Multiple microRNAs regulate tacrolimus metabolism through CYP3A5.

Pharmacol Res

Department of Liver Surgery, Renji Hospital, School of Medicine, Shanghai Jiaotong University, Shanghai, 200127, China.

Published: February 2021

AI Article Synopsis

  • The CYP3A5 gene polymorphism significantly influences how individuals metabolize tacrolimus, especially after pediatric liver transplantation, and the expression levels of CYP3A5 in donor grafts are also important.
  • A study was conducted to explore how certain miRNAs in the liver can impact CYP3A5 expression and tacrolimus metabolism, identifying four key miRNAs with potential regulatory roles.
  • Experimental results showed that miR-26b-5p directly inhibited tacrolimus metabolism by regulating CYP3A5, while the other three miRNAs influenced it indirectly through their effects on other regulatory genes, highlighting their importance as novel regulators in this process.

Article Abstract

The CYP3A5 gene polymorphism accounts for the majority of inter-individual variability in tacrolimus pharmacokinetics. We found that the basal expression of CYP3A5 in donor grafts also played a significant role in tacrolimus metabolism under the same genetic conditions after pediatric liver transplantation. Thus, we hypothesized that some potential epigenetic factors could affect CYP3A5 expression and contributed to the variability. We used a high-throughput functional screening for miRNAs to identify miRNAs that had the most abundant expression in normal human liver and could regulate tacrolimus metabolism in HepaRG cells and HepLPCs. Four of these miRNAs (miR-29a-3p, miR-99a-5p, miR-532-5p, and miR-26-5p) were selected for testing. We found that these miRNAs inhibited tacrolimus metabolism that was dependent on CYP3A5. Putative miRNAs targeting key drug-metabolizing enzymes and transporters (DMETs) were selected using an in silico prediction algorithm. Luciferase reporter assays and functional studies showed that miR-26b-5p inhibited tacrolimus metabolism by directly regulating CYP3A5, while miR-29a-5p, miR-99a-5p, and miR-532-5p targeted HNF4α, NR1I3, and NR1I2, respectively, in turn regulating the downstream expression of CYP3A5; the corresponding target gene siRNAs markedly abolished the effects caused by miRNA inhibitors. Also, the expression of miR-29a-3p, miR-99a-5p, miR-532-5p, and miR-26b-5p in donor grafts were negatively correlated with tacrolimus C/D following pediatric liver transplantation. Taken together, our findings identify these miRNAs as novel regulators of tacrolimus metabolism.

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Source
http://dx.doi.org/10.1016/j.phrs.2020.105382DOI Listing

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