Cystic fibrosis transmembrane regulator fragments with the Phe508 deletion exert a dual allosteric control over the master kinase CK2

Author:

Pagano Mario A.12,Marin Oriano12,Cozza Giorgio1,Sarno Stefania12,Meggio Flavio1,Treharne Kate J.3,Mehta Anil3,Pinna Lorenzo A.12

Affiliation:

1. Department of Biological Chemistry and CNR Institute of Neurosciences, University of Padova, viale G. Colombo 3, 35131 Padova, Italy

2. Venetian Institute for Molecular Medicine (VIMM), via Orus 2, 35129 Padova, Italy

3. Division of Medical Sciences, Centre for Cardiovascular and Lung Biology, University of Dundee, Ninewells Hospital, Dundee DD1 9SY, Scotland, U.K.

Abstract

Cystic fibrosis mostly follows a single Phe508 deletion in CFTR (cystic fibrosis transmembrane regulator) (CFTRΔF508), thereby causing premature fragmentation of the nascent protein with concomitant alterations of diverse cellular functions. We show that CK2, the most pleiotropic protein kinase, undergoes allosteric control of its different cellular forms in the presence of short CFTR peptides encompassing the Phe508 deletion: these CFTRΔF508 peptides drastically inhibit the isolated catalytic subunit (α) of the kinase and yet up-regulate the holoenzyme, composed of two catalytic and two non-catalytic (β) subunits. Remarkable agreement between in silico docking and our biochemical data point to different sites for the CFTRΔF508 peptide binding on isolated CK2α and on CK2β assembled into the holoenzyme, suggesting that CK2 targeting may be perturbed in cells expressing CFTRΔF508; this could shed light on some pleiotropic aspects of cystic fibrosis disease.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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