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AB265157

Human C9orf78 knockout HeLa cell line

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C9orf78 KO cell line available to order. KO validated. Free of charge wild type control available. Knockout achieved by using CRISPR/Cas9, Homozygous: 1 bp insertion in exon 2. To order both knockout and wild-type control cells: select '2 x 1000000 Cells/vial'. To order only knockout cells: select '1000000 Cells/vial'.
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Sanger Sequencing - Human C9orf78 knockout HeLa cell line (AB265157)
  • Sanger seq

Unknown

Sanger Sequencing - Human C9orf78 knockout HeLa cell line (AB265157)

Homozygous : 1 bp insertion in exon 2.

Key facts

Cell type

HeLa

Species or organism

Human

Tissue

Cervix

Form

Liquid

form

Knockout validation

Sanger Sequencing

Mutation description

Knockout achieved by using CRISPR/Cas9, Homozygous: 1 bp insertion in exon 2

Disease

Adenocarcinoma

Product details

We will provide viable cells that proliferate on revival.

This product is subject to limited use licenses from The Broad Institute, ERS Genomics Limited and Sigma-Aldrich Co. LLC, and is developed with patented technology. For full details of the licenses and patents please refer to our limited use license and patent pages.

What's included?

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Properties and storage information

Gene name
C9orf78
Gene editing type
Knockout
Gene editing method
CRISPR technology
Knockout validation
Sanger Sequencing
Zygosity
Homozygous
Shipped at conditions
Dry Ice
Appropriate short-term storage conditions
-196°C
Appropriate long-term storage conditions
-196°C

Handling procedures

Initial handling guidelines

Upon arrival, the vial should be stored in liquid nitrogen vapor phase and not at -80°C. Storage at -80°C may result in loss of viability.

1. Thaw the vial in 37°C water bath for approximately 1-2 minutes.
2. Transfer the cell suspension (0.8 mL) to a 15 mL/50 mL conical sterile polypropylene centrifuge tube containing 8.4 mL pre-warmed culture medium, wash vial with an additional 0.8 mL culture medium (total volume 10 mL) to collect remaining cells, and centrifuge at 201 x g (rcf) for 5 minutes at room temperature. 10 mL represents minimum recommended dilution. 20 mL represents maximum recommended dilution.
3. Resuspend the cell pellet in 5 mL pre-warmed culture medium and count using a haemocytometer or alternative cell counting method seed all remaining cells into a T25.
4. Incubate the culture at 37°C incubator with 5% CO2. Check the culture one day after revival and continue to check until 80% confluent. Media change can be given if needed.
5. Once confluent passage into an appropriate flask at a density of 2x104 cells/cm2. Seeding density is given as a guide only and should be scaled to align with individual lab schedules. Cultures should be monitored daily.

Subculture guidelines
  • All seeding densities should be based on cell counts gained by established methods.
  • A guide seeding density of 2x104 cells/cm2 is recommended.
  • Cells should be passaged when they have achieved 80-90% confluence.
Culture medium

DMEM (High Glucose) + 10% FBS

Cryopreservation medium

Cell Freezing Medium-DMSO Serum free media, contains 8.7% DMSO in MEM supplemented with methyl cellulose.

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

C9orf78 also known as chromosome 9 open reading frame 78 is a protein with a molecular mass of approximately 24 kDa. It is expressed in various tissues but shows higher levels in the lung and reproductive organs. On a mechanical level C9orf78 is involved in intracellular processes where it interacts with other cellular components indicating its role in cellular signaling and regulation.
Biological function summary

C9orf78 plays a role in cellular homeostasis and regulation of metabolic processes. It acts as part of a complex that modulates cellular responses to stress and can influence gene expression. The protein's involvement in these cellular processes suggests that it serves as a mediator between cellular signaling pathways and the physical expression of cellular responses.

Pathways

C9orf78 contributes significantly to the AMPK signaling pathway and interacts with various proteins including LKB1. This association positions it as an important factor in energy metabolism helping the cell respond to energy depletion. Its role in the cellular energy balance connects it closely to upstream and downstream signals that control cellular growth and metabolism making it important for maintaining cellular function.

C9orf78 is associated with complex conditions like metabolic syndrome and cancer. It links to disease progression possibly through its relationship with AMPK as dysregulation in this pathway can lead to metabolic imbalance and growth irregularities. Additionally its interaction with proteins like LKB1 known for its tumor suppressive functions further emphasizes the importance of C9orf78 in maintaining normal cellular operations and its potential impact when malfunctioning.

Quality control

STR analysis

CSF1PO, D13S317, D7S820, D5S818, TH01, D16S539, TPOX

Cell culture

Biosafety level

EU: 2 US: 2

Adherent/suspension

Adherent

Gender

Female

Product protocols

Product promise

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