ChemInform Abstract: Cobalt(III) Complex Promoted Hydrolysis of Phosphate Diesters: Change in Rate-Determining Step with Change in Phosphate Diester Reactivity.

ChemInform ◽  
1988 ◽  
Vol 19 (15) ◽  
Author(s):  
J. CHIN ◽  
X. ZOU
1993 ◽  
Vol 71 (6) ◽  
pp. 855-863 ◽  
Author(s):  
Niek L.H.L. Broeders ◽  
Arthur P. van der Heiden ◽  
Leo H. Koole ◽  
Jan A. Kanters ◽  
Arie Schouten

This study is focussed on 2′-O-methyl-cis-adenosine 3′,5′-cyclic methyl monophosphate (cis-4; cis describes the relationship between OMe (bound to phosphorus) and the adenine base), which is regarded a model for enzyme-bound cyclic adenosine monophosphate (cAMP). In this complex the negative phosphate charge is shielded in part via complexation with cationic sites on the enzyme surface. We report synthesis, crystal structure, solution conformation (400 MHz 1H NMR), and kinetic-mechanistic aspects of the alkaline hydrolysis of cis-4. The methanol solvate of cis-4 crystallizes in the orthorhombic space group P212121 and the cell dimensions are a = 8.170(2) Å, b = 9.249(1) Å, c = 23.699(4) Å; V = 1788.5(6) Å3; Z = 4 molecules per cell. Least-squares refinement converged at R = 0.062 for 2006 observed reflections. The adenine bases are linked via [Formula: see text] and [Formula: see text] hydrogen bonds in such a way that infinite one-dimensional chains are formed. This hydrogen bond scheme is very similar to that observed in the structure of 2′-deoxy-3′,5′-di-O-acetyl adenosine. An additional hydrogen bond is formed between methanol, incorporated in the crystal structure, and the adenine base. The conformational preferences of the cis-4 dissolved in methanol have been determined with 400 MHz 1H NMR. It is found that the conformations observed in the solid and solution states are practically the same. Hydrolysis of the title compound yields two acyclic phosphate diesters (a 3′- and a 5′-phosphate diester). The intermediates formed during the hydrolysis reaction are most likely five-coordinated phosphorus (PV) compounds with a trigonal bipyramidal geometry and an equatorial-axial located 3′,5′-dioxaphosphorinane ring.


Author(s):  
Ik-Hwan Um ◽  
Seungjae Kim

Second-order rate constants (kN) for reactions of p-nitrophenyl acetate (1) and S-p-nitrophenyl thioacetate (2) with OH‒ have been measured spectrophotometrically in DMSO-H2O mixtures of varying compositions at 25.0 ± 0.1 oC. The kN value increases from 11.6 to 32,800 M‒1s‒1 for the reactions of 1 and from 5.90 to 190,000 M‒1s‒1 for those of 2 as the reaction medium changes from H2O to 80 mol % DMSO, indicating that the effect of medium on reactivity is more remarkable for the reactions of 2 than for those of 1. Although 2 possesses a better leaving group than 1, the former is less reactive than the latter by a factor of 2 in H2O. This implies that expulsion of the leaving group is not advanced in the rate-determining transition state (TS), i.e., the reactions of 1 and 2 with OH‒ proceed through a stepwise mechanism, in which expulsion of the leaving group from the addition intermediate occurs after the rate-determining step (RDS). Addition of DMSO to H2O would destabilize OH‒ through electronic repulsion between the anion and the negative-dipole end in DMSO. However, destabilization of OH‒ in the ground state (GS) is not solely responsible for the remarkably enhanced reactivity upon addition of DMSO to the medium. The effect of medium on reactivity has been dissected into the GS and TS contributions through combination of the kinetic data with the transfer enthalpies (ΔΔHtr) from H2O to DMSO-H2O mixtures for OH‒ ion.


2018 ◽  
Vol 2018 (39) ◽  
pp. 5335-5335
Author(s):  
Eva Szusanna Bencze ◽  
Cristiano Zonta ◽  
Fabrizio Mancin ◽  
Leonard J. Prins ◽  
Paolo Scrimin

2010 ◽  
Vol 19 (2) ◽  
pp. 158-163 ◽  
Author(s):  
Qing-Xiang Xiang ◽  
Xiao-Qi Yu ◽  
Jing-Song You ◽  
Qian-Shun Yan ◽  
Rn-Gang Xie

2019 ◽  
Vol 131 (12) ◽  
Author(s):  
Debdeep Mandal ◽  
Vivek Gupta ◽  
Biswajit Santra ◽  
Nicolas Chrysochos ◽  
Vivek W Bhoyare ◽  
...  

1980 ◽  
Vol 58 (2) ◽  
pp. 124-129 ◽  
Author(s):  
Y. Chiang ◽  
W. K. Chwang ◽  
A. J. Kresge ◽  
S. Szilagyi

Rates of hydrolysis of 1-ethoxy-3,3,5,5-tetramethylcyclopentene and 1-methoxy-2,3,3,5,5-pentamethylcyclopentene measured in mineral acid and formic and acetic acid buffer solutions show general acid catalysis and give large kinetic isotope effects in the normal direction (kH/kD > 1). This indicates that these reactions proceed by the conventional mechanism for vinyl ether hydrolysis in which proton transfer from the catalyzing acid to the substrate is rate-determining, and that the I-strain in these substrates is insufficiently great to shift the reaction mechanism to rapidly reversible substrate protonation followed by rate-determining hydration of the ensuing cationic intermediate.


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