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Current position:Product Center > Cell lines > Kinase > HER2(ERBB2) > ERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line
ERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line
Description
Cat. No: GM-C42672
Product: ERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line


ERBB2 protein (also known as HER2/neu and CD340) is an important member of the epidermal growth factor receptor (EGFR) family. It is a transmembrane tyrosine kinase receptor composed of three parts: an extracellular ligand-binding domain, a transmembrane domain, and an intracellular kinase domain. This protein lacks a known ligand, but it can activate downstream signaling pathways—including the MAPK and PI3K/AKT pathways—by forming heterodimers with other members of the ErbB family (such as HER3), thereby regulating cell proliferation, survival, and invasion.

ERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line is a clonal stable HEK-293 cell line constructed using non-viral transfection. Using gene editing technology to introduce the YVMA insertion mutation between amino acids 755 and 776 of the endogenous ERBB2 gene in cell lines.

Data
The ERBB2 mutation analysis by Sanger sequencing.(1 represents the wild-type sequence, and 2 represents the sequence after knock-in mutation.)
Specifications
Cat. NoGM-C42672
ProductERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line
Product Format1 vial of frozen cells
Quantity5E6 Cells per vial,1 mL
Storage ConditionsLiquid nitrogen immediately upon receipt
Recovery MediumDMEM+10% FBS+1% P.S
Growth mediumDMEM+10% FBS+1% P.S
NoteNone
Freezing Medium90% FBS+10% DMSO
Growth propertiesAdherent
Growth Conditions37°C, 5% CO₂
Safety considerationsBiosafety Level 2
Mycoplasma TestingThe cell line has been screened to confirm the absence of Mycoplasma species.
Materials
ReagentOrdering Information
DMEMGibco/C11995500BT
Fetal Bovine SerumExCell/FSP500
Pen/StrepThermo/15140-122
Cell Culture

Cell Recovery

Recovery Medium: DMEM+10% FBS+1% P.S

To insure the highest level of viability, thaw the vial and initiate the culture as soon as possible upon receipt. If upon arrival, continued storage of the frozen culture is necessary, it should be stored in liquid nitrogen vapor phase and not at -70°C. Storage at -70°C will result in loss of viability.

a)       Thaw the vial by gentle agitation in a 37°C water bath. To reduce the possibility of contamination, keep the O-ring and cap out of the water. Thawing should be rapid (approximately 2 - 3 minutes).

b)       Remove the vial from the water bath as soon as the contents are thawed, and decontaminate by dipping in or spraying with 70% ethanol. All of the operations from this point on should be carried out under strict aseptic conditions.

c)       Transfer the vial contents to a centrifuge tube containing 5.0 mL complete culture medium and spin at approximately 176 x g for 5 minutes. Discard supernatant.

d)       Resuspend cell pellet with the recommended recovery medium. And dispense into appropriate culture dishes.

e)       Incubate the culture at 37°C in a suitable incubator. A 5% CO₂ in air atmosphere is recommended if using the medium described on this product sheet.

Cell Freezing

Freezing Medium: 90% FBS+10% DMSO

a)          Centrifuge at 176 x g for 3 minutes to collect cells.

b)         Resuspend the cells in pre-cooled freezing medium and adjust the cell density to 5E6 cells/mL.

c)          Aliquot 1 mL into each vial.

d)         Place the vial in a controlled-rate freezing container and store at -80°C for at least 1 day, then transfer to liquid nitrogen as soon as possible.

Cell passage

Growth medium: DMEM+10% FBS+1% P.S

For the first 1 to 2 passages post-resuscitation, use the recovery medium. Once the cells have stabilized, switch to a growth medium.

a)          Subculturing is necessary when the cell density reaches 80%. It is recommended to perform subculturing at a ratio of 1:3 to 1:4 every 2-3 days. Ensure that the density does not exceed 80%, as overcrowding can lead to reduced viability due to compression.

b)         Remove and discard culture medium.

c)          Briefly rinse the cell layer with PBS to remove all traces of serum that contains trypsin inhibitor.

d)         Add 1.0 mL of 0.25% (w/v) Trypsin-EDTA solution to dish and observe cells under an inverted microscope until cell layer is dispersed (usually within 30 to 60 seconds at 37°C).

e)          Note: To avoid clumping do not agitate the cells by hitting or shaking the flask while waiting for the cells to detach. Cells that are difficult to detach may be placed at 37°C to facilitate dispersal.

f)          Add 2.0 mL of growth medium to mix well and aspirate cells by gently pipetting.

g)         After centrifugation, resuspend the pellet and add appropriate aliquots of the cell suspension to new culture vessels.

h)         Incubate cultures at 37°C.

Subcultivation Ratio: A subcultivation ratio of 1:3 - 1:4 is recommended

Medium Renewal: Every 2 to 3 days

Notes

a)          Upon initial thawing, a higher number of dead cells is observed, which is a normal phenomenon. Significant improvement is seen after adaptation. Once the cells reach a stable state, the number of dead cells decreases after subculturing and the cell growth rate becomes stable.

b)         Ensure that the cell density does not exceed 80%, as overcrowding may lead to reduced viability due to compression.


