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CRISPR-U™ Gene Knockout Cell Line Strategy

GNAS Gene Knockout Strategy

CRISPR-U™ technology (CRISPR based), developed by Ubigene, is more efficient than general CRISPR/Cas9 technology in double-strand breaking and homologous recombination. With CRISPR-U™, Ubigene has successfully edited over 3000 genes on more than 200 types of cell lines.
Objective
To create a Human GNAS Knockout model in cell line by CRISPR-U™-mediated genome engineering.
Target gene info
Official symbol
GNAS
Gene id
2778
Organism
Homo sapiens
Gene type
protein-coding
Official full symbol
GNAS complex locus
Also known as
AHO, C20orf45, GNAS1, GPSA, GSA, GSP, NESP, PITA3, POH, SCG6, SgVI
Genomic regions
Chromosome 20
Summary
This locus has a highly complex imprinted expression pattern. It gives rise to maternally, paternally, and biallelically expressed transcripts that are derived from four alternative promoters and 5' exons. Some transcripts contain a differentially methylated region (DMR) at their 5' exons, and this DMR is commonly found in imprinted genes and correlates with transcript expression. An antisense transcript is produced from an overlapping locus on the opposite strand. One of the transcripts produced from this locus, and the antisense transcript, are paternally expressed noncoding RNAs, and may regulate imprinting in this region. In addition, one of the transcripts contains a second overlapping ORF, which encodes a structurally unrelated protein - Alex. Alternative splicing of downstream exons is also observed, which results in different forms of the stimulatory G-protein alpha subunit, a key element of the classical signal transduction pathway linking receptor-ligand interactions with the activation of adenylyl cyclase and a variety of cellular reponses. Multiple transcript variants encoding different isoforms have been found for this gene. Mutations in this gene result in pseudohypoparathyroidism type 1a, pseudohypoparathyroidism type 1b, Albright hereditary osteodystrophy, pseudopseudohypoparathyroidism, McCune-Albright syndrome, progressive osseus heteroplasia, polyostotic fibrous dysplasia of bone, and some pituitary tumors.
Strategy Summary
This gene has 0 protein coding transcripts:
Frame-shift
Fragment A
Fragment B
Strategy

Project Comprehensive Difficulty Assessment

According to the Red Cotton database: the CRISPR gene-editing strategy design is Unknown.
Knockout project comprehensive difficulty is thus assessed as Unknown.
Red Cotton™ Notes Gene GNAS had been KO in hela cell line.
EZ-editor™ Gene Dependency
EZ-editor™ Gene Expression Level
EZ-editor™ Gene Copy Number

EZ-editor™ Gene Dependency

Result

The GNAS gene you inquire is evaluated as high risk in 1% cell line. Cell line is not selected, unable to assess the accurate risk level, for reference only.

Gene lethality score

Dependent Cell Lines Gene Dependency 0 0.5 1

Lethality score of GNAS in different cells

0.8%>0.5
All cells
0
Non-essential gene
0.5
Boundary score
1
Essential gene

EZ-editor™ Gene Expression Level

Result

In all cell lines, there is 0.2% cells with low expression level, 71.0% cells with medium expression level, 28.8% cells with high expression level of GNAS gene. Cell line is not selected, unable to assess the accurate expression level, for reference only.

Gene Expression

Cell Lines Frequency log2(TPM+1) 0 2 4 6 8 10 12

TPM of GNAS in different cells

0.2%71.0%28.8%
All cells
0~0.5
Below cutoff
0.5~10
Low
10~1000
Medium
>1000
High

EZ-editor™ Gene Copy Number

Result

In all cell lines, there is 43.5% cells with low copy number, 40.8% cells with medium copy number, 15.8% cells with high copy number of GNAS gene. Cell line is not selected, unable to assess the accurate copy number, for reference only.

Gene Copy Number

Copy number 0 1 2 3 4 5 6 7 0 50 100 150 200 250 300 350 400 450Cell Lines

Copy number of GNAS in different cells

43.5%40.8%15.8%
All cells
0~2
Low
2~4
Medium
>4
High
Work flow
Ubigene Red Cotton Workflow

Ubigene - Make genome editing easier

Ubigene is an international high-technology enterprise focused on gene-editing cells. Our exclusive CRISPR-U™ technology has 10-20 times more efficient editing than traditional methods, easily achieving gene knockout, point mutation, and knock-in. Based on CRISPR-U™ technology, Ubigene has accumulated over 6000 successful gene-editing cases from more than 300 cell lines including iPSC and ESC, and has established a KO Cell Line Bank with 4500+ KO cell lines and Red Cotton™ gRNA Plasmid Bank with 10000+ gRNA plasmids available in stock.

Ubigene focuses on technological innovation and product development, of which EZ-editor™ series products that cover the whole workflow of gene-editing keep improving. Ubigene will move on toward our goal of "Make genome editing easier" and we won't stop!

Cell products

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红棉系统新技能上线啦!基因风险评估:“火眼金睛”辨基因,致死风险一秒知。评估结果可在Red Cotton Assessment模块查看哦。