Microcystin-LR-induced epithelial-mesenchymal transition-like cells acquire resistance to multi-toxins

Toxicon. 2024 Feb 1:238:107592. doi: 10.1016/j.toxicon.2023.107592. Epub 2023 Dec 30.

Abstract

The protein phosphatase inhibitor microcystin-LR (MC-LR), a hepatocyte-selective cyanotoxin, induces phenotypic changes in HEK293 OATP1B3-expressing (HEK293-OATP1B3) cells, which include cytoskeletal reorganization (HEK293-OATP1B3-AD) and anoikis resistance (HEK293-OATP1B3-FL) transformed cells, respectively. These cells acquire resistance to MC-LR and partial epithelial-mesenchymal transition (EMT) characteristics. In cancer cells, EMT is generally involved in multi-drug resistance. Here, we focused on the multi-drug resistance of HEK293-OATP1B3-AD and HEK293-OATP1B3-FL cells. The MTT assay and immunoblotting were conducted to examine the responses of HEK293-OATP1B3, HEK293-OATP1B3-AD, and HEK293-OATP1B3-FL cells to multiple toxins and drugs that function as substrates for OATP1B3, including MC-LR, nodularin (Nod), okadaic acid (OA), and cisplatin (CDDP). HEK293-OATP1B3-AD and HEK293-OATP1B3-FL cells were more resistant to MC-LR, Nod, and OA than HEK293-OATP1B3 cells. Conversely, the three cell types were equivalently sensitive to CDDP. By using protein phosphatase assay, the reduction of the inhibitory effect of MC-LR and Nod on phosphatase activity might be one reason for the resistance to MC-LR and Nod in HEK293-OATP1B3-AD and HEK293-OATP1B3-FL cells. Furthermore, the parental HEK293-OATP1B3 cells showed enhanced p53 phosphorylation and stabilization after MC-LR exposure, while p53 phosphorylation was attenuated in HEK293-OATP1B3-AD and HEK293-OATP1B3-FL cells. Moreover, in HEK293-OATP1B3-AD and HEK293-OATP1B3-FL cells, AKT phosphorylation was higher than that of the parental HEK293-OATP1B3 cell line. These results suggest that the multi-toxin resistance observed in HEK293-OATP1B3-AD and HEK293-OATP1B3-FL cells is associated with AKT activation and p53 inactivation.

Keywords: AKT; EMT; Microcystin-LR; OATP1B3; p53.

MeSH terms

  • Epithelial-Mesenchymal Transition
  • HEK293 Cells
  • Humans
  • Marine Toxins*
  • Microcystins / metabolism
  • Okadaic Acid / toxicity
  • Organic Anion Transporters, Sodium-Independent* / metabolism
  • Organic Anion Transporters, Sodium-Independent* / pharmacology
  • Phosphoprotein Phosphatases
  • Proto-Oncogene Proteins c-akt* / metabolism
  • Solute Carrier Organic Anion Transporter Family Member 1B3 / pharmacology
  • Tumor Suppressor Protein p53 / metabolism

Substances

  • cyanoginosin LR
  • Organic Anion Transporters, Sodium-Independent
  • Solute Carrier Organic Anion Transporter Family Member 1B3
  • Proto-Oncogene Proteins c-akt
  • Tumor Suppressor Protein p53
  • Microcystins
  • Okadaic Acid
  • Phosphoprotein Phosphatases
  • Marine Toxins