A RECOMBINANT POLYPEPTIDE MODEL OF THE 2ND PREDICTED NUCLEOTIDE-BINDING FOLD OF THE CYSTIC-FIBROSIS TRANSMEMBRANE CONDUCTANCE REGULATOR IS A GTP-BINDING PROTEIN
C. Randak et al., A RECOMBINANT POLYPEPTIDE MODEL OF THE 2ND PREDICTED NUCLEOTIDE-BINDING FOLD OF THE CYSTIC-FIBROSIS TRANSMEMBRANE CONDUCTANCE REGULATOR IS A GTP-BINDING PROTEIN, FEBS letters, 398(1), 1996, pp. 97-100
Association reactions of a recombinant CFTR-NBF-2 polypeptide fused to
glutathione S-transferase with guanine nucleotides were monitored qua
ntitatively by recording the fluorescence enhancement of excited trini
trophenol (TNP)-labelled GTP after binding to NBF-2. Binding of TNP-GT
P to the recombinant NBF-2 polypeptide was characterized by a K-d valu
e of 3.9 mu M. The corrected K-d values for unlabelled guanine nucleot
ides were determined to be 33 mu M for GTP, 92 mu M for GDP and 217 mu
M for GMP. TNP-ATP bound to NBF-2 was competitively displaced by GTP
indicating a common binding site for both nucleotides. The recombinant
NBF-2 did not show an intrinsic GTPase activity above a detection lim
it of 0.007 min(-1). Our findings provide the first experimental evide
nce that NBF-2 can act as a GTP-binding subunit that would favor the r
elease of GDP after GTP hydrolysis.