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CRISPR-U™ Gene Knockout Cell Line Strategy

RFX5 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 RFX5 Knockout model in cell line by CRISPR-U™-mediated genome engineering.
Target gene info
Official symbol
RFX5
Gene id
5993
Organism
Homo sapiens
Gene type
protein-coding
Official full symbol
regulatory factor X5
Genomic regions
Chromosome 1
Summary
A lack of MHC-II expression results in a severe immunodeficiency syndrome called MHC-II deficiency, or the bare lymphocyte syndrome (BLS; MIM 209920). At least 4 complementation groups have been identified in B-cell lines established from patients with BLS. The molecular defects in complementation groups B, C, and D all lead to a deficiency in RFX, a nuclear protein complex that binds to the X box of MHC-II promoters. The lack of RFX binding activity in complementation group C results from mutations in the RFX5 gene encoding the 75-kD subunit of RFX (Steimle et al., 1995). RFX5 is the fifth member of the growing family of DNA-binding proteins sharing a novel and highly characteristic DNA-binding domain called the RFX motif. Multiple alternatively spliced transcript variants have been found but the full-length natures of only two have been determined.
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 RFX5 had been KO in hek293t cell line.
EZ-editor™ Gene Dependency
EZ-editor™ Gene Expression Level
EZ-editor™ Gene Copy Number

EZ-editor™ Gene Dependency

Result

The RFX5 gene you inquire is evaluated as high risk in 5% 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 RFX5 in different cells

4.7%>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 0.1% cells with expression level below cutoff, 4.9% cells with low expression level, 95.0% cells with medium expression level of RFX5 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 RFX5 in different cells

0.1%4.9%95.0%
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 43.6% cells with low copy number, 46.4% cells with medium copy number, 10.0% cells with high copy number of RFX5 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 RFX5 in different cells

43.6%46.4%10.0%
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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