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Current Position:Product Center > Cell lines > Kinase > HER2(ERBB2) > ERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line
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ERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line
Description
Cat. No: GM-C42672
Product: ERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line


ERBB2 protein (also known as HER2/neu and CD340) is an important member of the epidermal growth factor receptor (EGFR) family. It is a transmembrane tyrosine kinase receptor composed of three parts: an extracellular ligand-binding domain, a transmembrane domain, and an intracellular kinase domain. This protein lacks a known ligand, but it can activate downstream signaling pathways—including the MAPK and PI3K/AKT pathways—by forming heterodimers with other members of the ErbB family (such as HER3), thereby regulating cell proliferation, survival, and invasion.

ERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line is a clonal stable HEK-293 cell line constructed using non-viral transfection. Using gene editing technology to introduce the YVMA insertion mutation between amino acids 755 and 776 of the endogenous ERBB2 gene in cell lines.

Data
The ERBB2 mutation analysis by Sanger sequencing.(1 represents the wild-type sequence, and 2 represents the sequence after knock-in mutation.)
Specifications
Cat. NoGM-C42672
ProductERBB2 A775_G776insYVMA Homozygous HEK-293 Cell Line
Product Format1 vial of frozen cells
Quantity5E6 Cells per vial,1 mL
Storage ConditionsLiquid nitrogen immediately upon receipt
Recovery MediumDMEM+10% FBS+1% P.S
Growth mediumDMEM+10% FBS+1% P.S
NoteNone
Freezing Medium90% FBS+10% DMSO
Growth propertiesAdherent
Growth Conditions37°C, 5% CO₂
Safety considerationsBiosafety Level 2
Mycoplasma TestingThe cell line has been screened to confirm the absence of Mycoplasma species.
Materials
ReagentOrdering Information
DMEMGibco/C11995500BT
Fetal Bovine SerumExCell/FSP500
Pen/StrepThermo/15140-122
Cell Culture

Cell Recovery

Recovery Medium: DMEM+10% FBS+1% P.S

To insure the highest level of viability, thaw the vial and initiate the culture as soon as possible upon receipt. If upon arrival, continued storage of the frozen culture is necessary, it should be stored in liquid nitrogen vapor phase and not at -70°C. Storage at -70°C will result in loss of viability.

a)       Thaw the vial by gentle agitation in a 37°C water bath. To reduce the possibility of contamination, keep the O-ring and cap out of the water. Thawing should be rapid (approximately 2 - 3 minutes).

b)       Remove the vial from the water bath as soon as the contents are thawed, and decontaminate by dipping in or spraying with 70% ethanol. All of the operations from this point on should be carried out under strict aseptic conditions.

c)       Transfer the vial contents to a centrifuge tube containing 5.0 mL complete culture medium and spin at approximately 176 x g for 5 minutes. Discard supernatant.

d)       Resuspend cell pellet with the recommended recovery medium. And dispense into appropriate culture dishes.

e)       Incubate the culture at 37°C in a suitable incubator. A 5% CO₂ in air atmosphere is recommended if using the medium described on this product sheet.

Cell Freezing

Freezing Medium: 90% FBS+10% DMSO

a)          Centrifuge at 176 x g for 3 minutes to collect cells.

b)         Resuspend the cells in pre-cooled freezing medium and adjust the cell density to 5E6 cells/mL.

c)          Aliquot 1 mL into each vial.

d)         Place the vial in a controlled-rate freezing container and store at -80°C for at least 1 day, then transfer to liquid nitrogen as soon as possible.

Cell passage

Growth medium: DMEM+10% FBS+1% P.S

For the first 1 to 2 passages post-resuscitation, use the recovery medium. Once the cells have stabilized, switch to a growth medium.

a)          Subculturing is necessary when the cell density reaches 80%. It is recommended to perform subculturing at a ratio of 1:3 to 1:4 every 2-3 days. Ensure that the density does not exceed 80%, as overcrowding can lead to reduced viability due to compression.

b)         Remove and discard culture medium.

c)          Briefly rinse the cell layer with PBS to remove all traces of serum that contains trypsin inhibitor.

d)         Add 1.0 mL of 0.25% (w/v) Trypsin-EDTA solution to dish and observe cells under an inverted microscope until cell layer is dispersed (usually within 30 to 60 seconds at 37°C).

e)          Note: To avoid clumping do not agitate the cells by hitting or shaking the flask while waiting for the cells to detach. Cells that are difficult to detach may be placed at 37°C to facilitate dispersal.

f)          Add 2.0 mL of growth medium to mix well and aspirate cells by gently pipetting.

g)         After centrifugation, resuspend the pellet and add appropriate aliquots of the cell suspension to new culture vessels.

h)         Incubate cultures at 37°C.

Subcultivation Ratio: A subcultivation ratio of 1:3 - 1:4 is recommended

Medium Renewal: Every 2 to 3 days

Notes

a)          Upon initial thawing, a higher number of dead cells is observed, which is a normal phenomenon. Significant improvement is seen after adaptation. Once the cells reach a stable state, the number of dead cells decreases after subculturing and the cell growth rate becomes stable.

b)         Ensure that the cell density does not exceed 80%, as overcrowding may lead to reduced viability due to compression.


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