Source: Nogales-Gadea, G. et al., Generation of Recombinant Human IgG Monoclonal Antibodies from Immortalized Sorted B Cells. J. Vis. Exp. (2015)
This video demonstrates a method of antibody generation from mammalian cells by introducing plasmid vectors with heavy and light chain genes. These vectors interact with polyethylenimine and enter the cells by forming polyplexes; later, they are translated into individual proteins and assembled into complete antibodies, which are secreted into the extracellular medium.
All procedures involving sample collection have been performed in accordance with the institute's IRB guidelines.
1. Isolation of Peripheral Blood Mononuclear Cells (PBMCs)
2. Staining PBMCs for Sorting CD22+ and immunoglobulin G (IgG+) by Cell Cytometry
3. Sorting of the B Cells CD22+ and IgG+
4. Irradiation of Feeder Cells
NOTE: Perform the preparation of the feeder cells between 1 – 3 days before sorting. At least 5,000 wi38 cells are needed per well in a 96 round well plate. Perform steps 4.1, 4.2 and 4.4 in a hood.
5. Plating Sorted PBMCs, Epstein-Barr Virus (EBV) Infection and Growing
6. ELISA for IgG Antibody Detection
7. RNA Isolation and First Strand complementary DNA (cDNA) Synthesis of the Producing IgG Clones
8. 1st and 2nd PCR for Amplification of the Heavy and Light Chains of the IgG-producing B-cell Clones
9. Cloning and Sequencing of the Heavy and Light Chains of the Producing IgG clones
10. Production of Antibodies in HEK cells
Table 1. Primers used.
1st PCR primers | ||
Forward (5'-3') | Reverse (3'-5') | |
IgG | 5′ L-VH 1 ACAGGTGCCCACTCCCAGGTGCAG | 3′ Cγ CH1 GGAAGGTGTGCACGCCGCTGGTC |
5′ L-VH 3 AAGGTGTCCAGTGTGARGTGCAG | ||
5′ L-VH 4/6 CCCAGATGGGTCCTGTCCCAGGTGCAG | ||
5′ L-VH 5 CAAGGAGTCTGTTCCGAGGTGCAG | ||
κ | 5′ L Vκ 1/2 ATGAGGSTCCCYGCTCAGCTGCTGG | 3′ Cκ 543 GTTTCTCGTAGTCTGCTTTGCTCA |
5′ L Vκ 3 CTCTTCCTCCTGCTACTCTGGCTCCCAG | 3′ Cκ 494 GTGCTGTCCTTGCTGTCCTGCT | |
5′ L Vκ 4 ATTTCTCTGTTGCTCTGGATCTCTG | ||
5′ Pan Vκ ATGACCCAGWCTCCABYCWCCCTG | ||
λ | 5′ L Vλ 1 GGTCCTGGGCCCAGTCTGTGCTG | 3′ Cλ CACCAGTGTGGCCTTGTTGGCTTG |
5′ L Vλ 2 GGTCCTGGGCCCAGTCTGCCCTG | ||
5′ L Vλ 3 GCTCTGTGACCTCCTATGAGCTG | ||
5′ L Vλ 4/5 GGTCTCTCTCSCAGCYTGTGCTG | ||
5′ L Vλ 6 GTTCTTGGGCCAATTTTATGCTG | ||
5′ L Vλ 7 GGTCCAATTCYCAGGCTGTGGTG | ||
5′ L Vλ 8 GAGTGGATTCTCAGACTGTGGTG | ||
