GANAB KO cell line available to order. KO validated by Western blot. Free of charge wild type control provided. Knockout achieved by using CRISPR/Cas9, Homozygous: 1 bp insertion in exon 5.
GANAB KO cell line available to order. KO validated by Western blot. Free of charge wild type control provided. Knockout achieved by using CRISPR/Cas9, Homozygous: 1 bp insertion in exon 5.
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.
Although we aim to provide customers with a homozygous clone, feasibility will be dependent on the biology of the protein. Should only heterozygous edits be achieved, you will be notified of the outcome and be asked to confirm whether the cell line is acceptable. All clones will be accompanied with DNA sequencing data, and the mutation description.
Recommended control: Human wild-type HeLa cell line (ab255448). Please note a wild-type cell line is not automatically included with a knockout cell line order, if required please add recommended wild-type cell line at no additional cost using the code WILDTYPE-TMTK1.
Cryopreservation cell medium: Cell Freezing Medium-DMSO Serum free media, contains 8.7% DMSO in MEM supplemented with methyl cellulose.
Culture medium: DMEM (High Glucose) + 10% FBS
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 2x10E4 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 2x10E4 cells/cm2 is recommended.
• Cells should be passaged when they have achieved 80-90% confluence.
• Do not allow the cell density to exceed 7x10E4 cells/cm2.
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.
GANAB also known as Glucosidase II alpha subunit or neutral alpha-glucosidase AB is an enzyme with an approximate mass of 110 kDa. It functions as part of the endoplasmic reticulum's quality control system modifying N-linked glycans on newly synthesized glycoproteins. GANAB cleaves glucose residues facilitating proper folding and maturation of glycoproteins. Expression of GANAB occurs mainly in the endoplasmic reticulum of various cell types indicating its broad relevance in cellular protein processing.
GANAB performs a critical role in the maintenance of glycoprotein quality. It acts as part of the Glucosidase II complex working alongside a beta subunit to continue glycoprotein processing. Through the removal of glucose from N-glycans GANAB aids in the correct protein folding and prevents accumulation of misfolded proteins. This function is essential for the normal function of the endoplasmic reticulum-associated degradation (ERAD) pathway.
Proper glycoprotein folding through GANAB activity integrates into the broader ERAD pathway and the unfolded protein response. GANAB's role complements the activities of other glycosylation-related proteins such as calnexin and calreticulin ensuring only correctly folded proteins advance through the secretory pathway. This integrated network maintains cellular homeostasis and prevents stress conditions in the endoplasmic reticulum.
GANAB's dysfunction associates with autosomal dominant polycystic liver disease and familial hyperinsulinism. These connections emphasize the importance of proper glycoprotein modification managed by GANAB. In these conditions alterations in GANAB or its interacting proteins can lead to aberrant cellular functions and consequent pathologies highlighting potential therapeutic targets in GANAB-associated pathways for disease management.
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Full details and terms and conditions can be found here:
Terms & Conditions.
Homozygous: 1 bp insertion in exon 5.
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