Az. Liu et al., NMR detection of N-H center dot center dot center dot O=C hydrogen bonds in C-13,N-15-labeled nucleic acids, J AM CHEM S, 122(13), 2000, pp. 3206-3210
We describe the first direct observation of N-H ... O=C hydrogen bonding in
nucleic acids via the four-bond (4h)J(NiNj) coupling within an N1(i)-H1(i)
... O6(j)-N1(j) segment of a G.G.G.G tetrad. The experiment, two-dimensiona
l (2D) HN(N)-TOCSY, makes use of band-selective N-15 isotropic mixing to tr
ansfer magnetization exclusively via the (4h)J(NN) couplings to yield corre
lations between N1H(i)(omega(2)) and N1(j)(omega(i)) across the hydrogen-bo
nded segment. In a complementary experiment, 2D cross-polarization (CP)-H(N
)CO-(NN)-TOCSYI employing band-selective heteronuclear N-15-C-13 cross-pola
rization sequences on either side of the N-15-N-15 TOCSY period, correlatio
ns are obtained between N1H(i)(omega(2)) and C6(j)(omega(1)) nuclei across
the hydrogen bond. The symmetric A(2)X(2)-type coupling topology of the fou
r-spin nitrogen system in the G.G.G.G tetrad permits accurate measurement o
f these couplings by a new procedure that fits the experimental data with k
nown analytical isotropic mixing transfer functions. The techniques are dem
onstrated on a G G G G tetrad formed within a novel dimeric quadruplex fold
of a uniformly C-13/N-15-labeled d(G-G-G-T-T-C-A-G-G) DNA sequence. The va
lue of the (4h)J(NN) coupling constant for this system is estimated to be 0
.136 +/- 0.021 Hz.