Target intelligence / Profile preview

Cre recombinase (Cre) (Cre)

Target
Cre
Molecular classification
Enzyme, Tyrosine recombinase, Site-specific recombinase
01

Overview

Cre recombinase is a 38 kDa site-specific DNA recombinase belonging to the tyrosine recombinase family, originally derived from the P1 bacteriophage (UniProt: P06956) [1]. It is the central component of the Cre-loxP system, which facilitates precise DNA recombination between two 34-base pair recognition sequences known as loxP sites [2]. Depending on the orientation and location of these sites, Cre can induce DNA excision, inversion, or translocation, making it an indispensable tool for generating conditional knockout and knock-in genetic models [3]. The enzyme's activity can be temporally controlled using inducible systems, such as the Cre-ERT2 fusion protein that remains inactive in the cytoplasm until the administration of Tamoxifen or 4-hydroxytamoxifen [3]. Beyond its extensive use in basic research, Cre recombinase is being explored for therapeutic gene editing, including the potential to excise integrated viral genomes like HIV-1 or to correct deleterious mutations in genetic diseases [4]. However, its translation to the clinic is complicated by safety concerns such as off-target activity at pseudo-loxP sites in the human genome and the potential for an immune response against the non-human protein [5].

Other names
Cyclization recombination proteinP1 bacteriophage Cre recombinaseTyrosine-type site-specific recombinase Cre
02

Mechanism of action

Cre recombinase catalyzes site-specific DNA recombination between two 34-bp loxP sites. It utilizes a conserved tyrosine residue to perform a nucleophilic attack on the DNA phosphodiester backbone, creating a covalent protein-DNA intermediate. This process involves the formation of a Holliday junction and subsequent resolution to achieve DNA excision, inversion, or integration without the need for ATP or accessory proteins [1, 2].

03

Biological functions

DNA recombinationDNA excisionDNA inversionDNA integration
04

Disease associations

Genetic disorderInfectionCancer
05

Safety considerations

Genotoxicity resulting from off-target recombination at endogenous pseudo-loxP sites [5]Potential immunogenicity of the bacteriophage-derived protein in human clinical applicationsCellular toxicity and DNA damage response activation due to prolonged Cre expressionRisk of unintended chromosomal translocations and genomic instability
06

Interacting drugs

Tamoxifen

3 more in the full profile.

07

Biomarkers

Detection of loxP-mediated DNA excision or inversion via PCRExpression of Cre-dependent reporter genes (e.g., EGFP, LacZ)Cre recombinase protein levelsQuantification of target gene knockdown or activation

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