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AB266701

Human GPATCH4 knockout HEK-293T cell line

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GPATCH4 KO cell line available to order. KO validated. Free of charge wild type control available. Knockout achieved by using CRISPR/Cas9, 16 bp deletion in exon 3 and 2 bp deletion in exon 3. 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 GPATCH4 knockout HEK-293T cell line (AB266701)
  • Sanger seq

Unknown

Sanger Sequencing - Human GPATCH4 knockout HEK-293T cell line (AB266701)

Allele-1 : 16 bp deletion in exon 3

Sanger Sequencing - Human GPATCH4 knockout HEK-293T cell line (AB266701)
  • Sanger seq

Unknown

Sanger Sequencing - Human GPATCH4 knockout HEK-293T cell line (AB266701)

Allele-2 : 2 bp deletion in exon 3.

주요 정보

세포 유형

HEK-293T

Species or organism

Human

조직

Kidney

제형

Liquid

form

Knockout 검증

Sanger Sequencing

Mutation 정보

Knockout achieved by using CRISPR/Cas9, 16 bp deletion in exon 3 and 2 bp deletion in exon 3

제품 세부 정보

We will provide viable cells that proliferate on revival.

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

제품 구성

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특성 및 보관 정보

유전자명
GPATCH4
유전자 편집 종류
Knockout
유전자 편집 방식
CRISPR technology
Knockout 검증
Sanger Sequencing
배송 시 보관 조건
Dry Ice
적절한 단기 보관 조건
-196°C
적절한 장기 보관 조건
-196°C

추가 정보

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

The GPATCH4 protein also known as G patch domain-containing protein 4 is a member of the G-patch domain family and has a molecular mass of approximately 102 kDa. GPATCH4 plays a mechanical role in pre-mRNA splicing where it associates with RNA and other splicing factors. This protein is expressed in various tissues with particular high levels in testis and heart. Its exact localization and interaction partners within the cell are subject to ongoing research but the consensus finds GPATCH4 interacting directly with the RNA molecule.
Biological function summary

The GPATCH4 protein contributes to the regulation of RNA processing. It functions as a part of a larger ribonucleoprotein complex involved in the assembly and functionality of spliceosomes. The integration of GPATCH4 into this complex aids in the accurate and efficient splicing of pre-mRNA an essential process for gene expression regulation. Proper functioning of GPATCH4 ensures that diverse cellular processes requiring specific mRNA molecules proceed without error.

Pathways

GPATCH4 plays important roles in the pre-mRNA splicing pathway a critical component of gene expression. This pathway necessitates the involvement of several other proteins including SF3B1 and U2AF2 which work alongside GPATCH4 in the spliceosome assembly. GPATCH4 contributes to these complex interactions facilitating the precise removal of introns from pre-mRNA strands in both major and minor splicing pathways. This activity impacts how cells respond to different physiological conditions and external stimuli.

Abnormal functioning of GPATCH4 relates to cancer and certain cardiovascular conditions making it an interesting target for medical research. Studies suggest that misregulation of the splicing process in which GPATCH4 is involved can trigger oncogenesis potentially by affecting genes that control cell proliferation. In cardiovascular diseases changes in splicing profiles sometimes involving GPATCH4 lead to maladaptive cellular responses. Research into how GPATCH4 interacts with other proteins like SF3B1 can provide insights into these disorders' underlying mechanics offering potential avenues for therapeutic intervention.

품질 관리

STR analysis

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

Cell culture

Biosafety level

EU: 2 US: 2

Adherent/suspension

Adherent

Gender

Female

초기 취급 지침

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. <p>1. Thaw the vial in 37°C water bath for approximately 1-2 minutes.<br>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.<br>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.<br>4. Incubate the culture at 37°C incubator with 5% CO<sub>2</sub>. Check the culture one day after revival and continue to check until 80% confluent. Media change can be given if needed.<br>5. Once confluent passage into an appropriate flask at a density of 2x10<sup>4</sup> cells/cm<sup>2</sup>. Seeding density is given as a guide only and should be scaled to align with individual lab schedules. Cultures should be monitored daily.</p>

Subculture 가이드라인
  • 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.
배양 배지

DMEM (High Glucose) + 10% FBS

동결보존 배지

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

제품 프로토콜

Product promise

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