Macrocycle-stabilization of its interaction with 14-3-3 increases plasma membrane localization and activity of CFTR

大环稳定化与 14-3-3 的相互作用增加了 CFTR 的质膜定位和活性

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作者:Loes M Stevers, Madita Wolter, Graeme W Carlile, Dwight Macdonald, Luc Richard, Frank Gielkens, John W Hanrahan, David Y Thomas, Sai Kumar Chakka, Mark L Peterson, Helmut Thomas, Luc Brunsveld, Christian Ottmann

Abstract

Impaired activity of the chloride channel CFTR is the cause of cystic fibrosis. 14-3-3 proteins have been shown to stabilize CFTR and increase its biogenesis and activity. Here, we report the identification and mechanism of action of a macrocycle stabilizing the 14-3-3/CFTR complex. This molecule rescues plasma membrane localization and chloride transport of F508del-CFTR and works additively with the CFTR pharmacological chaperone corrector lumacaftor (VX-809) and the triple combination Trikafta®. This macrocycle is a useful tool to study the CFTR/14-3-3 interaction and the potential of molecular glues in cystic fibrosis therapeutics.

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