KC-4210

COLO205-SETD2-KO-1D2 Cell Line

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Home » COLO205-SETD2-KO-1D2 Cell Line

Background of COLO205-SETD2-KO-1D2 Cell Line

The SETD2 gene, encoding the SET domain containing 2 protein, is a key player in the epigenetic regulation of gene expression. This enzyme specifically methylates lysine 36 on histone H3 (H3K36me3), a modification that is critical for the proper transcriptional elongation and termination of genes, as well as for the maintenance of genomic stability. Mutations or dysregulation of SETD2 have been linked to various diseases, most notably cancers, where alterations in H3K36 methylation patterns can lead to oncogene activation and tumor suppressor gene silencing.Research has also highlighted the role of SETD2 in DNA damage response pathways and RNA processing, underscoring its multifaceted impact on cellular homeostasis. In renal cell carcinoma and other malignancies, loss-of-function mutations in SETD2 correlate with poor prognosis, suggesting its potential as a biomarker and therapeutic target.

Specifications

Catalog NumberKC-4210
Cell Line NameCOLO205-SETD2-KO-1D2 Cell Line
Host Cell LineCOLO205
DescriptionStable COLO205 clone with human SETD2 gene knockout, No.1D2
QuantityTwo vials of frozen cells (≥2-106/vial)
StabilityStable in culture over a minimum of 10 passages
ApplicationDrug screening and biological assays
Freezing MediumRPMI1640+20% FBS+10% DMSO
Propagation MediumRPMI1640+10% FBS
Selection MarkerNA
Morphologyepithelial
SubcultureSplit saturated culture 1:5-1:8 every 2-3 days; seed out at about 1-3 × 105 cells/mL
Incubation37 °C with 5% CO2
StorageLiquid nitrogen immediately upon receiving
Doubling TimeApproximately 27 hours
Mycoplasma StatusNegative
In Vivo ValidationNA

Cell Line Generation

Characterization

Figure 1: Characterization of COLO205-SETD2-KO-1D2 cell line stable clone using PCR sequencing.

Figure 2: Characterization of COLO205-SETD2-KO-1D2 cell line stable clone using RT-PCR sequencing.

Figure 3: Characterization of COLO205-SETD2-KO-1D2 cell line stable clone using western blot.

Cell Resuscitation

Cell Freezing

References

1.Fang, J., & Zhang, Y. (2014). Histone H3 lysine 36 methylation: an emerging regulator of gene expression and genome stability.Nature Reviews Molecular Cell Biology, 15(6), 371-383. https://doi.org/10.1038/nrm3803.
2.Couture, J. B., & Shilatifard, A. (2016). Histone H3K36 methylation: a double-edged sword for cancer.Nature Reviews Cancer, 16(12), 788-802. https://doi.org/10.1038/nrc.2016.109.
3.Fiorino, E., et al. (2019). SETD2 and H3K36me3: Implications for cancer and beyond.Journal of Cellular Physiology, 234(6), 7841-7852. https://doi.org/10.1002/jcp.27156
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