Target intelligence / Profile preview

Cytosine deaminase-uracil phosphoribosyltransferase fusion enzyme (CD-UPRT) (CD-UPRT)

Target
CD-UPRT
Molecular classification
Enzyme, Fusion protein, Hydrolase, Transferase
01

Overview

The Cytosine deaminase-uracil phosphoribosyltransferase (CD-UPRT) fusion enzyme is a synthetic chimeric protein used in Gene-Directed Enzyme Prodrug Therapy (GDEPT) for cancer (Erbs et al., 1999). It combines the activity of cytosine deaminase (CD), which converts 5-fluorocytosine (5-FC) to 5-fluorouracil (5-FU), with uracil phosphoribosyltransferase (UPRT), which converts 5-FU to 5-fluorouridine monophosphate (5-FUMP) (Aboody et al., 2000). This fusion significantly enhances the chemosensitivity of cells to 5-FC by bypassing the rate-limiting steps of 5-FU activation in human cells. When expressed in iPS-derived neural stem cells (iNSCs), the enzyme is delivered to invasive brain tumors like glioblastoma due to the innate tumor-tropic properties of the stem cells (Namba et al., 2014). The localized conversion of 5-FC to 5-FU at the tumor site creates a high concentration of cytotoxic metabolites while minimizing systemic side effects. These metabolites, such as 5-FdUMP, inhibit thymidylate synthase, thereby disrupting DNA synthesis and inducing apoptosis (Zhao et al., 2012). The therapy also benefits from a bystander effect, where the produced 5-FU diffuses to and kills neighboring non-engineered tumor cells. This approach is particularly promising for treating disseminated or deep-seated tumors that are difficult to reach with conventional therapies. Safety concerns include the potential for off-target migration of the iNSCs and the immunogenicity of the non-human fusion enzyme. Overall, the CD-UPRT system in iNSCs represents a sophisticated targeted delivery platform for potent antimetabolite chemotherapy.

Other names
CDy-UPRTFCY1-FUR1 fusion proteinYeast cytosine deaminase-uracil phosphoribosyltransferaseSuicide gene CD-UPRT
02

Mechanism of action

The CD-UPRT fusion enzyme converts the prodrug 5-fluorocytosine into 5-fluorouracil and subsequently into 5-fluorouridine monophosphate, leading to the inhibition of DNA synthesis and induction of apoptosis.

03

Biological functions

Nucleotide metabolismPyrimidine salvage pathwayXenobiotic metabolismApoptosis induction
04

Disease associations

CancerGlioblastomaBrain tumor
05

Safety considerations

Off-target migration of neural stem cellsImmunogenicity of non-human enzymesSystemic toxicity from 5-fluorouracil leakagePotential for insertional mutagenesis during NSC engineering
06

Interacting drugs

5-fluorocytosine

1 more in the full profile.

07

Biomarkers

CD-UPRT mRNA expressionIntratumoral 5-fluorouracil levelsNeural stem cell migration (via imaging)

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