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Overviews iDimerize technology
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Overviews iDimerize technology

iDimerize regulated transcription system

iDimerize technology can be used to induce transcription of target genes

iDimerize technology can be used to tightly control transcription activation of target genes using chemically induced dimerization of a DNA binding domain and a transcription activation domain. A key advantage of this iDimerize approach to transcription control is its low background. This is possible because the transcriptional activation domain (AD) is physically separated from the DNA prior to addition of the dimerizer ligand.

iDimerize technology can be used to tightly control transcription activation of target genes using chemically induced dimerization of a DNA binding domain and a transcription activation domain. A key advantage of this iDimerize approach to transcription control is its low background. This is possible because the transcriptional activation domain (AD) is physically separated from the DNA prior to addition of the dimerizer ligand.

Transcription factors are bifunctional proteins that recognize specific DNA sequences near target genes (via the DNA binding domain) and then recruit the transcriptional machinery of the cell to activate transcription (via the transcriptional AD). These two domains can work together to activate transcription even when they are expressed as individual proteins and brought together by the A/C Heterodimerizer ligand.

A/C Heterodimerizer Ligand (AP21967)

The A/C Heterodimerizer is a synthetic, cell-permeable ligand that can be used to induce heterodimerization of two fusion proteins. For example, when used with this kit, the DmrC-tagged transcription AD can be induced to dimerize with the DmrA-tagged DNA binding domain. The A/C Heterodimerizer is identical to AP21967, which was previously supplied by ARIAD Pharmaceuticals Inc.

Regulating transcription

Sequentially transfect your cells of interest with:

  1. A plasmid which expresses the transcription activation and DNA binding components (pHet-Act1-2)
  2. Your gene of interest cloned downstream of the PZI-1 inducible promoter (in pZFHD1-2)

The DNA binding component remains bound to the promoter at all times, but it cannot activate transcription until it interacts with the transcription activation component via the DmrA and DmrC domains. When the A/C Heterodimerizer is added, the two components interact, and your gene of interest is transcribed from the PZI-1 promoter.

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Cat. # Product Size Price License Quantity Details
635081 iDimerize™ Regulated Transcription System Each USD $1143.00

The iDimerize Regulated Transcription System allows tightly regulated, inducible expression of your gene of interest by the addition of a small molecule to the cell medium. The system includes the iDimerize Regulated Transcription Vector Set 2, which contains a vector that encodes two transcription factor domains (which combine to create the inducible transcription factor), a mammalian expression vector used to express your gene of interest, and a control vector. The system also includes the A/C Heterodimerizer, the membrane-permeant compound required for induction of gene expression through the heterodimerization of the two transcription factor domains.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

Documents Components You May Also Like Image Data

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Tightly regulated transcription using iDimerize technology

Tightly regulated transcription using iDimerize technology

Tightly regulated transcription using iDimerize technology. Clone your gene of interest downstream of the ZHFD1 inducible promoter (PZI-1). The DNA binding component (DmrC/DNA-BD fusion; red) recognizes and binds sequences within the promoter. However, activation of transcription only occurs when the DmrC/DNA-BD dimerizes with the transcription activation component (DmrA-AD fusion; green) at the promoter, when the DmrA and DmrC domains both bind to the A/C Heterodimerizer (AP21967).

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Regulated transcription of luciferase using the iDimerize Regulated Transcription System

Regulated transcription of luciferase using the iDimerize Regulated Transcription System
Regulated transcription of luciferase using the iDimerize Regulated Transcription System. Firefly luciferase was cloned into the multiple cloning site of the pZFHD1-2 vector. The plasmid was then cotransfected into HEK 293 cells with pHet-Act1-2 (which expresses the transcription activation components). Cells were treated with the indicated doses of A/C Heterodimerizer, and induced gene expression was measured 24 hr later. Induced expression of luciferase was measured using a luminometer. RLU = Relative Light Units.

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The iDimerize Regulated Transcription System uses the tight PZI-1 promoter, which exhibits very low background in the absence of induction because it is not recognized by host transcription factors

The iDimerize Regulated Transcription System uses the tight PZI-1 promoter, which exhibits very low background in the absence of induction because it is not recognized by host transcription factors
The iDimerize Regulated Transcription System uses the tight PZI-1 promoter, which exhibits very low background in the absence of induction because it is not recognized by host transcription factors. A further level of control is provided separating the DNA binding component (DmrA/DB; green) and transcription activation component (DmrC/TA; yellow) into separate compartments in the cell. DmrC/TA does not possess a nuclear localization signal (NLS), so it resides predominantly in the cytoplasm; however, it is brought to the nucleus by the addition of A/C heterodimerizer which causes its interaction with DmrA/DB. DmrA/DB does possess an NLS, so when A/C heterodimerizer is added, the transcription factor is completed through dimerization. The complete transcription factor is translocated into the nucleus, where it binds the PZI-1 promoter and induces expression of the gene of interest.
635056 A/C Heterodimerizer 5 x 500 uL USD $687.00

A/C Heterodimerizer is a membrane-permeant ligand that causes heterodimerization of proteins fused to two distinct dimerization domains—DmrA and DmrC—provided in the iDimerize Inducible Heterodimer System (Cat. #  635067) and the iDimerize Regulated Transcription System (Cat. # 635081). NOTE: The A/C Heterodimerizer is identical to the AP21967 ligand previously supplied in the ARGENT Regulated Heterodimerization Kit from ARIAD Pharmaceuticals, Inc.

Notice to purchaser

Our products are to be used for Research Use Only. They may not be used for any other purpose, including, but not limited to, use in humans, therapeutic or diagnostic use, or commercial use of any kind. Our products may not be transferred to third parties, resold, modified for resale, or used to manufacture commercial products or to provide a service to third parties without our prior written approval.

Documents Components You May Also Like Image Data Resources

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Molecular weights of iDimerize ligands

Molecular weights of iDimerize ligands
Molecular weights of iDimerize ligands.

review of exciting papers that ultilized chemically inducied dimerization iDimerize systems journal club
Learn more about our tet, ProteoTuner, and iDimerize inducible systems Inducible systems
Inducible homodimer systems using AP20187 ligand Induce homodimers

Overview

  • Tightly regulated transcription using iDimerize technology
  • Dose-dependent, small molecule control of transcription
  • Activation domain is physically separated from the DNA prior to addition of the dimerizer ligand, resulting in low background
  • A/C Heterodimerizer is identical to the AP21967 ligand

More Information

Applications

  • Inducing gene expression in a ligand-dependent manner
  • Analyzing genes that promote cell death, block the cell cycle, or are otherwise toxic
  • Functional genomics research
Product citations

Pomerantz, J. L., Sharp, P. A., & Pabo, C. O. Structure-based design of transcription factors. Science 267(5194), 93–96 (1995).

Additional product information

Please see the product's Certificate of Analysis for information about storage conditions, product components, and technical specifications. Please see the Kit Components List to determine kit components. Certificates of Analysis and Kit Components Lists are located under the Documents tab.


Tet-One tetracycline-inducible expression system, technology overview

Tighly controlled expression system that is as easy to use as any constitutive system

Until now, the best inducible mammalian expression systems have all required a two-vector format. Tet-One inducible expression systems are the only commercially available single-vector systems that can deliver a >10,000-fold difference in expression levels between induced and uninduced states.

Tet-One technology overview All inducible systems

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