Small-angle X-ray scattering study of the ATP modulation of the structural features of the nucleotide binding domains of the CFTR in solution

被引:0
作者
Lauretta Galeno
Elena Galfrè
Oscar Moran
机构
[1] Consiglio Nazionale delle Ricerche,Istituto di Biofisica
来源
European Biophysics Journal | 2011年 / 40卷
关键词
ABC transporter; Cystic fibrosis; Protein structure; Protein-protein interactions; X-ray scattering; CFTR; Nucleotide binding domain;
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摘要
Nucleotide binding domains (NBD1 and NBD2) of the cystic fibrosis transmembrane conductance (CFTR), the defective protein in cystic fibrosis, are responsible for controlling the gating of the chloride channel and are the putative binding site for several candidate drugs in the disease treatment. We studied the structural properties of recombinant NBD1, NBD2, and an equimolar NBD1/NBD2 mixture in solution by small-angle X-ray scattering. We demonstrated that NBD1 or NBD2 alone have an overall structure similar to that observed for crystals. Application of 2 mM ATP induces a dimerization of NBD1 but does not modify the NBD2 monomeric conformation. An equimolar mixture of NBD1/NBD2 in solution shows a dimeric conformation, and the application of ATP to the solution causes a conformational change in the NBD1/NBD2 complex into a tight heterodimer. We hypothesize that a similar conformation change occurs in situ and that transition is part of the gating mechanism. To our knowledge, this is the first direct observation of a conformational change of the NBD1/NBD2 interaction by ATP. This information may be useful to understand the physiopathology of cystic fibrosis.
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  • [1] Annereau JP(1997)A novel model for the first nucleotide binding domain of the cystic fibrosis transmembrane conductance regulator FEBS Lett 407 303-308
  • [2] Wulbrand U(2005)Crystallographic and single-particle analyses of native- and nucleotide-bound forms of the cystic fibrosis transmembrane conductance regulator (CFTR) protein Biochem Soc Trans 33 996-999
  • [3] Vankeerberghen A(2006)Thermodynamics of CFTR channel gating: a spreading conformational change initiates an irreversible gating cycle J Gen Physiol 128 523-533
  • [4] Cuppens H(2009)DAMMIF, a program for rapid ab initio shape determination in small-angle scattering J Appl Cryst 42 342-346
  • [5] Bontems F(2006)The ABC protein turned chloride channel whose failure causes cystic fibrosis Nature 440 477-483
  • [6] Tümmler B(1992)Recombinant synthesis, purification, and nucleotide binding characteristics of the first nucleotide binding domain of the cystic fibrosis gene product J Biol Chem 267 6455-6458
  • [7] Cassiman JJ(2001)Crystal structures of the MJ1267 ATP binding cassette reveal an induced-fit effect at the ATPase active site of an ABC transporter Structure 9 571-586
  • [8] Stoven V(2004)A heteromeric complex of the two nucleotide binding domains of cystic fibrosis transmembrane conductance regulator (CFTR) mediates ATPase activity J Biol Chem 279 41664-41669
  • [9] Awayn NH(2003)PRIMUS: a Windows PC-based system for small-angle scattering data analysis J Appl Cryst 36 1277-1282
  • [10] Rosenberg MF(2001)Automated matching of high- and low-resolution structural models J Appl Cryst 34 33-41