Liu, Fangyu and Zhang, Zhe and Csanády, László and Gadsby, David C. and Chen, Jue (2017) Molecular Structure of the Human CFTR Ion Channel. CELL, 169 (1). pp. 85-95. ISSN 0092-8674
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Abstract
The cystic fibrosis transmembrane conductance regulator (CFTR) is an ATP-binding cassette (ABC) transporter that uniquely functions as an ion channel. Here, we present a 3.9 Å structure of dephosphorylated human CFTR without nucleotides, determined by electron cryomicroscopy (cryo-EM). Close resemblance of this human CFTR structure to zebrafish CFTR under identical conditions reinforces its relevance for understanding CFTR function. The human CFTR structure reveals a previously unresolved helix belonging to the R domain docked inside the intracellular vestibule, precluding channel opening. By analyzing the sigmoid time course of CFTR current activation, we propose that PKA phosphorylation of the R domain is enabled by its infrequent spontaneous disengagement, which also explains residual ATPase and gating activity of dephosphorylated CFTR. From comparison with MRP1, a feature distinguishing CFTR from all other ABC transporters is the helix-loop transition in transmembrane helix 8, which likely forms the structural basis for CFTR's channel function. © 2017 Elsevier Inc.
Item Type: | Article |
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Uncontrolled Keywords: | human CFTR; cryo-EM; anion channel; ABC transporter |
Subjects: | R Medicine / orvostudomány > R1 Medicine (General) / orvostudomány általában |
SWORD Depositor: | MTMT SWORD |
Depositing User: | MTMT SWORD |
Date Deposited: | 28 Sep 2018 07:20 |
Last Modified: | 28 Sep 2018 07:20 |
URI: | http://real.mtak.hu/id/eprint/85753 |
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