2nd PCR primers | ||
Forward (5'-3') | Reverse (3'-5') | |
IgH | 5′ EcoRI VH1 CAACCGGAATTCGCAGGTGCAGCTGG TGCAG |
3′ NheI JH 1,2,4,5 CTGCTAGCTAGCTGAGGAGACGGT GACCAG |
5′ EcoRI VH1 to 5 CAACCGGAATTCAGAGGTGCAGCTG GTGCAG |
3′ NheI JH 3 CTGCTAGCTAGCTGAGAGACGGTGA CCATTG |
|
5′ EcoRI VH3 CAACCGGAATTCAGAGGTGCAGCTG GTGGAG |
3′ NheI JH 6 CTGCTAGCTAGCTGAGGAGACGGTG ACCGTG |
|
5′ EcoRI VH3 23 CAACCGGAATTCAGAGGTGCAGCT GTTGGAG |
||
5′ EcoRI VH4 CAACCGGAATTCACAGGTGCAGCT GCAGGAG |
||
5′ EcoRI VH 4 34 CAACCGGAATTCACAGGTGCAGCTAC AGCAGTG |
||
5′ EcoRI VH 1 18 CTTCCGGAATTCACAGGTTCAGCT GGTGCAG |
||
5′ EcoRI VH 1 24 CTTCCGGAATTCACAGGTCCAGCT GGTACAG |
||
5′ EcoRI VH3 33 CTTCCGGAATTCACAGGTGCAGCT GGTGGAG |
||
5′ EcoRIVH 3 9 GATCCGGAATTCAGAAGTGCAGCT GGTGGAG |
||
5′ EcoRI VH4 39 GATCCGGAATTCACAGCTGCAGCT GCAGGAG |
||
5′ EcoRI VH 6 1 GATCCGGAATTCACAGGTACAGCT GCAGCAG |
||
κ | 5′ EcoRI Vκ 1 5 CAACCGGAATTCAGACATCCAGATGA CCCAGTC |
3′ BsiWI Jκ 1 to 4 GCCACCGTACGTTTGATYTCCACCTTGGTC |
5′ EcoR1 Vκ 1 9 CTTCCGGAATTCAGACATCCAGTTGAC CCAGTCT |
3′ BsiWI Jκ 2 GCCACCGTACGTTTGATCTCCAG CTTGGTC |
|
5′ EcoR1 Vκ 1D 43 CTTGGCGAATTCAGCCATCCGGATGA CCCAGTC |
3′ BsiWI Jκ 3 GCCACCGTACGTTTGATATCCACT TTGGTC |
|
5′ EcoR1 Vκ 2 24 CTTCCGGAATTCAGATATTGTGATGA CCCAGAC |
||
5′ EcoR1 Vκ 2 28 CTTCCGGAATTCAGATATTGTGATG ACTCAGTC |
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5′ EcoR1 Vκ 2 30 CTTCCGGAATTCAGATGTTGTGATGA CTCAGTC |
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5′ EcoR1 Vκ 3 11 CTTCCGGAATTCAGAAATTGTGTTG ACACAGTC |
||
5′ EcoR1 Vκ 3 15 CTTCCGGAATTCAGAAATAGTGATG ACGCAGTC |
||
5′ EcoR1 Vκ 3 20 CTTCCGGAATTCAGAAATTGTGTTGA CGCAGTCT |
||
5′ EcoR1 Vκ 4 1 CTTCCGGAATTCAGACATCGTGATG ACCCAGTC |
||
λ | 5′ EcoR1 Vλ 1 CTTCCGGAATTCACAGTCTGTGCT GACKCAG |
3′ AvrII Jλ 1 to 3 CTGGTTACCTAGGAGGACGGTSACCT TGGTCCC |
5′ EcoR1 Vλ 2 CTTCCGGAATTCACAGTCTGCCC TGACTCAG |
3′ AvrII Jλ 4 CTGGTTACCTAGGAAAATGATCAGC TGGGTTCC |
|
5′ EcoR1 Vλ 3 CTTCCGGAATTCATCCTATGAGC TGACWCAG |
3′ AvrII Jλ 5 CTGGTTACCTAGGAGGACGGTCAGC TCGGTCCC |
|
5′ EcoR1 Vλ 4 to 5 CTTCCGGAATTCACAGCYTGTG CTGACTCA |
3′ AvrII Jλ 6 CTGGTTACCTAGGAGGACGGTCAGCT GGGTGCC |
|
5′ EcoR1 Vλ 6 CTTCCGGAATTCAAATTTTATGC TGACTCAG |
3′ AvrII Jλ 7 CTGGTTACCTAGGAGGACGGTCAC TTGGTCCAT |
|
5′ EcoR1 Vλ 7 to 8 CTTCCGGAATTCACAGRCTGTG GTGACYCAG |
The authors have nothing to disclose.
