| Literature DB >> 34151296 |
Yuka A Martens1,2, Siming Xu3, Richard Tait3, Gary Li3, Xinping C Zhao3, Wenyan Lu1,2, Chia-Chen Liu1, Takahisa Kanekiyo1,2, Guojun Bu1,2, Jing Zhao1,2.
Abstract
Apolipoprotein E (apoE) is a major lipid carrier in the brain and closely associated with the pathogenesis of Alzheimer's disease (AD). Here, we describe a protocol for efficient knockout of APOE in human induced pluripotent stem cells (iPSCs) using the CRISPR-Cas9 system. We obtain homozygous APOE knockout (APOE-/- ) iPSCs and further validate the deficiency of apoE in iPSC-derived cerebral organoids. APOE-/- cerebral organoids can serve as a useful tool to study apoE functions and apoE-related pathogenic mechanisms in AD. For complete details on the use and execution of this protocol, please refer to Zhao et al. (2020).Entities:
Keywords: CRISPR; Neuroscience; Organoids; Stem Cells
Mesh:
Year: 2021 PMID: 34151296 PMCID: PMC8190508 DOI: 10.1016/j.xpro.2021.100571
Source DB: PubMed Journal: STAR Protoc ISSN: 2666-1667
Figure 1Selected gRNAs locations within APOE gene and their cutting efficiency and specificity (off-target scores)
Pairs of gRNAs and their predicted DNA deletion lengths to confirm frame shift
| gRNA combinations | Length of deletion (bp) | Frame shift | Truncated protein size |
|---|---|---|---|
| gRNA2+gRNA8 | 59 | Yes | 42 aa |
| gRNA5+gRNA8 | 100 | Yes | 44 aa |
| gRNA2+gRNA5 | 41 | Yes | 48 aa |
Guide RNA sequence for cloning in pX459 plasmid
| Guide RNA | gRNA sequence + adapter |
|---|---|
| gRNA2 F | CACCgAGCTGCGCCAGCAGACCGAG |
| gRNA2 R | aaacCTCGGTCTGCTGGCGCAGCTc |
| gRNA5 F | CACCgGGCCAAGGTGGAGCAAGCGG |
| gRNA5 R | aaacCCGCTTGCTCCACCTTGGCCc |
| gRNA8 F | CACCgACAGTGTCTGCACCCAGCGC |
| gRNA8 R | aaacGCGCTGGGTGCAGACACTGTc |
Figure 2APOE deletion in pooled cells transfected with different gRNA combinations
Figure 3APOE deletion in cells after single cell isolation and amplification
Assay was run on genomic DNA samples from experimental clones and wildtype control. The gel images show that wildtype gives a 304 bp band. PCR products of clones with homozygous deletion (HM) have one band at around 204 bp, while heterozygous-deletion clones (HT) show both bands.
Figure 4Validation of APOE deletion in iPSCs via Sanger DNA sequencing
Clones #11, #34 and #40 show deletions in APOE gene compared with wildtype. Sanger DNA sequencing results of the 5’ and 3’ of deleted genomic region in APOE knockout clone #11 (A and B), #34 (C and D) and #40 (E and F).
Figure 5Characterization of iPSCs after gene editing
(A) Immunostaining of pluripotency markers (Nanog and TRA-1-60) in parental and APOE iPSC lines.
(B) In vitro differentiation of parental and APOE iPSC lines into cells of all three germ layers. Cells were immunostained for Sox17 (endoderm), Brachyury (mesoderm), Nestin (ectoderm), and DAPI (nucleus). Scale bar: 100 μm.
Figure 6Workflow for the generation of cerebral organoids (Created with BioRender.com)
Figure 7Characterization of EBs at early differentiation stages
Representative images of pluripotency (TRA-1-60 and Nanog) and neural stem cell (Nestin and Sox2) markers expression in EBs at different stages.
Figure 8Representative image of cerebral organoids after 12 Weeks of differentiation
Those that are much smaller than others can be excluded from further analysis (an example is shown with red arrow).
