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A new porphyrin as selective substrate-based inhibitor of breast cancer resistance protein (BCRP/ABCG2)

  • Ingrid Fatima Zattoni
  • , Thales Kronenberger
  • , Diogo Henrique Kita
  • , Lais Danciguer Guanaes
  • , Matheus Murmel Guimarães
  • , Larissa de Oliveira Prado
  • , Melanie Ziasch
  • , Luis C. Vesga
  • , Fabiane Gomes de Moraes Rego
  • , Geraldo Picheth
  • , Marcos Brown Gonçalves
  • , Miguel D. Noseda
  • , Diogo R.B. Ducatti
  • , Antti Poso
  • , Robert W. Robey
  • , Suresh V. Ambudkar
  • , Vivian Rotuno Moure
  • , Alan Guilherme Gonçalves
  • , Glaucio Valdameri

Producción científica: Artículos / NotasArtículo Científicorevisión exhaustiva

16 Citas (Scopus)

Resumen

The ABCG2 transporter plays a pivotal role in multidrug resistance, however, no clinical trial using specific ABCG2 inhibitors have been successful. Although ABC transporters actively extrude a wide variety of substrates, photodynamic therapeutic agents with porphyrinic scaffolds are exclusively transported by ABCG2. In this work, we describe for the first time a porphyrin derivative (4B) inhibitor of ABCG2 and capable to overcome multidrug resistance in vitro. The inhibition was time-dependent and 4B was not itself transported by ABCG2. Independently of the substrate, the porphyrin 4B showed an IC50 value of 1.6 μM and a mixed type of inhibition. This compound inhibited the ATPase activity and increased the binding of the conformational-sensitive antibody 5D3. A thermostability assay confirmed allosteric protein changes triggered by the porphyrin. Long-timescale molecular dynamics simulations revealed a different behavior between the ABCG2 porphyrinic substrate pheophorbide a and the porphyrin 4B. Pheophorbide a was able to bind in three different protein sites but 4B showed one binding conformation with a strong ionic interaction with GLU446. The inhibition was selective toward ABCG2, since no inhibition was observed for P-glycoprotein and MRP1. Finally, this compound successfully chemosensitized cells that overexpress ABCG2. These findings reinforce that substrates may be a privileged source of chemical scaffolds for identification of new inhibitors of multidrug resistance-linked ABC transporters.

Idioma originalInglés
Número de artículo109718
PublicaciónChemico-Biological Interactions
Volumen351
DOI
EstadoPublicada - 5 ene 2022
Publicado de forma externa

ODS de las Naciones Unidas

Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

  1. ODS 3: Salud y bienestar
    ODS 3: Salud y bienestar

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