Authors
Tomoka Gose, Ali Rasouli, Sepehr Dehghani-Ghahnaviyeh, Po-Chao Wen, Yao Wang, John Lynch, Yu Fukuda, Talha Shafi, Robert C Ford, Emad Tajkhorshid, John D Schuetz
Publication date
2024/3/1
Journal
Drug Resistance Updates
Volume
73
Pages
101066
Publisher
Churchill Livingstone
Description
ABCG2 is an important ATP-binding cassette transporter impacting the absorption and distribution of over 200 chemical toxins and drugs. ABCG2 also reduces the cellular accumulation of diverse chemotherapeutic agents. Acquired somatic mutations in the phylogenetically conserved amino acids of ABCG2 might provide unique insights into its molecular mechanisms of transport. Here, we identify a tumor-derived somatic mutation (Q393K) that occurs in a highly conserved amino acid across mammalian species. This ABCG2 mutant seems incapable of providing ABCG2-mediated drug resistance. This was perplexing because it is localized properly and retained interaction with substrates and nucleotides. Using a conformationally sensitive antibody, we show that this mutant appears “locked” in a non-functional conformation. Structural modeling and molecular dynamics simulations based on ABCG2 cryo-EM …
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