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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
Rb and p53 Liver Functions Are Essential for Xenobiotic Metabolism and Tumor Suppression
Sathidpak Nantasanti1, Mathilda J M Toussaint1, Sameh A Youssef1
1Department of Pathobiology, Faculty of Veterinary Medicine, Utrecht University, 3584CL, Utrecht, the Netherlands.
Abstract:
The tumor suppressors Retinoblastoma (Rb) and p53 are frequently inactivated in liver diseases, such as hepatocellular carcinomas (HCC) or infections with Hepatitis B or C viruses. Here, we discovered a novel role for Rb and p53 in xenobiotic metabolism, which represent a key function of the liver for metabolizing therapeutic drugs or toxins. We demonstrate that Rb and p53 cooperate to metabolize the xenobiotic 3,5-diethoxycarbonyl-1,4-dihydrocollidine (DDC). DDC is metabolized mainly by cytochrome P450 (Cyp)3a enzymes resulting in inhibition of heme synthesis and accumulation of protoporphyrin, an intermediate of heme pathway. Protoporphyrin accumulation causes bile injury and ductular reaction. We show that loss of Rb and p53 resulted in reduced Cyp3a expression decreased accumulation of protoporphyrin and consequently less ductular reaction in livers of mice fed with DDC for 3 weeks. These findings provide strong evidence that synergistic functions of Rb and p53 are essential for metabolism of DDC. Because Rb and p53 functions are frequently disabled in liver diseases, our results suggest that liver patients might have altered ability to remove toxins or properly metabolize therapeutic drugs. Strikingly the reduced biliary injury towards the oxidative stress inducer DCC was accompanied by enhanced hepatocellular injury and formation of HCCs in Rb and p53 deficient livers. The increase in hepatocellular injury might be related to reduce protoporphyrin accumulation, because protoporphrin is well known for its anti-oxidative activity. Furthermore our results indicate that Rb and p53 not only function as tumor suppressors in response to carcinogenic injury, but also in response to non-carcinogenic injury such as DDC.
Insights
The tumor suppressors Retinoblastoma (Rb) and p53 are crucial for liver xenobiotic metabolism. Loss of Rb and p53 impairs toxin processing, potentially affecting drug metabolism and increasing liver cancer risk.
Area of Science:
- Hepatology
- Molecular Biology
- Toxicology
Background:
- Retinoblastoma (Rb) and p53 are key tumor suppressors frequently inactivated in liver diseases like hepatocellular carcinoma (HCC).
- The liver's primary role involves metabolizing xenobiotics, including drugs and toxins.
Purpose of the Study:
- To investigate the novel role of Rb and p53 in xenobiotic metabolism.
- To understand how Rb and p53 influence the metabolism of 3,5-diethoxycarbonyl-1,4-dihydrocollidine (DDC) and its downstream effects.
Main Methods:
- Utilized a mouse model fed with DDC to study xenobiotic metabolism.
- Assessed the expression of cytochrome P450 (Cyp)3a enzymes.
- Monitored protoporphyrin accumulation, bile duct injury, and hepatocellular carcinoma (HCC) formation.
Main Results:
- Rb and p53 cooperate to metabolize DDC, primarily via Cyp3a enzymes.
- Loss of Rb and p53 led to reduced Cyp3a expression, decreased protoporphyrin accumulation, and less bile duct injury.
- Rb and p53 deficiency resulted in enhanced hepatocellular injury and increased HCC formation, possibly due to reduced protoporphyrin's anti-oxidative effects.
Conclusions:
- Synergistic functions of Rb and p53 are essential for DDC metabolism and mitigating biliary injury.
- Inactivation of Rb and p53 in liver diseases may impair toxin metabolism and drug processing.
- Rb and p53 act as tumor suppressors against both carcinogenic and non-carcinogenic liver injury.
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