Antibodies for immunofluorescence staining
| Antibody | Dilution | Supplier |
|---|---|---|
| Tuj1 (immunostaining) | 1:1000 | Sigma, T2200 |
| Tuj1 (immunostaining) | 1:1000 | Abcam, ab78078 |
| Sox2 (immunostaining) | 1:300 | Abcam, ab97959 |
| Ctip2 (immunostaining) | 1:100 | Abcam, ab18465 |
| Satb2 (immunostaining) | 1:100 | Abcam, ab34735 |
| GFAP (immunostaining) | 1:300 | Millipore, MAB360 |
| Pax6 (immunostaining) | 1:300 | Biolegend, 901302 |
| Tbr2 (immunostaining) | 1:300 | Abcam, ab23345 |
| Nkx2.1 (immunostaining) | 1:300 | Thermo, MA5-13961 |
| S100β (immunostaining) | 1:300 | Abcam, ab52642 |
| Nanog (immunostaining) | 1:300 | Cell Signaling, 4903S |
| TRA-1-60 (immunostaining) | 1:300 | Abcam, ab16288 |
| Nestin (immunostaining) | 1:300 | Abcam, ab18102 |
| Sox17 (immunostaining) | 1:300 | Abcam, ab84990 |
| Brachyury (immunostaining) | 1:300 | R&D Systems, AF2085 |
| ApoE (western blotting) | 1:1000 | Millipore, AB947 |
| Actin (western blotting) | 1:5000 | Sigma, A2228 |
| Alexa Fluor donkey anti-rabbit 488, 594 | 1:500 | Invitrogen: A32790, A32754 |
| Alexa Fluor donkey anti-mouse 488, 594 | 1:500 | Invitrogen: A32766, A32744 |
| Alexa Fluor donkey anti-rat 488, 594 | 1:500 | Invitrogen: A21208, |
| Alexa Fluor donkey anti-goat 488 | 1:500 | Invitrogen: A-11055 |
| IRDye® 800CW Donkey anti-Goat IgG Secondary Antibody | 1:5000 | LI-COR: 926-32214 |
| IRDye® 680RD Donkey anti-Mouse IgG Secondary Antibody | 1:5000 | LI-COR: 926-68072 |
Figure 9Characterization of cerebral organoids at different time points
(A and B) Representative images of the ventricular zone (VZ)-like structure by Tuj1, Sox2 and Pax6 staining at Week 4 of differentiation.
(C and D) Representative images of Ctip2-positive (deep cortical layer marker) and Satb2-positive (superficial cortical layer marker) neurons at Week 4 and 12, respectively. This figure is adapted from Figure 1 in Zhao et al. (2020) (Zhao et al., 2020).
(E) Representative images of Tbr2-positive (intermediate progenitor marker) and Nkx2.1-positive (ventral region marker) cells. Figure reprinted with permission from Zhao et al. 2020.
Figure 10Validation of APOE depletion in cerebral organoids
(A) Representative figures of astrocytes differentiation within cerebral organoids; the differentiation pattern of astrocytes in organoids were monitored by GFAP and S100β immunostaining (astrocytic markers) at Week 4 and 12, respectively. This figure is adapted from Figure 1 in Zhao et al. (2020) (Zhao et al., 2020).
(B) Representative images of markers staining within parental and APOE cerebral organoids.
(C) Size evaluation of parental and APOE cerebral organoids at Week 12. All data are expressed as mean ± SEM (n=6).
(D and E) Detection of apoE expression levels in cerebral organoids via both RT-qPCR (D) and Western blotting (E). All data are expressed as mean ± SEM (n=3). Student’s t test was performed to determine the significance. n.s., not significant, ∗p<0.05, ∗∗∗p<0.001. Figure reprinted with permission from Zhao et al. 2020.
