H. Shindo et al., Identification of the DNA binding surface of H-NS protein from Escherichiacoli by heteronuclear NMR spectroscopy, FEBS LETTER, 455(1-2), 1999, pp. 63-69
The DNA binding domain of H-NS protein was studied with various N-terminal
deletion mutant proteins and identified by gel retardation assay and hetero
nuclear 2D- and 3D-NMR spectroscopies. It was shown from gel retardation as
say that DNA binding affinity of the mutant proteins relative to that of na
tive H-NS falls in the range from 1/6 to 1/25 for H-NS60-137, H-NS70-137 an
d H-NS80-137, whereas it was much weaker for H-NS91-137. Thus, the DNA bind
ing domain was defined to be the region from residue A80 to the C-terminus.
Sequential nuclear Overhauser effect (NOE) connectivities and those of med
ium ranges revealed that the region of residues Q60-R93 in mutant protein H
-NS60-137 forms a long stretch of disordered, flexible chain, and also show
ed that the structure of the C-terminal region (residues A95-Q137) in mutan
t H-NS60-137 was nearly identical to that of H-NS91-137. H-1 and N-15 chemi
cal shift perturbations induced by complex formation of H-NS60-137 With an
oligonucleotide duplex 14-mer demonstrated that two loop regions, i.e. resi
dues A80-K96 and T110-A117, play an essential role in DNA binding. (C) 1999
Federation of European Biochemical Societies.