pJTI™ R4 Exp CMV EmGFP pA Vector
pJTI™ R4 Exp CMV EmGFP pA Vector

pJTI™ R4 Exp CMV EmGFP pA Vector

The pJTI™ R4 Exp CMV EmGFP pA vector is a positive control vector for assessing the success of a retargeting자세히 알아보기
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카탈로그 번호수량
A14146100 μg
카탈로그 번호 A14146
제품 가격(KRW)
464,000
Each
카트에 추가하기
수량:
100 μg
제품 가격(KRW)
464,000
Each
카트에 추가하기
The pJTI™ R4 Exp CMV EmGFP pA vector is a positive control vector for assessing the success of a retargeting reaction with a Jump-In™ parental cell line. When co-transfected with the integrase vector (pJTI™ R4 Int vector) included in the Jump-In™ parental kits, the EmGFP will be expressed and positive cells will fluoresce green.

Ensure the Success of Your Jump-In™ Retargeting Reactions
Successful retargeting of Jump-In™ parental cell lines like the the Jump-In™ GripTite™ HEK293 kit (A14150) is dependent on a variety of factors such as:

Transfection efficiency

• Cell confluency
• Antibiotic selection conditions
• Quality and concentration of DNA
• Retargeting vector to integrase vector ratio

We strongly recommend including a retargeting reaction with the pJTI™ R4 Exp CMV EmGFP pA vector in your Jump-In™ experiment along with negative controls (no plasmid DNA, no integrase vector) so you can easily visualize the results and optimize the retargeting conditions.

For Research Use Only. Not intended for any animal or human therapeutic or diagnostic use.
For Research Use Only. Not for use in diagnostic procedures.
사양
구성 또는 유도성 시스템Constitutive
배달 유형Transfection
용도(애플리케이션)Stable Cell Line Development, Targeted Integration
형식Liquid
제품 유형Mammalian Expression Vector
수량100 μg
선택 제제(진핵)None
배송 조건Dry Ice
벡터Jump-In Vectors
클로닝 방법Gateway
제품라인Jump-In
프로모터CMV
단백질 태그Untagged
Unit SizeEach
구성 및 보관
Immediately upon receipt, store vector at -20°C

자주 묻는 질문(FAQ)

Do you offer a GFP-expressing mammalian expression vector that I can use as a control to monitor my transfection and expression?

We offer pJTI R4 Exp CMV EmGFP pA Vector, Cat. No. A14146, which you can use to monitor your transfection and expression.

When should I consider reversible integration (Flp-In system) vs irreversible integration (Jump-In system)?

Use irreversible integration (Jump-In system) if the transgene should be sustained in the mammalian genome for a long time. Use reversible integration such as Flp-In system if the transgene needs to be replaced with another gene of interest after a short period of time.

What controls do I need in the Jump-In system to check for the successful retargeting of the platform line?

The second step in targeted integration is the retargeting event mediated by the R4 integrase where the genetic elements of interest are site-specifically transferred from the retargeting expression construct (created using the MultiSite Gateway Pro module) onto the genome of the platform line. This integration event also positions the EF1alpha promoter upstream of the blasticidin, neomycin, or eosin resistance gene (i.e., "promoterless" selection marker), thus allowing the selection of transformants that are successfully "retargeted" using the appropriate selection agent. Although you select from successfully retargeted clones using the blasticidin, Geneticin, or Zeocin antibiotic, you may also perform a nested PCR to amplify the region from the EF1alpha promoter to the appropriate resistance gene. You can amplify the hygromycin resistance gene as a positive control. Similar to the platform line creation, you may also perform a Southern blot analysis with a probe designed for your gene of interest.

What controls do I need in the Jump-In system to check for the presence of the R4 target site after the creation of the platform cell line?

A platform cell line is created when the R4 attP retargeting sequences are site-specifically inserted into the mammalian genome via PhiC31 Int-mediated recombination. In addition to the R4 retargeting sequences, this integration event introduces the hygromycin resistance gene under the control of the HSV TK promoter and the promoterless Bsd, Neo, or Zeo resistance marker, depending on the platform vector used (i.e., pJTI/Bsd, pJTI/Neo, or pJTI/Zeo). Although you select for transformants carrying the R4 retargeting sequences by their resistance to hygromycin, you may perform PCR analysis to check the integrity of the R4 attP retargeting sequences. For this, we recommend amplifying the region from the R4 attP sequence to the appropriate resistance marker (depending on the platform line used) using the genomic DNA from the platform line. A nested PCR is recommended to reduce the high background you may observe with only primary PCR. Alternatively, you may create a labeled DNA probe by PCR amplifying an approximately 1.5 kb region covering the retargeting sequences, and then perform a Southern blot analysis. The Southern blot will also act as an additional check to verify that only a single copy of the retargeting sequence is integrated into the genome.

How much DNA or what controls do I need to include in the Jump-In system in order to get one integration event?

The amount of DNA to be used to obtain single copies should be determined by control experiments done in the absence of integrase. The same amount of DNA that yields less than 5 colonies in the absence of integrase should be used in the presence of integrase. Typically, the integrase expression plasmid makes up most of the amount of DNA used for transfection.

Find additional tips, troubleshooting help, and resources within our Protein Expression Support Center.