| REAGENT or RESOURCE | SOURCE | IDENTIFIER |
|---|---|---|
| Rabbit polyclonal anti-Tuj1 | Sigma | Cat#: T2200; RRID: |
| Mouse monoclonal anti-Tuj1 (clone 2G10) | Abcam | Cat#: ab78078; RRID: |
| Rabbit polyclonal anti-Sox2 | Abcam | Cat#: ab97959; RRID: |
| Rat monoclonal anti-Ctip2 (clone 25B6) | Abcam | Cat#: ab18465; RRID: |
| Rabbit polyclonal anti-Satb2 | Abcam | Cat#: ab34735; RRID: |
| Mouse monoclonal anti-GFAP (clone GA5) | Millipore | Cat#: MAB360; RRID: |
| Goat polyclonal anti-ApoE | Millipore | Cat#: AB947; RRID: |
| Mouse monoclonal anti-actin (clone AC-74) | Sigma | Cat#: A2228; RRID: |
| Rabbit monoclonal anti-Nanog (clone D73G4) | Cell Signaling Technology | Cat#: 4903 S; RRID: |
| Mouse monoclonal anti-TRA-1-60 (clone TRA-1-60) | Abcam | Cat#: ab16288; RRID: |
| Mouse monoclonal anti-Nestin (clone 2C1.3A11) | Abcam | Cat#: ab18102; RRID: |
| Mouse monoclonal anti-Sox17 (clone 3B10) | Abcam | Cat#: ab84990; RRID: |
| Goat polyclonal anti-Brachyury | R&D Systems | Cat#: AF2085; RRID: |
| Rabbit monoclonal anti-S100β | Abcam | Cat#: ab52642; RRID: |
| Rabbit polyclonal anti-Pax6 | BioLegend | Cat#: 901302; RRID: |
| Rabbit polyclonal anti-Tbr2 | Abcam | Cat#: ab23345; RRID: |
| Mouse monoclonal anti-Nkx2.1 (clone 8G7G3/1) | Thermo Fisher Scientific | Cat#: MA5-13961; RRID: |
| Donkey polyclonal anti-Rabbit IgG (H+L) Highly Cross-Adsorbed Secondary Antibody, Alexa Fluor Plus 488 | Invitrogen | Cat#: A32790; RRID: |
| Donkey polyclonal anti-Rabbit IgG (H+L) Highly Cross-Adsorbed Secondary Antibody, Alexa Fluor Plus 594 | Invitrogen | Cat#: A32754; RRID: |
| Donkey polyclonal anti-Mouse IgG (H+L) Highly Cross-Adsorbed Secondary Antibody, Alexa Fluor Plus 488 | Invitrogen | Cat#: A32766; RRID: |
| Donkey anti-Mouse IgG (H+L) Highly Cross-Adsorbed Secondary Antibody, Alexa Fluor Plus 594 | Invitrogen | Cat#: A32744; RRID: |
| Donkey anti-Rat IgG (H+L) Highly Cross-Adsorbed Secondary Antibody, Alexa Fluor 488 | Invitrogen | Cat#: A21208; RRID: |
| Donkey anti-Rat IgG (H+L) Highly Cross-Adsorbed Secondary Antibody, Alexa Fluor 594 | Invitrogen | Cat#: A21209; RRID: |
| Donkey anti-Goat IgG (H+L) Cross-Adsorbed Secondary Antibody, Alexa Fluor 488 | Invitrogen | Cat#: A-11055; RRID: |
| IRDye 800CW Donkey anti-Goat IgG antibody | LI-COR Biosciences | Cat#: 926-32214; RRID: |
| IRDye 680RD Donkey anti-Mouse IgG secondary antibody | LI-COR Biosciences | Cat#: 926-68072; RRID: |
| DH5α competent cells | Thermo Fisher Scientific | Cat#: 18265017 |
| FastDigest BbsI | Thermo Fisher Scientific | Cat#: ER1011 |
| FastAP | Thermo Fisher Scientific | Cat#: EF0651 |
| Plasmid-Safe exonuclease | Lucigen | Cat#: E3101K |
| SOC medium | Thermo Fisher Scientific | Cat#: 15544034 |
| mTeSR1 | STEMCELL Technologies | Cat#: 85850 |
| Matrigel hESC-qualified | Corning | Cat#: 354277 |
| Y-27632 | STEMCELL Technologies | Cat#: 72304; CAS: 129830-38-2 |
| Dispase | STEMCELL Technologies | Cat#: 07923 |
| Accutase | STEMCELL Technologies | Cat#: 07920 |
| STEMdiff™ Cerebral Organoid Kit | STEMCELL Technologies | Cat#: 08570 |
| DMEM/F-12 | Thermo Fisher Scientific | Cat#: 11330-057 |
