1 research outputs found
Quantum Mechanical Analysis of Nonenzymatic Nucleotidyl Transfer Reactions: Kinetic and Thermodynamic Effects of β–γ Bridging Groups of dNTP Substrates
Rate (<i>k</i>) and equilibrium
(<i>K</i>)
constants for the reaction of tetrahydrofuranol with a series of Mg<sup>2+</sup> complexes of methyl triphosphate analogues, CH<sub>3</sub>O-P(O<sub>2</sub>)-O-P(O<sub>2</sub>)-X-PO<sub>3</sub><sup>4–</sup>, X = O, CH<sub>2</sub>, CHCH<sub>3</sub>, C(CH<sub>3</sub>)<sub>2</sub>, CFCH<sub>3</sub>, CHF, CHCl, CHBr, CFCl, CF<sub>2</sub>,
CCl<sub>2</sub>, and CBr<sub>2</sub>, forming phosphate diester and
pyrophosphate or bisphosphonate in aqueous solution were evaluated
by B3LYP/TZVP//HF/6-31G* quantum chemical calculations and Langevin
dipoles and polarized continuum solvation models. The calculated log <i>k</i> and log <i>K</i> values were found to depend
linearly on the experimental p<i>K</i><sub>a4</sub> of the
conjugate acid of the corresponding pyrophosphate or bisphosphonate
leaving group. The calculated slopes of these Brønsted linear
free energy relationships were β<sub>lg</sub> = −0.89
and β<sub>eq</sub> = −0.93, respectively. The studied
compounds also followed the linear relationship Δlog <i>k</i> = 0.8Δlog <i>K</i>, which became less
steep, Δlog <i>k</i> = 0.6Δlog <i>K</i>, after the range of studied compounds was extended to include analogues
that were doubly protonated on γ-phosphate, CH<sub>3</sub>O-P(O<sub>2</sub>)-O-P(O<sub>2</sub>)-X-PO<sub>3</sub>H<sub>2</sub><sup>2–</sup>. The scissile P<sub>α</sub>–O<sub>lg</sub> bond length
in studied methyl triphosphate analogues slightly increases with decreasing
p<i>K</i><sub>a</sub> of the leaving group; concomitantly,
the CH<sub>3</sub>OP<sub>α</sub>(O<sub>2</sub>) moiety becomes
more positive. These structural effects indicate that substituents
with low p<i>K</i><sub>a</sub> can facilitate both P<sub>α</sub>–O<sub>lg</sub> bond breaking and the P<sub>α</sub>–O<sub>nuc</sub> bond forming process, thus explaining the
large negative β<sub>lg</sub> calculated for the transition
state geometry that has significantly longer P<sub>α</sub>–O<sub>nuc</sub> distance than the P<sub>α</sub>–O<sub>lg</sub> distance