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The Q loops of the human multidrug resistance transporter ABCB1 are necessary to couple drug binding to the ATP catalytic cycle.
Zolnerciks, Joseph K; Akkaya, Begum G; Snippe, Marjolein; Chiba, Peter; Seelig, Anna; Linton, Kenneth J.
Afiliación
  • Zolnerciks JK; Blizard Institute, Barts and The London School of Medicine and Dentistry, Queen Mary, University of London, London UK;
  • Akkaya BG; Blizard Institute, Barts and The London School of Medicine and Dentistry, Queen Mary, University of London, London UK;
  • Snippe M; Blizard Institute, Barts and The London School of Medicine and Dentistry, Queen Mary, University of London, London UK;
  • Chiba P; Institute of Medical Chemistry, Medical University of Vienna, Vienna, Austria; and.
  • Seelig A; Biophysical Chemistry Biozentrum, University of Basel, Basel, Switzerland.
  • Linton KJ; Blizard Institute, Barts and The London School of Medicine and Dentistry, Queen Mary, University of London, London UK; k.j.linton@qmul.ac.uk.
FASEB J ; 28(10): 4335-46, 2014 Oct.
Article en En | MEDLINE | ID: mdl-25016028
ABSTRACT
For a primary active pump, such as the human ATP-binding-cassette (ABC) transporter ABCB1, coupling of drug-binding by the two transmembrane domains (TMDs) to the ATP catalytic cycle of the two nucleotide-binding domains (NBDs) is fundamental to the transport mechanism, but is poorly understood at the biochemical level. Structure data suggest that signals are transduced through intracellular loops of the TMDs that slot into grooves on the NBDs. At the base of these grooves is the Q loop. We therefore mutated the eponymous glutamine in one or both NBD Q loops and measured the effect on conformation and function by using a conformation-sensitive antibody (UIC2) and a fluorescent drug (Bodipy-verapamil), respectively. We showed that the double mutant is trapped in the inward-open state, which binds the drug, but cannot couple to the ATPase cycle. Our data also describe marked redundancy within the transport mechanism, because single-Q-loop mutants are functional for Bodipy-verapamil transport. This result allowed us to elucidate transduction pathways from twin drug-binding cavities to the Q loops using point mutations to favor one cavity over the other. Together, the data show that the Q loop is the central flexion point where the aspect of the drug-binding cavities is coupled to the ATP catalytic cycle.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Adenosina Trifosfato Límite: Humans Idioma: En Revista: FASEB J Asunto de la revista: BIOLOGIA / FISIOLOGIA Año: 2014 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Adenosina Trifosfato Límite: Humans Idioma: En Revista: FASEB J Asunto de la revista: BIOLOGIA / FISIOLOGIA Año: 2014 Tipo del documento: Article