| Neurobasal | Thermo Fisher Scientific | Cat#: 21103-049 |
| B-27 Supplement | Thermo Fisher Scientific | Cat#: 17504044 |
| N2 supplement | Thermo Fisher Scientific | Cat#: 17502-048 |
| GlutaMAX | Thermo Fisher Scientific | Cat#: 35050061 |
| Nonessential amino acids (NEAA) | Thermo Fisher Scientific | Cat#: 11140076 |
| Ascorbic acid | STEMCELL Technologies | Cat#: 72132; CAS: 50-81-7 |
| DbcAMP | Sigma | Cat#: D0260; CAS: 16980-89-5 |
| Recombinant Human/Murine/Rat BDNF | PeproTech | Cat#: AF-450-02 |
| Animal-Free Recombinant Human GDNF | PeproTech | Cat#: AF-450-10 |
| Sodium pyruvate | Thermo Fisher Scientific | Cat#: 11360070 |
| Normal goat serum | Thermo Fisher Scientific | Cat#: 31872 |
| Bovine serum albumin (BSA) | Sigma | Cat#: A1470 |
| Penicillin-Streptomycin | Thermo Fisher Scientific | Cat#: 15140122 |
| QIAquick® Gel Extraction Kit | QIAGEN | Cat#: 28704 |
| Phusion™ High-Fidelity DNA Polymerase | Thermo Fisher Scientific | Cat#: F530L |
| Quick Ligation™ Kit | NEB | Cat#: M2200S |
| Invitrogen Neon™ Transfection System | Thermo Fisher | Cat#: MPK5000 |
| SsoAdvanced Universal SYBR Green Supermix | Bio-Rad | Cat#: 1725274 |
| Quick-DNA genomic extraction kit | Zymo Research | Cat#: D3025 |
| Gel Purification Kit | MACHEREY-NAGEL | Cat#: 740609.250 |
| RNase-Free DNase Set | QIAGEN | Cat#: 79254 |
| RNeasy Mini Kit | QIAGEN | Cat#: 74104 |
| ReverTra Ace® qPCR RT Master Mix | Toyobo | Cat#: FSQ-201 |
| MC0192 human iPSC line | ( | N/A |
| Primer pairs for qRT-PCR for | ( | N/A |
| Primer pairs for qRT-PCR for | ( | N/A |
| PX459 plasmid | ( | Addgene_48139 |
| GPP | Broad Institute | |
| CRISPOR | Broad Institute | |
| 96-Well round-bottom ultra-low attachment plate | Corning | Cat#: 7007 |
| Organoid Embedding Sheet | STEMCELL Technologies | Cat#: 08579 |
mTeSR1
| Reagent | Final Concentration | Volume |
|---|---|---|
| mTeSR1 basal medium | n/a | 395 mL |
| mTeSR1 supplement (5×) | 1× | 100 mL |
| Penicillin-Streptomycin (100×) (optional) | 1× | 5 mL |
| Total | n/a | 500 mL |
EB formation medium
| Reagent | Final Concentration | Volume |
|---|---|---|
| Cerebral organoid basal medium 1 | n/a | 40 mL |
| Cerebral organoid supplement A | n/a | 10 mL |
| Total | n/a | 50 mL |
Complete EB formation medium can be stored at 4°C for 1 week.
Neural induction medium
| Reagent | Final Concentration | Volume |
|---|---|---|
| Cerebral organoid basal medium 1 | n/a | 49.5 mL |
| Cerebral organoid supplement B | n/a | 0.5 mL |
| Total | n/a | 50 mL |
Complete Neural induction medium can be stored at 4°C for 1 week.
Expansion medium
| Reagent | Final Concentration | Volume |
|---|---|---|
| Cerebral organoid basal medium 2 | n/a | 24.25 mL |
| Cerebral organoid supplement C | n/a | 0.25 mL |
| Cerebral organoid supplement D | n/a | 0.5 mL |
| Total | n/a | 25 mL |
Complete Expansion medium can be stored at 4°C for 1 week.
Maturation medium for early stage cerebral organoid culture
| Reagent | Final Concentration | Volume |
|---|---|---|
| Cerebral organoid basal medium 2 | n/a | 98 mL |
| Cerebral organoid supplement E | n/a | 2 mL |
| Total | n/a | 100 mL |
Complete Maturation medium can be stored at 4°C for 2 weeks.