Histopaque-1077 | Sigma-Aldrich | 10771 | solution containing polysucrose and sodium diatrizoate |
FACSAria II cell sorter | BD Biosciences | ||
96 U-bottom micro well plates | Costar | 3799 | |
Advanced Roswell Park Memorial Institute (RPMI) 1640 medium | Gibco, Life Technologies | 12633-020 | |
30% v/v EBV-containing supernatant of the B95-8 cell line | ATCC | CRL-1612 | 3.4 x 108 copies/ml |
CpG2006 | Invivogen | ODN 7909 | |
Wi38 cells | Sigma-Aldrich | 90020107 | |
Interleukin-2 | Roche | 10799068001 | |
ELISA plates | Greiner Bio-One, Microlon | 655092 | |
AffiniPure F(ab')2 Fragment Goat Anti-Human IgG, Fcγ Fragment Specific (unconjugated) | Jackson ImmunoResearch | 109-006-008 | |
4% non-fat dry milk (Blotting Grade Blocker) | Biorad | 170-6404 | |
Human IgG | Sigma | I 2511 | HUMAN IgG purified Immunoglobulin, 5.6 mg/ml |
Goat F(ab)2 antihuman IgG Fcγ (conjugated with peroxidase (PO)) | Jackson ImmunoResearch | 109-036-008 | |
ELISA reader (Perkin Elmer 2030) | Perkin Elmer | 2030-0050 | |
Peroxidase-conjugated AffiniPure Rabbit Anti-Human IgM, Fc5µ | Jackson ImmunoResearch | 309-035-095 | |
SuperScript III Cells Direct cDNA Synthesis System | Invitrogen | 18080-200 | |
Applied Biosystems (ABI) GeneAm PCR System 2700 | Applied Biosystems | ||
High Pure RNA Isolation Kit | Roche | 11828665001 | |
Reverse transcription system kit | Promega | A3500 | |
Recombinant Taq DNA Polymerase | TAKARA | R001A | |
Primers (2μl) | Sigma | ||
Ultrapure Agarose | Invitrogen | 16500-500 | |
100 bp ladder | Invitrogen | 15628-019 | |
Quantity One 4.5.2 (Gel Doc 2000) | Biorad | 170-8100 | |
QIAquick PCR purification kit | QIAGEN | 28106 | |
BigDye Terminator v3.1 cycle sequencing kit | Applied Biosystems | 4337455 | |
0.1 ml reaction plate (MicroAMP Optical 96-well) | Applied Biosystems | 4346906 | |
Genetic analyser ABI300 | Applied Biosystems | 4346906 | |
DH5α competent cells (E. coli) | Invitrogen | 18263-012 | |
pFUSEss-CHIg-hG1 (4493 bp) | Invivogen | pfusess-hchg1 | |
pFUSEss-CHIg-hG4 (4484 bp) | Invivogen | pfusess-hchg4 | |
pFUSE2ss-CLIg-hk (3875 bp) | Invivogen | pfuse2ss-hclk | |
pFUSE2ss-CLIg-hl2 (3883 bp) | Invivogen | pfuse2ss-hcll2 | |
SOC medium | Invitrogen | 15544-034 | |
LB-based agar medium supplemented with Zeocin (Fast-Media Zeo Agar) | Invivogen | fas-zn-s | |
Terrific Broth (TB)-based liquid medium supplemented with Zeocin (Fast-Media Zeo TB) | Invivogen | fas-zn-l | |
DNA Miniprep kit | Omega Bio Technology | D6942-02 | |
Nanodrop (ND1000 Spectrophotometer) | Nanodrop | ||
LB-based agar medium supplemented with Blasticidin (Fast-Media Blast Agar) | Invivogen | fas-bl-s | |
Terrific Broth (TB)-based liquid medium supplemented with Blasticidin (Fast-Media Blast TB) | Invivogen | fas-bl-l | |
EcoRI | New England Biolabs | R0101S | 20,000 U/ml, in 10x NEBuffer EcoRI |
NheI | New England Biolabs | R0131S | 10,000 U/ml, in 10x NEBuffer 2.1 |
2-Log DNA ladder | New England Biolabs | N3200S | 0.1-10.0 kb, 1,000 μg/ml |
XmaI | New England Biolabs | R0180S | 10,000 U/ml, in 10x CutSmart Buffer |
BsiWI | New England Biolabs | R0553S | 10,000 U/ml, in 10x NEBuffer 3.1 |
AvrII | New England Biolabs | R0174S | 5,000 U/ml, in 10x CutSmart Buffer |
FastAP Thermosensitive Alkaline Phosphatase | Thermo Scientific | EF0651 | 1 U/µL, in 10x FastAP Buffer |
DH5α competent cells | Invitrogen | 18263-012 | |
PE Mouse Anti-Human IgG | BD Pharmingen | 555787 | |
anti-CD22, PerCP-Cy5.5, Clone: HIB22 | Fisher scientific | BDB563942 | |
QIAprep Spin Miniprep Kit | QIAGEN | 27106 | |
BigDye Terminator v3.1 | Applied Biosystems | 4337455 |