldrichG44896
Bovine Serum Albumin (BSA)Sigma-AldrichA3294
Color Taq PCR Master Mix (2x)EurXE2525
Control Double Nickase PlasmidSanta Cruz Biotechnology Inc.,sc-437281
Coverslipsbionovo16283
Dako Mounting medium ClontechS3023
DMSO -  Dimethyl sulfoxideapplichemA3672,0250
DNA Purification Kit EurX3555-02
donkey anti- mouse-Alexa Fluor 488Invitrogen# A-21202
DTT - 1,4-DithiothreitolSigma-Aldrich10197777001
EcoRI Thermo Fisher ScientificFD0274
EDTA- ethylenediaminetetraacetic acid Poch (Pol-Aura)593280117
EGTA - ethylene glycol-bis(2-aminoethyl ether)- N,N,N’,N’-tetraacetic acid Sigma-AldrichE0396
FBS - Fetal Bovine Serum Gibco10270-106
Gelsolin CRISPR PlasmidsSanta Cruz Biotechnology Inc.,sc-401005-NIC
FormaldehydeSigma-AldrichP6148
GlycerolSigma-AldrichL-4909
high glucose Dulbecco’s modified Eagle’s medium with reduced concentration (1.5 g/l) of NaHCO3 Polish Academy of Science,Wrocfigure-materials-1aw, Poland11-500
Hoechst 33342 Thermo Fisher ScientificH3570
L-GlutamineGibco25030-024
Lignin BionovoB-0521
Lipofectamine 3000 Transfection Reagent InvitrogenL3000-008
Na3VO4Sigma-AldrichS6508
Na4P2O7Sigma-AldrichP8010
NaFSigma-Aldrich450022
NEBuilder Assembly Tool http://nebuilder.neb.com/#!/
pACGFP-C1 Clontech
PageRuler Prestained Protein LadderThermo Fisher Scientific 26616
Perfect 100 bp DNA ladderEurXE3134
phalloidin-Alexa Fluor 568InvitrogenA12380
Phosphatase Inhibitor Cocktail 2Sigma-AldrichP5726
Phosphatase Inhibitor Cocktail 3Sigma-AldrichP0044
Phusion High-Fidelity DNA Polymerase Thermo Fisher ScientificF530S
Pierce BCA Protein Assay Kit Thermo Fisher Scientific 23225
polyethylenimine (PEI)Sigma-Aldrich408727
protease inhibitor cocktailSigma-AldrichP8340
puromycinInviviGenant-pr
SDS - sodium dodecyl sulfate Sigma-AldrichL4509
silicone CX80 Polska
Sodium chloride - NaClChempur7647-14-5
sodium deoxycholateSigma-AldrichD6750259
sucrosePoch (Pol-Aura)PA-06-772090110
the glass cylinders Sigma-AldrichC3983-50EA
Tissue Culture Flask 25mLVWR International10062-868
Tissue-culture 75 cm2 flaskVWR10062-872
Trisma baseSigma-AldrichT1503
Triton X-100Sigma-AldrichX100
trypsin Polish Academy of Science,Wrocfigure-materials-2aw, Poland20-500
ureaSigma-Aldrich8656
xylene solutionChempur115208603

References

  1. Recillas-Targa, F. Multiple strategies for gene transfer, expression, knockdown, and chromatin influence in mammalian cell lines and transgenic animals. Molecular Biotechnology. 34 (3), 337-354 (2006).
  2. Wurm, F. M.

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Tags

Stable Cell ClonesSingle Cell IsolationGlass Cylinder MethodGene KnockoutProtein OverexpressionDrug SelectionWestern BlotPCR AnalysisImmunostaining

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