Neuron medium for late stage cerebral organoid culture
| Reagent | Final Concentration | Volume |
|---|---|---|
| DMEM/F-12 | n/a | 472 mL |
| Neurobasal | n/a | 472 mL |
| B27 supplement with vitamin A (50×) | 0.5× | 10 mL |
| N2 supplement (100×) | 0.5× | 5 mL |
| Glutamax (100×) | 1× | 10 mL |
| sodium pyruvate mixture (100×) | 1× | 10 mL |
| Ascorbic acid (50 mg/mL stock) | 200 ng/mL | 4 μL |
| NEAA (100×) | 1× | 10 mL |
| dbCAMP (5 mg/mL stock) | 500 ng/mL | 100 μL |
| Penicillin-Streptomycin | 1× | 10 mL |
| BDNF (50 μg/mL stock) | 10 ng/mL | 200 μL |
| GDNF (50 μg/mL stock) | 10 ng/mL | 200 μL |
| Total | ~ 1000 mL |
Neuron medium can be stored at 4°C for 2 weeks. Add BDNF and GDNF right before use.
Blocking buffer for staining
| Reagent | Final Concentration | Amount |
|---|---|---|
| Donkey serum | 4% | 4 mL |
| BSA | 2% | 2 g |
| Glycine | 1 M | 7.5 g |
| PBS | n/a | 96 mL |
| Total | n/a | ~ 100 mL |
Blocking buffer can be stored at 4°C for 1 week. Aliquot can be made and stored in −20°C for 1 year.
Antibody buffer for staining
| Reagent | Final Concentration | Volume |
|---|---|---|
| Blocking buffer | n/a | 10 mL |
| Triton-X100 | 0.25% | 25 μL |
| Total | n/a | ~ 10 mL |
Antibody buffer can be stored at 4°C for 1 week. Aliquot can be made and stored in −20°C for 1 year.
| Component | Amount |
|---|---|
| Plasmid | 1 μg |
| FastDigest | 1 μL (10 U/μL) |
| FastAP | 1 μL (1 U/μL) |
| 10× FastDigest Buffer | 2 μL |
| ddH2O | Supplement to 20 μL |
| Total | 20 μL |
| Component | Amount |
|---|---|
| Oligo 1 (gRNA F, 100 μM) | 1 μL |
| Oligo 2 (gRNA R, 100 μM) | 1 μL |
| 10× T4 Ligation Buffer | 1 μL |
| T4 PNK | 0.5 μL |
| ddH2O | 6.5 μL |
| Total | 10 μL |
| Component | Amount |
|---|---|
| 50 ng | |
| Phosphorylated and annealed oligo duplex from step 3 (1:200 dilution) | 1 μL |
| 2× Quick Ligation Buffer | 5 μL |
| Quick Ligase | 1 μL |
| ddH2O | Supplement to 10 μL |
| Total | 10 μL |
| Component | Amount |
|---|---|
| Ligation reaction from Step 4 | 10 μL |
| 10× Plasmid Safe Buffer | 1.5 μL |
| 10 mM ATP | 1.5 μL |
| Exonuclease | 1 μL (10,000 U/mL) |
| ddH2O | 1 μL |
| Total | 15 μL |
| Pulse voltage (V) | Pulse width (ms) | Pulse number | |
|---|---|---|---|
| MC0192 | 1000 | 30 | 2 |
| Component | Amount |
|---|---|
| Template genomic DNA | 1.0 μL |
| 2.5 μL | |
| Phusion® DNA polymerase | 0.3 μL |
| 5× Phusion® HF buffer | 4.0 μL |
| 10 mM dNTP | 0.4 μL |
| DMSO (optional) | 1.0 μL |
| ddH2O | 10.8 μL |
| Total Vol. (μL) | 20 μL |
| PCR Cycling Conditions | |||
|---|---|---|---|
| Steps | Temperature | Time | Cycles |
| Initial denaturation | 98°C | 5 min | 1 |
| Denaturation | 98°C | 5 s | 30 |
| Annealing | 66.6°C | 10 s | |
| Extension | 72°C | 30 s | |
| Final extension | 72°C | 2 min | 1 |
| Hold | 4°C | ||